A Review of the Comprehensive Recovery of Valuable Elements from Copper Smelting Open-Circuit Dust and Arsenic Treatment
Copper smelting open-circuit (CSO) dust contains various valuable metals, such as copper, lead, and zinc, as well as undesirable toxic elements such as arsenic. Thus, the comprehensive recovery of valuable elements from CSO dust is highly significant from both economic and environmental perspectives...
Saved in:
Published in | JOM (1989) Vol. 72; no. 11; pp. 3860 - 3875 |
---|---|
Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
New York
Springer US
01.11.2020
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
Cover
Loading…
Abstract | Copper smelting open-circuit (CSO) dust contains various valuable metals, such as copper, lead, and zinc, as well as undesirable toxic elements such as arsenic. Thus, the comprehensive recovery of valuable elements from CSO dust is highly significant from both economic and environmental perspectives. In this review, pyrometallurgical, pyrohydrometallurgical and hydrometallurgical processes are evaluated after the presentation of the formation mechanism and characterization of CSO dust. Hydrometallurgical processing is more suitable for treating the dust because of its low energy consumption, high metal recovery, and no secondary pollution. After the introduction of valuable metal recovery by cementation, sulfuration precipitation, and solvent extraction from CSO dust leaching solution, arsenic removal from the solution by lime, sulfides, iron salts, and natroalunite precipitations was reviewed. Arsenical natroalunite has excellent long-term stability, so natroalunite precipitation is very promising for arsenic immobilization. |
---|---|
AbstractList | Copper smelting open-circuit (CSO) dust contains various valuable metals, such as copper, lead, and zinc, as well as undesirable toxic elements such as arsenic. Thus, the comprehensive recovery of valuable elements from CSO dust is highly significant from both economic and environmental perspectives. In this review, pyrometallurgical, pyrohydrometallurgical and hydrometallurgical processes are evaluated after the presentation of the formation mechanism and characterization of CSO dust. Hydrometallurgical processing is more suitable for treating the dust because of its low energy consumption, high metal recovery, and no secondary pollution. After the introduction of valuable metal recovery by cementation, sulfuration precipitation, and solvent extraction from CSO dust leaching solution, arsenic removal from the solution by lime, sulfides, iron salts, and natroalunite precipitations was reviewed. Arsenical natroalunite has excellent long-term stability, so natroalunite precipitation is very promising for arsenic immobilization. |
Author | Xu, Bin Ma, Yongpeng Li, Qian Yang, Junkui Gao, Wei Jiang, Tao Yang, Yongbin |
Author_xml | – sequence: 1 givenname: Bin surname: Xu fullname: Xu, Bin organization: School of Minerals Processing and Bioengineering, Central South University – sequence: 2 givenname: Yongpeng surname: Ma fullname: Ma, Yongpeng organization: School of Minerals Processing and Bioengineering, Central South University – sequence: 3 givenname: Wei orcidid: 0000-0002-4223-9322 surname: Gao fullname: Gao, Wei email: 18274835980@163.com organization: School of Minerals Processing and Bioengineering, Central South University – sequence: 4 givenname: Junkui surname: Yang fullname: Yang, Junkui organization: Qinghai Xiyu Nonferrous Metals Co., Ltd – sequence: 5 givenname: Yongbin surname: Yang fullname: Yang, Yongbin organization: School of Minerals Processing and Bioengineering, Central South University – sequence: 6 givenname: Qian surname: Li fullname: Li, Qian organization: School of Minerals Processing and Bioengineering, Central South University – sequence: 7 givenname: Tao surname: Jiang fullname: Jiang, Tao organization: School of Minerals Processing and Bioengineering, Central South University |
BookMark | eNp9kEtrGzEUhUVJoc7jD3Ql6FqNXq40S-OmTcBgaNxshWZ85SjMSFNJ4zT_vnJcCGTh1b1wzncf5xydhRgAoc-MfmWUquvMmBaKUE4JlVxyQj-gGZtLQZies7PaU6mI1EJ_Quc5P9EKyYbN0N8F_gV7D884OlweAS_jMCZ4hJD9HqrWxT2kl4P6YPvJtj3gmx4GCCVjl-JQgXGEhO8H6IsPO7weIZClT93kC_4-5YJt2OJFyhB8hzcJbDnQl-ijs32Gq__1Av3-cbNZ3pLV-ufdcrEiXf2jEOWkE445zqBVXMtuK1vJ7NxJofhWtJJyrltwymkhG6etaIWzUinFlXPNN3GBvhznjin-mSAX8xSnFOpKw6VulJqLRlWXPrq6FHNO4Ezniy0-hpKs7w2j5pCzOeZsas7mNWdDK8rfoWPyg00vpyFxhHI1hx2kt6tOUP8AgyuSqQ |
CitedBy_id | crossref_primary_10_1016_j_scitotenv_2024_176538 crossref_primary_10_1080_08827508_2021_1986706 crossref_primary_10_3390_met14091078 crossref_primary_10_1016_j_scitotenv_2022_160821 crossref_primary_10_2139_ssrn_4193544 crossref_primary_10_1016_j_vacuum_2021_110166 crossref_primary_10_1016_S1003_6326_24_66523_4 crossref_primary_10_12677_MEng_2024_111001 crossref_primary_10_1016_j_scitotenv_2022_157063 crossref_primary_10_1016_j_cej_2024_156963 crossref_primary_10_1080_00084433_2023_2257572 crossref_primary_10_1016_j_jhazmat_2023_133039 crossref_primary_10_1016_j_seppur_2024_127037 crossref_primary_10_1016_j_resconrec_2021_106067 crossref_primary_10_1016_j_resconrec_2020_105195 crossref_primary_10_1016_j_jclepro_2022_134311 crossref_primary_10_3390_min14060532 crossref_primary_10_3390_min11121311 crossref_primary_10_1007_s11837_023_06001_3 crossref_primary_10_1007_s41742_024_00657_8 crossref_primary_10_1016_j_hydromet_2024_106413 crossref_primary_10_1021_acsomega_4c03333 crossref_primary_10_2139_ssrn_4088095 crossref_primary_10_1007_s11837_023_05999_w crossref_primary_10_1016_j_cej_2021_130411 crossref_primary_10_1016_j_cej_2022_137395 crossref_primary_10_1007_s11270_024_07392_y crossref_primary_10_1016_j_chemosphere_2023_140489 crossref_primary_10_1016_j_seppur_2024_130934 crossref_primary_10_1007_s11837_021_05102_1 crossref_primary_10_1007_s11771_024_5606_7 crossref_primary_10_1016_j_cej_2021_130193 crossref_primary_10_3390_met12091440 crossref_primary_10_1021_acsestengg_4c00072 crossref_primary_10_1007_s11837_025_07235_z crossref_primary_10_1016_j_jece_2022_107358 crossref_primary_10_1080_01496395_2024_2319141 crossref_primary_10_1016_S1003_6326_24_66569_6 crossref_primary_10_1038_s41598_024_76382_1 crossref_primary_10_1016_j_hydromet_2023_106185 crossref_primary_10_1016_j_jece_2021_105997 crossref_primary_10_1680_jgrma_24_00040 crossref_primary_10_1016_j_cej_2021_129683 |
Cites_doi | 10.1016/0304-386X(84)90035-5 10.1016/j.hydromet.2016.10.011 10.1016/j.hydromet.2010.06.013 10.1016/j.seppur.2015.01.004 10.1007/s11837-017-2492-6 10.1016/j.hydromet.2007.09.010 10.1016/j.hydromet.2011.05.009 10.1016/j.apgeochem.2010.01.021 10.1016/S0892-6875(00)00078-9 10.1016/j.jclepro.2019.05.033 10.1111/j.1440-1789.1993.tb00224.x 10.1179/cmq.2003.42.1.29 10.1016/j.jclepro.2014.03.085 10.1007/BF02693148 10.1016/j.gca.2006.03.006 10.1007/BF02657734 10.1016/j.scitotenv.2004.03.016 10.1016/S0304-386X(96)00038-2 10.1021/es802229r 10.2465/jmps.96.67 10.1016/j.resconrec.2019.03.020 10.1007/s11015-016-0313-8 10.1016/j.mineng.2005.08.013 10.1016/j.hydromet.2011.06.001 10.1016/j.jece.2015.06.028 10.15446/dyna.v81n186.32852 10.1007/s11837-997-0034-3 10.1016/j.hydromet.2010.09.001 10.1016/j.jhazmat.2010.05.116 10.1016/0304-386X(85)90008-8 10.1023/B:BILE.0000018267.09698.cc 10.1016/0304-386X(90)90047-6 10.1016/j.hydromet.2009.04.020 10.1023/A:1023905128860 10.1016/0304-386X(89)90028-5 10.1016/j.jhazmat.2012.09.031 10.1016/j.minpro.2007.10.003 10.1016/S1003-6326(18)64830-7 10.1016/S0883-2927(02)00018-5 10.1007/s11837-999-0151-2 10.1016/S0016-7037(99)00259-8 10.1016/j.resourpol.2016.12.009 10.1016/j.mineng.2010.03.020 10.2113/gscanmin.41.4.905 10.1007/s00204-017-2034-6 10.1080/01496397908058096 10.1016/0304-386X(86)90040-X 10.1179/cmq.2001.40.4.395 10.1016/j.mineng.2012.06.008 |
ContentType | Journal Article |
Copyright | The Minerals, Metals & Materials Society 2020 Copyright Springer Nature B.V. Nov 2020 |
Copyright_xml | – notice: The Minerals, Metals & Materials Society 2020 – notice: Copyright Springer Nature B.V. Nov 2020 |
DBID | AAYXX CITATION 3V. 4T- 4U- 7SR 7TA 7WY 7XB 883 88I 8BQ 8FD 8FE 8FG 8FK 8FL ABJCF ABUWG AFKRA AZQEC BENPR BEZIV BGLVJ CCPQU D1I DWQXO FRNLG GNUQQ HCIFZ JG9 K60 K6~ KB. L.- M0F M2P PDBOC PHGZM PHGZT PKEHL PQBIZ PQBZA PQEST PQGLB PQQKQ PQUKI Q9U S0X |
DOI | 10.1007/s11837-020-04242-0 |
DatabaseName | CrossRef ProQuest Central (Corporate) Docstoc University Readers Engineered Materials Abstracts Materials Business File ABI/INFORM Collection ProQuest Central (purchase pre-March 2016) ABI/INFORM Trade & Industry (Alumni) Science Database (Alumni Edition) METADEX Technology Research Database ProQuest SciTech Collection ProQuest Technology Collection ProQuest Central (Alumni) (purchase pre-March 2016) ABI/INFORM Collection (Alumni) Materials Science & Engineering Collection ProQuest Central ProQuest Central UK/Ireland ProQuest Central Essentials ProQuest Central ProQuest Business Premium Collection Technology Collection ProQuest One ProQuest Materials Science Collection ProQuest Central Business Premium Collection (Alumni) ProQuest Central Student SciTech Premium Collection Materials Research Database ProQuest Business Collection (Alumni Edition) ProQuest Business Collection Materials Science Database ABI/INFORM Professional Advanced ABI/INFORM Trade & Industry Science Database Materials Science Collection ProQuest Central Premium ProQuest One Academic (New) ProQuest One Academic Middle East (New) ProQuest One Business ProQuest One Business (Alumni) ProQuest One Academic Eastern Edition (DO NOT USE) ProQuest One Applied & Life Sciences ProQuest One Academic ProQuest One Academic UKI Edition ProQuest Central Basic SIRS Editorial |
DatabaseTitle | CrossRef Materials Research Database ProQuest Business Collection (Alumni Edition) ProQuest One Business University Readers ProQuest Central Student Technology Collection Technology Research Database ProQuest One Academic Middle East (New) ProQuest Central Essentials SIRS Editorial Materials Science Collection ProQuest Central (Alumni Edition) SciTech Premium Collection ProQuest One Community College ABI/INFORM Complete Materials Business File ProQuest Central ABI/INFORM Professional Advanced ProQuest One Applied & Life Sciences Engineered Materials Abstracts ProQuest Central Korea Materials Science Database ProQuest Central (New) ABI/INFORM Complete (Alumni Edition) ProQuest Materials Science Collection Business Premium Collection ProQuest Science Journals (Alumni Edition) ABI/INFORM Trade & Industry (Alumni Edition) ProQuest Central Basic ProQuest Science Journals ProQuest One Academic Eastern Edition ProQuest Technology Collection ProQuest SciTech Collection ProQuest Business Collection METADEX ProQuest One Academic UKI Edition Docstoc Materials Science & Engineering Collection ProQuest One Business (Alumni) ABI/INFORM Trade & Industry ProQuest One Academic ProQuest Central (Alumni) Business Premium Collection (Alumni) ProQuest One Academic (New) |
DatabaseTitleList | Materials Research Database |
Database_xml | – sequence: 1 dbid: 8FG name: ProQuest Technology Collection url: https://search.proquest.com/technologycollection1 sourceTypes: Aggregation Database |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Engineering Physics |
EISSN | 1543-1851 |
EndPage | 3875 |
ExternalDocumentID | 10_1007_s11837_020_04242_0 |
Genre | Feature |
GeographicLocations | China |
GeographicLocations_xml | – name: China |
GrantInformation_xml | – fundername: Qinghai Provincial Major Scientific and Technological Special Project of China grantid: 2018-GX-A7 – fundername: Hunan Province Investigation on the Status and Management of Electronic Waste grantid: 502231805 – fundername: National Natural Science Foundation of China grantid: 51504293 funderid: http://dx.doi.org/10.13039/501100001809 – fundername: Hunan Provincial Natural Science Foundation of China grantid: 2018JJ4038 – fundername: Open-End Fund for the Valuable and Precision Instruments of Central South University grantid: CSUZC201906 – fundername: Fundamental Research Funds for the Central Universities of Central South University grantid: CX20190138 |
GroupedDBID | -58 -5G -BR -DZ -EM -Y2 -~C -~X .4S .86 .DC 06C 06D 0R~ 0VY 199 1N0 203 29J 29~ 2J2 2JN 2JY 2KG 2KM 2LR 2~H 30V 3V. 4.4 406 408 40D 40E 5GY 5VS 67Z 6NX 6TJ 78A 7WY 883 88I 8FE 8FG 8FL 8FW 8R4 8R5 8UJ 95- 95. 95~ 96X AABHQ AACDK AAEWM AAGAY AAHNG AAIAL AAJBT AAJKR AANZL AARHV AASML AATNV AATVU AAUYE AAYIU AAYQN AAYTO AAYZH ABAKF ABDZT ABECU ABEFU ABFTV ABHLI ABHQN ABJCF ABJNI ABJOX ABKCH ABMNI ABMQK ABNWP ABQBU ABSXP ABTEG ABTHY ABTKH ABTMW ABULA ABUWG ABWNU ABXPI ACAOD ACBEA ACBXY ACDTI ACGFO ACGFS ACGOD ACHSB ACHXU ACIWK ACKNC ACMDZ ACMLO ACOKC ACOMO ACPIV ACZOJ ADHHG ADHIR ADINQ ADKNI ADKPE ADMXK ADRFC ADTPH ADURQ ADYFF ADZKW AEBTG AEFQL AEGNC AEJHL AEJRE AEKMD AEMSY AENEX AEOHA AEPYU AESKC AETLH AEVLU AEXYK AFBBN AFKRA AFLOW AFQWF AFWTZ AFZKB AGAYW AGDGC AGJBK AGMZJ AGQEE AGQMX AGRTI AGWIL AGWZB AGYKE AHAVH AHBYD AHKAY AHSBF AHYZX AI. AIAKS AIGIU AIIXL AILAN AITGF AJBLW AJRNO AJZVZ ALMA_UNASSIGNED_HOLDINGS ALWAN AMKLP AMXSW AMYLF AMYQR AOCGG ARCEE ARCSS ARMRJ ASPBG AVWKF AXYYD AYJHY AZFZN AZQEC B-. BA0 BDATZ BENPR BEZIV BGLVJ BGNMA BKOMP BPHCQ CAG CCPQU COF CS3 CSCUP D1I DDRTE DNIVK DPUIP DU5 DWQXO EBLON EBS EDO EIOEI EJD ESBYG F5P FAC FAL FERAY FFXSO FIGPU FINBP FJD FJW FNLPD FRNLG FRRFC FSGXE FWDCC G-Y G-Z GGCAI GGRSB GJIRD GNUQQ GNWQR GQ6 GQ7 GROUPED_ABI_INFORM_COMPLETE H13 HCIFZ HF~ HG5 HG6 HMJXF HRMNR HZ~ H~9 I-F IJ- IKXTQ ITM IWAJR IXC IZQ I~X I~Z J-C J0Z JBSCW JZLTJ K60 K6~ KB. KDC KOV LLZTM M0F M2P M4Y MA- MK~ MQGED N9A NB0 NPVJJ NQJWS NU0 O9- O93 O9J P2P P9N PDBOC PF0 PQBIZ PQBZA PQQKQ PROAC PT4 Q2X QF4 QM1 QN7 QO4 QOK QOS R89 R9I RHV RNS ROL RPX RSV RXW S0X S16 S1Z S27 S3B SAP SCG SCLPG SCM SCV SDH SHX SISQX SJYHP SNE SNPRN SNX SOHCF SOJ SPISZ SRMVM SSLCW STPWE SZN T13 TAE TSG TSK TSV TUC TUS U2A UAO UG4 UOJIU UTJUX UZXMN VC2 VFIZW VH1 W48 WH7 WK8 YLTOR Z45 Z5O Z7R Z7S Z7V Z7W Z7X Z7Y Z7Z Z81 Z83 Z85 Z86 Z88 Z8M Z8N Z8P Z8Q Z8R Z8S Z8T Z8W Z8Z Z92 ZMTXR ~02 ~EX AAPKM AAYXX ABBRH ABDBE ABFSG ACSTC AEZWR AFDZB AFHIU AHPBZ AHWEU AIXLP AYFIA CITATION PHGZM PHGZT 4T- 4U- 7SR 7TA 7XB 8BQ 8FD 8FK ABRTQ JG9 L.- PKEHL PQEST PQGLB PQUKI Q9U |
ID | FETCH-LOGICAL-c424t-7f4f3f1f21eb7284cd4b41a5f4372d3b40228bef7f8349f8a3b3fa477727ff963 |
IEDL.DBID | BENPR |
ISSN | 1047-4838 |
IngestDate | Sat Aug 16 15:22:42 EDT 2025 Thu Apr 24 23:05:29 EDT 2025 Tue Jul 01 00:48:14 EDT 2025 Fri Feb 21 02:31:34 EST 2025 |
IsPeerReviewed | true |
IsScholarly | true |
Issue | 11 |
Language | English |
LinkModel | DirectLink |
MergedId | FETCHMERGED-LOGICAL-c424t-7f4f3f1f21eb7284cd4b41a5f4372d3b40228bef7f8349f8a3b3fa477727ff963 |
Notes | SourceType-Scholarly Journals-1 ObjectType-Feature-1 content type line 14 |
ORCID | 0000-0002-4223-9322 |
PQID | 2489775397 |
PQPubID | 42295 |
PageCount | 16 |
ParticipantIDs | proquest_journals_2489775397 crossref_citationtrail_10_1007_s11837_020_04242_0 crossref_primary_10_1007_s11837_020_04242_0 springer_journals_10_1007_s11837_020_04242_0 |
ProviderPackageCode | CITATION AAYXX |
PublicationCentury | 2000 |
PublicationDate | 2020-11-01 |
PublicationDateYYYYMMDD | 2020-11-01 |
PublicationDate_xml | – month: 11 year: 2020 text: 2020-11-01 day: 01 |
PublicationDecade | 2020 |
PublicationPlace | New York |
PublicationPlace_xml | – name: New York |
PublicationSubtitle | The Journal of The Minerals, Metals & Materials Society (TMS) |
PublicationTitle | JOM (1989) |
PublicationTitleAbbrev | JOM |
PublicationYear | 2020 |
Publisher | Springer US Springer Nature B.V |
Publisher_xml | – name: Springer US – name: Springer Nature B.V |
References | NunezCEspiellFRocaAHydrometallurgy19851493 P. Swash, A. Monhemius and Synthesis, in Sudbury’95, Conference on Mining and the Environment, (Sudbury, Ontario, 1995). TümenFBaileyNTHydrometallurgy199025317 SunyerAViñalsJHydrometallurgy2011109106 LiHYunnan Metall.2011401006(in Chinese) ZhangR-LQiuK-QXieY-JHongY-MZhengC-DJ Cent. South Univ. (Sci. Technol.)20063773(in Chinese) BhattacharyyaDJumawanAJrGrievesRSep. Sci. Technol.197914441 A. Valenzuela, Arsenic management in the metallurgical industry, Université Laval (2000). WelhamNJMalattKAVukcevicSMiner. Eng.200013911 J. Wu, X. Song, and G. Jiang, Nonferr. Met. (Extract. Metall.), 5 (2012) (in Chinese). PaktuncDDutrizacJECan. Mineral.200341905 HaTKKwonBHParkKSMohapatraDSep. Purif. Technol.2015142116 YuanHYunnan Metall.20114029(in Chinese) LangmuirDMahoneyJRowsonJGeochim. Cosmochim. Acta2006702942 WangMChenWZhouYLiXResour. Policy201752235(in Chinese) J. Hino, T. Kawabata, K. Miyamoto, and T. Yamaki, in Electrorefining and Hydrometallurgy of Copper, International Conference Held in Santiago, Chile, November 26-29, 1995, Papers, 617–627 (1995). LiuZGuoJLiangZZhangJGold20123356(in Chinese) PapassiopiNVaxevanidouKPaspaliarisIWater Air Soil Pollut.: Focus2003381 C. Mulale, M. Mwema, and G. Mashala, Retreatment of dust waste from the copper smelter and converter, global symposium on recycling (Waste Treatment and Clean Technology, 1999), pp. 1.201-201.208. ChenJWangZWuYLiLLiBPanDAZuoTResour. Conserv. Recyc.201914635 DabekaussenRDroppertDDemopoulosGCIM Bull.200194116 H. Jia, Recycling and Comprehensive Utilization of Metallurgical Waste with High Arsenic Content (Central South University, 2013). VakylabadABSchaffieMRanjbarMManafiZDarezereshkiEJ Hazard. Mater.201230197 C. Verdugo, G. Lagos, L. Becze, M. Gomez, and G. Demopoulos, Proc. Hydro Process. 86 (2012). KolitschUPringAJ. Miner. Petrol. Sci.20019667 ViñalsJSunyerAMoleraPCruellsMLlorcaNHydrometallurgy2010104247 TaylorPRPutraTAPyrometallurgical Processing Technologies for Treating High Arsenic Copper Concentrates, Celebrating the Megascale2014New YorkWiley197211 LiuW-FFuX-XYangT-ZZhangD-CChenLTrans. Nonferr. Met. Soc. China2018281854 R. Robins, Arsenic hydrometallurgy, Arsen. Metall. Fundam. Appl., 215 (1988). ChenYLiaoTLiGChenBShiXMiner. Eng.20123923 GuanLLeiJZhengYXiongYRare Met.20083288 TongampWTakasakiYShibayamaAHydrometallurgy200998213 RiverosPDutrizacJSpencerPCan. Metall. Q.200140395 GuoliangLSiCJunzhiBJ. Shenyang Jianzhu Univ. (Nat. Sci.)2006221671(in Chinese) SamuelssonCCarlssonGCIM Bull.200194111 B. Lan, J.E. Wang, H. Zhang, Z. Wu, S. Zhong, Q. Peng, C. Wang, and L. Zou, A Process for Comprehensive Recovery of Waste Smelting Waste Acid and Copper Smelting Open Road Dust, CN104593604A (2015). ShibayamaATakasakiYWilliamTYamatodaniAHiguchiYSunagawaSOnoEJ Hazard. Mater.20101811016 A. Morales, M. Cruells, A. Roca, and R. Bergo, in Dutrizac International Symposium on Copper Hydrometallurgy, ed. PA Riveros, DG Dixon, DB Dreisinger and MJ Collins, 2007, pp. 177–189. VakylabadABSchaffieMRanjbarMManafiZDarezereshkiEJ Hazard. Mater.2012241–242197 SuklaLPandaSJenaPHydrometallurgy198616153 LiTChina Nonferr. Metall.2015553(in Chinese) S. Wang, Environ. Eng., 13 (1993) (in Chinese). AltundoganHTümenFHydrometallurgy199744261 MoralesACruellsMRocaABergóRHydrometallurgy2010105148 PottB-MMattiassonBBiotechnol. Lett.200426451 LangmuirDMahoneyJMacDonaldARowsonJGeochim. Cosmochim. Acta.1999633379 NazariAMRadzinskiRGhahremanAHydrometallurgy2017174258 DutraAPaivaPTavaresLMiner. Eng.200619478 DongZJiangTXuBYangYLiQJ. Clean. Prod.2019229387 SmedleyPLKinniburghDGAppl. Geochem.200217517 ChenWShengQWangDZhangZChenGNon-ferr. Min. Metall.2003345 LiuSLiJMengWFengSTangDPhosphate Fertil. Compd. Fertil.20092464(in Chinese) VinalsJRocaAArranzMCan. Metall. Q.20034229 BalladaresEKelmUHelleSParraRAranedaEDyna20148111 ViñalsJNúñezCMetal. Mater. Trans. B198819365 N. Piret and A. Melin, TMS, 735 (1989). SunyerAViñalsJHydrometallurgy201110954 HouXZhangYZhangXHydrometall. China20113057(in Chinese) M. Ruonala, J. Leppinen, and V. Miettinen, Method for removing arsenic as scorodite, U.S. Patent 2011/0309029 A1 (2011). DovePMRimstidtJDAm. Mineral.198570838 VircikovaEHavlikMJOM199920–2351 RobinsRGTozawaKCan. Min. Metall. Bull.198275171 R.S. Alkis and W.T. Brett, Processes for the treatment of smelter flue dust, U.S. Patent 4891076 (1988). XuZQiangLNieHNonferrTMetal. Soc. China201020s176 GabbPDaviesAJOM19995118 R.D. Witham, E.B. McNew, and J.L. Burba, Process for removing arsenic from aqueous streams, U.S. Patent 2004/0144729 A1. (2004). KrauseEEttelVAHydrometallurgy1989223311 XuDCopper Eng.201831009 YangTFuXLiuWChenLZhangDJOM2017691982 SiweiLILiuZLiuZYuhuLIQihouLIHydrometall. China201736336(in Chinese) A. Ante and M.-P. Hofmann, Method for separating arsenic and heavy metals in an acidic washing solution, U.S. Patent 9555362 B2 (2012). XiangPFengQZhuYDengJLongTNiuYNonferrTMet. Soc. China2012221794 SinghaniaSWangQFilippouDDemopoulosGPMetal. Mater. Trans. B200637189 MontenegroVSanoHFujisawaTMiner. Eng.201349184 GuoXShiJYiYTianQLiDJ. Environ. Chem. Eng.201532236(in Chinese) ViolanteAPignaMDel GaudioSCozzolinoVBanerjeeDEnviron. Sci. Technol.2009431515 PaktuncDBruggemanKAppl. Geochem.201025674 KarimovKNaboichenkoSMetallurgist201660456 WeinmuellnerRKryeziuKZbiralBTavKSchoenhacker-AlteBGrozaDWimmerLSchossererMNagelreiterFRösingerSArch. Toxicol.201892181 TangDLiuWJiangZGuizhou Chem. Ind.2007325(in Chinese) MoonDHDermatasDMenounouNSci. Total. Environ.2004330171 R. James E. and C. Enzo L., Process for recovering metal values from materials containing arsenic, U.S. Patent 4244734 (1979). BakhtiariFAtashiHZivdarMBagheriSSInt. J. Miner. Process.20088650 FilippouDDemopoulosGPJOM19974952 Y. Shi, D. Liu, S. Yao, and B. Zhang, in: China Association for Science and Technology Annual Meeting—10 National Heavy Nonferrous Metallurgy Technology Exchange Conference (2014). OkanigbeDAdelekeAProc. Manuf.20177121 KrauseEEttelVHydrometallurgy198922311 KrauseENieGHydrometall. China19902021(in Chinese) J.D. Prater and B.A. Wells, Recovery of copper from arsenic containing metallurgical waste materials, U.S. Patent 4149880 (1979). W.G. Davenport, M.J. King, M.E. Schlesinger, and A.K. Biswas, Extract. Metall. Copper (Amsterdam: Elsevier, 2002). KeJ-JQiuR-YChenC-YHydrometallurgy198412217 BakhtiariFZivdarMAtashiHBagheriSSHydrometallurgy20089040 R. Ruitenberg and C.J.N. Buisman, Process for immobilizing arsenic waste, U.S. Patent 6656722 B1 (2000). ErmakovVITsvetnye Metally.19791226 QiangLPintoISYoucaiZJ. Clean. Prod.201484663 D Filippou (4242_CR4) 1997; 49 4242_CR66 4242_CR20 4242_CR64 A Morales (4242_CR42) 2010; 105 R Weinmuellner (4242_CR62) 2018; 92 E Vircikova (4242_CR67) 1999; 20–23 J Chen (4242_CR1) 2019; 146 D Paktunc (4242_CR82) 2010; 25 D Langmuir (4242_CR80) 2006; 70 AB Vakylabad (4242_CR23) 2012; 30 LI Siwei (4242_CR35) 2017; 36 L Qiang (4242_CR32) 2014; 84 P Riveros (4242_CR45) 2001; 40 W Chen (4242_CR10) 2003; 3 C Samuelsson (4242_CR22) 2001; 94 Y Chen (4242_CR37) 2012; 39 E Balladares (4242_CR21) 2014; 81 Z Xu (4242_CR47) 2010; 20 VI Ermakov (4242_CR26) 1979; 12 U Kolitsch (4242_CR93) 2001; 96 PL Smedley (4242_CR61) 2002; 17 D Bhattacharyya (4242_CR36) 1979; 14 4242_CR60 P Xiang (4242_CR63) 2012; 22 J Vinals (4242_CR90) 2003; 42 4242_CR34 D Tang (4242_CR52) 2007; 32 A Shibayama (4242_CR31) 2010; 181 S Liu (4242_CR27) 2009; 24 W Tongamp (4242_CR39) 2009; 98 4242_CR79 F Bakhtiari (4242_CR14) 2008; 86 NJ Welham (4242_CR85) 2000; 13 RG Robins (4242_CR68) 1982; 75 W-F Liu (4242_CR16) 2018; 28 C Nunez (4242_CR33) 1985; 14 S Singhania (4242_CR81) 2006; 37 T Yang (4242_CR7) 2017; 69 D Okanigbe (4242_CR18) 2017; 7 R-L Zhang (4242_CR8) 2006; 37 L Guan (4242_CR50) 2008; 32 J Viñals (4242_CR95) 2010; 104 E Krause (4242_CR84) 1989; 22 H Li (4242_CR24) 2011; 40 4242_CR9 J-J Ke (4242_CR11) 1984; 12 4242_CR73 AM Nazari (4242_CR6) 2017; 174 4242_CR74 4242_CR71 D Langmuir (4242_CR76) 1999; 63 AB Vakylabad (4242_CR19) 2012; 241–242 A Violante (4242_CR75) 2009; 43 4242_CR87 4242_CR49 4242_CR46 Z Liu (4242_CR70) 2012; 33 N Papassiopi (4242_CR86) 2003; 3 R Dabekaussen (4242_CR38) 2001; 94 X Guo (4242_CR44) 2015; 3 T Li (4242_CR77) 2015; 5 F Tümen (4242_CR30) 1990; 25 X Hou (4242_CR12) 2011; 30 B-M Pott (4242_CR54) 2004; 26 F Bakhtiari (4242_CR15) 2008; 90 D Xu (4242_CR48) 2018; 3 A Sunyer (4242_CR94) 2011; 109 H Altundogan (4242_CR28) 1997; 44 A Sunyer (4242_CR91) 2011; 109 4242_CR41 V Montenegro (4242_CR13) 2013; 49 4242_CR83 4242_CR55 4242_CR53 E Krause (4242_CR72) 1989; 22 PR Taylor (4242_CR2) 2014 DH Moon (4242_CR65) 2004; 330 D Paktunc (4242_CR92) 2003; 41 4242_CR57 4242_CR58 4242_CR17 L Guoliang (4242_CR59) 2006; 22 Z Dong (4242_CR56) 2019; 229 E Krause (4242_CR78) 1990; 20 TK Ha (4242_CR5) 2015; 142 K Karimov (4242_CR40) 2016; 60 PM Dove (4242_CR88) 1985; 70 P Gabb (4242_CR69) 1999; 51 H Yuan (4242_CR25) 2011; 40 L Sukla (4242_CR29) 1986; 16 M Wang (4242_CR3) 2017; 52 J Viñals (4242_CR89) 1988; 19 A Dutra (4242_CR43) 2006; 19 4242_CR51 |
References_xml | – reference: ChenYLiaoTLiGChenBShiXMiner. Eng.20123923 – reference: ChenJWangZWuYLiLLiBPanDAZuoTResour. Conserv. Recyc.201914635 – reference: WelhamNJMalattKAVukcevicSMiner. Eng.200013911 – reference: OkanigbeDAdelekeAProc. Manuf.20177121 – reference: C. Verdugo, G. Lagos, L. Becze, M. Gomez, and G. Demopoulos, Proc. Hydro Process. 86 (2012). – reference: VakylabadABSchaffieMRanjbarMManafiZDarezereshkiEJ Hazard. Mater.201230197 – reference: RobinsRGTozawaKCan. Min. Metall. Bull.198275171 – reference: QiangLPintoISYoucaiZJ. Clean. Prod.201484663 – reference: W.G. Davenport, M.J. King, M.E. Schlesinger, and A.K. Biswas, Extract. Metall. Copper (Amsterdam: Elsevier, 2002). – reference: NazariAMRadzinskiRGhahremanAHydrometallurgy2017174258 – reference: KrauseEEttelVAHydrometallurgy1989223311 – reference: DutraAPaivaPTavaresLMiner. Eng.200619478 – reference: SunyerAViñalsJHydrometallurgy201110954 – reference: HaTKKwonBHParkKSMohapatraDSep. Purif. Technol.2015142116 – reference: TangDLiuWJiangZGuizhou Chem. Ind.2007325(in Chinese) – reference: LangmuirDMahoneyJRowsonJGeochim. Cosmochim. Acta2006702942 – reference: A. Morales, M. Cruells, A. Roca, and R. Bergo, in Dutrizac International Symposium on Copper Hydrometallurgy, ed. PA Riveros, DG Dixon, DB Dreisinger and MJ Collins, 2007, pp. 177–189. – reference: XuZQiangLNieHNonferrTMetal. Soc. China201020s176 – reference: BalladaresEKelmUHelleSParraRAranedaEDyna20148111 – reference: ShibayamaATakasakiYWilliamTYamatodaniAHiguchiYSunagawaSOnoEJ Hazard. Mater.20101811016 – reference: DongZJiangTXuBYangYLiQJ. Clean. Prod.2019229387 – reference: KrauseEEttelVHydrometallurgy198922311 – reference: FilippouDDemopoulosGPJOM19974952 – reference: SunyerAViñalsJHydrometallurgy2011109106 – reference: BakhtiariFAtashiHZivdarMBagheriSSInt. J. Miner. Process.20088650 – reference: LiHYunnan Metall.2011401006(in Chinese) – reference: DabekaussenRDroppertDDemopoulosGCIM Bull.200194116 – reference: AltundoganHTümenFHydrometallurgy199744261 – reference: GabbPDaviesAJOM19995118 – reference: VinalsJRocaAArranzMCan. Metall. Q.20034229 – reference: GuoXShiJYiYTianQLiDJ. Environ. Chem. Eng.201532236(in Chinese) – reference: R. Robins, Arsenic hydrometallurgy, Arsen. Metall. Fundam. Appl., 215 (1988). – reference: A. Ante and M.-P. Hofmann, Method for separating arsenic and heavy metals in an acidic washing solution, U.S. Patent 9555362 B2 (2012). – reference: ViñalsJNúñezCMetal. Mater. Trans. B198819365 – reference: ViñalsJSunyerAMoleraPCruellsMLlorcaNHydrometallurgy2010104247 – reference: SinghaniaSWangQFilippouDDemopoulosGPMetal. Mater. Trans. B200637189 – reference: KeJ-JQiuR-YChenC-YHydrometallurgy198412217 – reference: R.D. Witham, E.B. McNew, and J.L. Burba, Process for removing arsenic from aqueous streams, U.S. Patent 2004/0144729 A1. (2004). – reference: PapassiopiNVaxevanidouKPaspaliarisIWater Air Soil Pollut.: Focus2003381 – reference: KarimovKNaboichenkoSMetallurgist201660456 – reference: PaktuncDBruggemanKAppl. Geochem.201025674 – reference: BhattacharyyaDJumawanAJrGrievesRSep. Sci. Technol.197914441 – reference: PottB-MMattiassonBBiotechnol. Lett.200426451 – reference: TaylorPRPutraTAPyrometallurgical Processing Technologies for Treating High Arsenic Copper Concentrates, Celebrating the Megascale2014New YorkWiley197211 – reference: ViolanteAPignaMDel GaudioSCozzolinoVBanerjeeDEnviron. Sci. Technol.2009431515 – reference: SmedleyPLKinniburghDGAppl. Geochem.200217517 – reference: MoralesACruellsMRocaABergóRHydrometallurgy2010105148 – reference: A. Valenzuela, Arsenic management in the metallurgical industry, Université Laval (2000). – reference: R. James E. and C. Enzo L., Process for recovering metal values from materials containing arsenic, U.S. Patent 4244734 (1979). – reference: DovePMRimstidtJDAm. Mineral.198570838 – reference: LiuW-FFuX-XYangT-ZZhangD-CChenLTrans. Nonferr. Met. Soc. China2018281854 – reference: GuoliangLSiCJunzhiBJ. Shenyang Jianzhu Univ. (Nat. Sci.)2006221671(in Chinese) – reference: H. Jia, Recycling and Comprehensive Utilization of Metallurgical Waste with High Arsenic Content (Central South University, 2013). – reference: XiangPFengQZhuYDengJLongTNiuYNonferrTMet. Soc. China2012221794 – reference: LiuZGuoJLiangZZhangJGold20123356(in Chinese) – reference: MontenegroVSanoHFujisawaTMiner. Eng.201349184 – reference: XuDCopper Eng.201831009 – reference: WeinmuellnerRKryeziuKZbiralBTavKSchoenhacker-AlteBGrozaDWimmerLSchossererMNagelreiterFRösingerSArch. Toxicol.201892181 – reference: M. Ruonala, J. Leppinen, and V. Miettinen, Method for removing arsenic as scorodite, U.S. Patent 2011/0309029 A1 (2011). – reference: ZhangR-LQiuK-QXieY-JHongY-MZhengC-DJ Cent. South Univ. (Sci. Technol.)20063773(in Chinese) – reference: N. Piret and A. Melin, TMS, 735 (1989). – reference: Y. Shi, D. Liu, S. Yao, and B. Zhang, in: China Association for Science and Technology Annual Meeting—10 National Heavy Nonferrous Metallurgy Technology Exchange Conference (2014). – reference: LiuSLiJMengWFengSTangDPhosphate Fertil. Compd. Fertil.20092464(in Chinese) – reference: J. Hino, T. Kawabata, K. Miyamoto, and T. Yamaki, in Electrorefining and Hydrometallurgy of Copper, International Conference Held in Santiago, Chile, November 26-29, 1995, Papers, 617–627 (1995). – reference: ChenWShengQWangDZhangZChenGNon-ferr. Min. Metall.2003345 – reference: B. Lan, J.E. Wang, H. Zhang, Z. Wu, S. Zhong, Q. Peng, C. Wang, and L. Zou, A Process for Comprehensive Recovery of Waste Smelting Waste Acid and Copper Smelting Open Road Dust, CN104593604A (2015). – reference: TümenFBaileyNTHydrometallurgy199025317 – reference: MoonDHDermatasDMenounouNSci. Total. Environ.2004330171 – reference: J. Wu, X. Song, and G. Jiang, Nonferr. Met. (Extract. Metall.), 5 (2012) (in Chinese). – reference: S. Wang, Environ. Eng., 13 (1993) (in Chinese). – reference: HouXZhangYZhangXHydrometall. China20113057(in Chinese) – reference: VircikovaEHavlikMJOM199920–2351 – reference: YangTFuXLiuWChenLZhangDJOM2017691982 – reference: C. Mulale, M. Mwema, and G. Mashala, Retreatment of dust waste from the copper smelter and converter, global symposium on recycling (Waste Treatment and Clean Technology, 1999), pp. 1.201-201.208. – reference: YuanHYunnan Metall.20114029(in Chinese) – reference: WangMChenWZhouYLiXResour. Policy201752235(in Chinese) – reference: PaktuncDDutrizacJECan. Mineral.200341905 – reference: KolitschUPringAJ. Miner. Petrol. Sci.20019667 – reference: NunezCEspiellFRocaAHydrometallurgy19851493 – reference: KrauseENieGHydrometall. China19902021(in Chinese) – reference: VakylabadABSchaffieMRanjbarMManafiZDarezereshkiEJ Hazard. Mater.2012241–242197 – reference: GuanLLeiJZhengYXiongYRare Met.20083288 – reference: BakhtiariFZivdarMAtashiHBagheriSSHydrometallurgy20089040 – reference: SuklaLPandaSJenaPHydrometallurgy198616153 – reference: P. Swash, A. Monhemius and Synthesis, in Sudbury’95, Conference on Mining and the Environment, (Sudbury, Ontario, 1995). – reference: TongampWTakasakiYShibayamaAHydrometallurgy200998213 – reference: ErmakovVITsvetnye Metally.19791226 – reference: RiverosPDutrizacJSpencerPCan. Metall. Q.200140395 – reference: LiTChina Nonferr. Metall.2015553(in Chinese) – reference: SiweiLILiuZLiuZYuhuLIQihouLIHydrometall. China201736336(in Chinese) – reference: R. Ruitenberg and C.J.N. Buisman, Process for immobilizing arsenic waste, U.S. Patent 6656722 B1 (2000). – reference: LangmuirDMahoneyJMacDonaldARowsonJGeochim. Cosmochim. Acta.1999633379 – reference: R.S. Alkis and W.T. Brett, Processes for the treatment of smelter flue dust, U.S. Patent 4891076 (1988). – reference: J.D. Prater and B.A. Wells, Recovery of copper from arsenic containing metallurgical waste materials, U.S. Patent 4149880 (1979). – reference: SamuelssonCCarlssonGCIM Bull.200194111 – volume: 12 start-page: 217 year: 1984 ident: 4242_CR11 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(84)90035-5 – volume: 174 start-page: 258 year: 2017 ident: 4242_CR6 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2016.10.011 – ident: 4242_CR20 – volume: 104 start-page: 247 year: 2010 ident: 4242_CR95 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2010.06.013 – volume: 142 start-page: 116 year: 2015 ident: 4242_CR5 publication-title: Sep. Purif. Technol. doi: 10.1016/j.seppur.2015.01.004 – ident: 4242_CR53 – volume: 22 start-page: 1671 year: 2006 ident: 4242_CR59 publication-title: J. Shenyang Jianzhu Univ. (Nat. Sci.) – volume: 69 start-page: 1982 year: 2017 ident: 4242_CR7 publication-title: JOM doi: 10.1007/s11837-017-2492-6 – volume: 90 start-page: 40 year: 2008 ident: 4242_CR15 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2007.09.010 – volume: 3 start-page: 1009 year: 2018 ident: 4242_CR48 publication-title: Copper Eng. – ident: 4242_CR57 – ident: 4242_CR34 – volume: 20 start-page: s176 year: 2010 ident: 4242_CR47 publication-title: Metal. Soc. China – volume: 32 start-page: 88 year: 2008 ident: 4242_CR50 publication-title: Rare Met. – volume: 30 start-page: 57 year: 2011 ident: 4242_CR12 publication-title: Hydrometall. China – volume: 94 start-page: 111 year: 2001 ident: 4242_CR22 publication-title: CIM Bull. – volume: 109 start-page: 54 year: 2011 ident: 4242_CR94 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2011.05.009 – volume: 25 start-page: 674 year: 2010 ident: 4242_CR82 publication-title: Appl. Geochem. doi: 10.1016/j.apgeochem.2010.01.021 – volume: 13 start-page: 911 year: 2000 ident: 4242_CR85 publication-title: Miner. Eng. doi: 10.1016/S0892-6875(00)00078-9 – volume: 229 start-page: 387 year: 2019 ident: 4242_CR56 publication-title: J. Clean. Prod. doi: 10.1016/j.jclepro.2019.05.033 – volume: 33 start-page: 56 year: 2012 ident: 4242_CR70 publication-title: Gold – ident: 4242_CR66 doi: 10.1111/j.1440-1789.1993.tb00224.x – volume: 42 start-page: 29 year: 2003 ident: 4242_CR90 publication-title: Can. Metall. Q. doi: 10.1179/cmq.2003.42.1.29 – volume: 37 start-page: 73 year: 2006 ident: 4242_CR8 publication-title: J Cent. South Univ. (Sci. Technol.) – volume: 84 start-page: 663 year: 2014 ident: 4242_CR32 publication-title: J. Clean. Prod. doi: 10.1016/j.jclepro.2014.03.085 – ident: 4242_CR46 – volume: 37 start-page: 189 year: 2006 ident: 4242_CR81 publication-title: Metal. Mater. Trans. B doi: 10.1007/BF02693148 – volume: 70 start-page: 2942 year: 2006 ident: 4242_CR80 publication-title: Geochim. Cosmochim. Acta doi: 10.1016/j.gca.2006.03.006 – volume: 19 start-page: 365 year: 1988 ident: 4242_CR89 publication-title: Metal. Mater. Trans. B doi: 10.1007/BF02657734 – ident: 4242_CR17 – volume: 330 start-page: 171 year: 2004 ident: 4242_CR65 publication-title: Sci. Total. Environ. doi: 10.1016/j.scitotenv.2004.03.016 – volume: 44 start-page: 261 year: 1997 ident: 4242_CR28 publication-title: Hydrometallurgy doi: 10.1016/S0304-386X(96)00038-2 – volume: 43 start-page: 1515 year: 2009 ident: 4242_CR75 publication-title: Environ. Sci. Technol. doi: 10.1021/es802229r – volume: 96 start-page: 67 year: 2001 ident: 4242_CR93 publication-title: J. Miner. Petrol. Sci. doi: 10.2465/jmps.96.67 – ident: 4242_CR73 – volume: 146 start-page: 35 year: 2019 ident: 4242_CR1 publication-title: Resour. Conserv. Recyc. doi: 10.1016/j.resconrec.2019.03.020 – volume: 5 start-page: 53 year: 2015 ident: 4242_CR77 publication-title: China Nonferr. Metall. – volume: 60 start-page: 456 year: 2016 ident: 4242_CR40 publication-title: Metallurgist doi: 10.1007/s11015-016-0313-8 – volume: 19 start-page: 478 year: 2006 ident: 4242_CR43 publication-title: Miner. Eng. doi: 10.1016/j.mineng.2005.08.013 – ident: 4242_CR83 – volume: 12 start-page: 26 year: 1979 ident: 4242_CR26 publication-title: Tsvetnye Metally. – ident: 4242_CR49 – ident: 4242_CR9 – volume: 109 start-page: 106 year: 2011 ident: 4242_CR91 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2011.06.001 – volume: 3 start-page: 2236 year: 2015 ident: 4242_CR44 publication-title: J. Environ. Chem. Eng. doi: 10.1016/j.jece.2015.06.028 – ident: 4242_CR87 – volume: 81 start-page: 11 year: 2014 ident: 4242_CR21 publication-title: Dyna doi: 10.15446/dyna.v81n186.32852 – volume: 49 start-page: 52 year: 1997 ident: 4242_CR4 publication-title: JOM doi: 10.1007/s11837-997-0034-3 – volume: 105 start-page: 148 year: 2010 ident: 4242_CR42 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2010.09.001 – volume: 181 start-page: 1016 year: 2010 ident: 4242_CR31 publication-title: J Hazard. Mater. doi: 10.1016/j.jhazmat.2010.05.116 – ident: 4242_CR41 – volume: 14 start-page: 93 year: 1985 ident: 4242_CR33 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(85)90008-8 – volume: 26 start-page: 451 year: 2004 ident: 4242_CR54 publication-title: Biotechnol. Lett. doi: 10.1023/B:BILE.0000018267.09698.cc – volume: 32 start-page: 5 year: 2007 ident: 4242_CR52 publication-title: Guizhou Chem. Ind. – ident: 4242_CR51 – ident: 4242_CR74 – volume: 25 start-page: 317 year: 1990 ident: 4242_CR30 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(90)90047-6 – volume: 20–23 start-page: 51 year: 1999 ident: 4242_CR67 publication-title: JOM – volume: 98 start-page: 213 year: 2009 ident: 4242_CR39 publication-title: Hydrometallurgy doi: 10.1016/j.hydromet.2009.04.020 – volume: 3 start-page: 81 year: 2003 ident: 4242_CR86 publication-title: Water Air Soil Pollut.: Focus doi: 10.1023/A:1023905128860 – volume: 22 start-page: 311 issue: 3 year: 1989 ident: 4242_CR84 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(89)90028-5 – volume: 241–242 start-page: 197 year: 2012 ident: 4242_CR19 publication-title: J Hazard. Mater. doi: 10.1016/j.jhazmat.2012.09.031 – volume: 22 start-page: 1794 year: 2012 ident: 4242_CR63 publication-title: Met. Soc. China – ident: 4242_CR55 – volume: 86 start-page: 50 year: 2008 ident: 4242_CR14 publication-title: Int. J. Miner. Process. doi: 10.1016/j.minpro.2007.10.003 – volume: 40 start-page: 29 year: 2011 ident: 4242_CR25 publication-title: Yunnan Metall. – volume: 20 start-page: 21 year: 1990 ident: 4242_CR78 publication-title: Hydrometall. China – volume: 28 start-page: 1854 year: 2018 ident: 4242_CR16 publication-title: Trans. Nonferr. Met. Soc. China doi: 10.1016/S1003-6326(18)64830-7 – volume: 17 start-page: 517 year: 2002 ident: 4242_CR61 publication-title: Appl. Geochem. doi: 10.1016/S0883-2927(02)00018-5 – volume: 51 start-page: 18 year: 1999 ident: 4242_CR69 publication-title: JOM doi: 10.1007/s11837-999-0151-2 – volume: 40 start-page: 1006 year: 2011 ident: 4242_CR24 publication-title: Yunnan Metall. – volume: 63 start-page: 3379 year: 1999 ident: 4242_CR76 publication-title: Geochim. Cosmochim. Acta. doi: 10.1016/S0016-7037(99)00259-8 – volume: 52 start-page: 235 year: 2017 ident: 4242_CR3 publication-title: Resour. Policy doi: 10.1016/j.resourpol.2016.12.009 – volume: 36 start-page: 336 year: 2017 ident: 4242_CR35 publication-title: Hydrometall. China – volume: 94 start-page: 116 year: 2001 ident: 4242_CR38 publication-title: CIM Bull. – volume: 49 start-page: 184 year: 2013 ident: 4242_CR13 publication-title: Miner. Eng. doi: 10.1016/j.mineng.2010.03.020 – ident: 4242_CR71 – volume: 30 start-page: 197 year: 2012 ident: 4242_CR23 publication-title: J Hazard. Mater. doi: 10.1016/j.jhazmat.2012.09.031 – volume: 22 start-page: 311 year: 1989 ident: 4242_CR72 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(89)90028-5 – volume: 41 start-page: 905 year: 2003 ident: 4242_CR92 publication-title: Can. Mineral. doi: 10.2113/gscanmin.41.4.905 – volume: 92 start-page: 181 year: 2018 ident: 4242_CR62 publication-title: Arch. Toxicol. doi: 10.1007/s00204-017-2034-6 – volume: 24 start-page: 64 year: 2009 ident: 4242_CR27 publication-title: Phosphate Fertil. Compd. Fertil. – volume: 14 start-page: 441 year: 1979 ident: 4242_CR36 publication-title: Sep. Sci. Technol. doi: 10.1080/01496397908058096 – ident: 4242_CR79 – volume: 16 start-page: 153 year: 1986 ident: 4242_CR29 publication-title: Hydrometallurgy doi: 10.1016/0304-386X(86)90040-X – ident: 4242_CR58 – volume: 40 start-page: 395 year: 2001 ident: 4242_CR45 publication-title: Can. Metall. Q. doi: 10.1179/cmq.2001.40.4.395 – ident: 4242_CR60 – volume: 75 start-page: 171 year: 1982 ident: 4242_CR68 publication-title: Can. Min. Metall. Bull. – volume: 70 start-page: 838 year: 1985 ident: 4242_CR88 publication-title: Am. Mineral. – volume: 39 start-page: 23 year: 2012 ident: 4242_CR37 publication-title: Miner. Eng. doi: 10.1016/j.mineng.2012.06.008 – ident: 4242_CR64 – volume: 7 start-page: 121 year: 2017 ident: 4242_CR18 publication-title: Proc. Manuf. – start-page: 197 volume-title: Pyrometallurgical Processing Technologies for Treating High Arsenic Copper Concentrates, Celebrating the Megascale year: 2014 ident: 4242_CR2 – volume: 3 start-page: 45 year: 2003 ident: 4242_CR10 publication-title: Non-ferr. Min. Metall. |
SSID | ssj0007491 |
Score | 2.5013602 |
SecondaryResourceType | review_article |
Snippet | Copper smelting open-circuit (CSO) dust contains various valuable metals, such as copper, lead, and zinc, as well as undesirable toxic elements such as... |
SourceID | proquest crossref springer |
SourceType | Aggregation Database Enrichment Source Index Database Publisher |
StartPage | 3860 |
SubjectTerms | Arsenic Arsenic removal Cementation Chemical precipitation Chemistry/Food Science Circuits Copper Dust Earth Sciences Electrometallurgical Processing Energy consumption Energy recovery Engineering Environment Gases Hydrometallurgy Leaching Lead Materials recovery Metallurgy Metals Mineralogy Particle size Physics Smelting Solvent extraction Zinc |
SummonAdditionalLinks | – databaseName: SpringerLink Journals (ICM) dbid: U2A link: http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwlV3NS8MwFA8yEfQgOhWnU3LwpoG2SZv0OObG8ODFTXYrTZrgYHaj7UD_e1_6saqo4KmHfND2veT9Xt7vvSB0w2lCfRpLwpSICeNGkRj8ZhJK4WgwHwk8LNviMZjM2MPcn9dJYXnDdm9CkuVO3Sa7gfZxYt0dG67zCDjquz747pbINfMG2_2Xs_KevLIGARNU1KkyP8_x1Ry1GPNbWLS0NuMjdFjDRDyo5HqMdnTaRQefigd20V5J3lT5CXob4OqIH68MBkCH7SLP9EvFTcfWwwSFfbetz7a2t1xqPKpo4zm2-SUwYL3WGX561UtLg8aWZkKGi0xtFgW-3-QFjtME3ibX6ULhaUNOP0Wz8Wg6nJD6RgWi4HMLwg0z1LjGc7XkYJhUwiRzY9_Y6F1CJbPVcKQ23AjKQiNiKqmJGQcIzo2BtXqGOukq1ecIG0-5Oox9liiHKWlEENLA1zClJwJH6h5ymx8bqbrcuL31Yhm1hZKtMCIQRlQKI3J66HY7Zl0V2_izd7-RV1QvvDzymABE6wPK6qG7RoZt8--zXfyv-yXa96walVmJfdQpso2-AnhSyOtSGz8AvEHahQ priority: 102 providerName: Springer Nature |
Title | A Review of the Comprehensive Recovery of Valuable Elements from Copper Smelting Open-Circuit Dust and Arsenic Treatment |
URI | https://link.springer.com/article/10.1007/s11837-020-04242-0 https://www.proquest.com/docview/2489775397 |
Volume | 72 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwfV3db9MwED9t7Qt7QGyAVjYqP_AGFkns1O4TKqPdBNKEYEXjKYodW6vUpV2TSvDfc5c4K0NiT5Hi2Epy5_vw_e4O4I0ShUhFbri0OudSectz9Jv52OjIofoo8EJoi8vRxVx-vk6vw4FbFWCVnUxsBHWxsnRG_j6RGk2VFNXnh_Udp65RFF0NLTT2oY8iWOse9D9OL79-u5fFSjY985p6BFILHdJm2uQ55GbFyX2i8F_Co4eqaWdv_hMibTTP7Bk8DSYjm7Q0PoQ9Vx7BwV-FBJ_DrwlrD_nZyjM06Rht8427adHpjHxMZNnfNPqDqnubpWPTFjheMcowwQnrtduw77duSUBoRkATfrbY2O2iZp-2Vc3yssB3qFy5sOyqg6e_gPlsenV2wUNPBW7xI2uuvPTCxz6JnVGommwhjYzz1FP8rhBGUj0c47zyWsix17kwwudSoRGuvMfd-hJ65ap0x8B8YmM3zlNZ2Eha4_VoLEapwyUTPYqMG0Dc_c7MhoLj1Pdime1KJRMJMiRB1pAgiwbw9n7Oui238ejTpx2VsrD1qmzHKAN411FuN_z_1V49vtoJPEmIWZo8xFPo1Zute40GSW2GsK9n50PoT85_fpkOAw_i3Xky-QPuZ9-i |
linkProvider | ProQuest |
linkToHtml | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwtV1Lb9QwEB6V9lA4IEpBLBTwAU7UIrGdtfdQoartsqWll25RbyF2bLHSkl02WUH_VH8jM3l0AYneesrB8cjKjOeRmfkG4I2WuUxkZrlyJuNKB8czjJv5wJrIo_nI8UHVFmf90YX6dJlcrsF11wtDZZWdTqwVdT5z9I_8vVAGXZUEzeeH-Q9OU6Mou9qN0GjE4sRf_cSQrdw7PkT-vhVieDQ-GPF2qgB3SqiK66CCDHEQsbcalbPLlVVxlgTKYOXSKkKEsT7oYKQaBJNJK0OmNLqhOgSUV6R7DzaUxKNQZ_rw443m16qe0FejHygjTduk07Tq4d3RnII1SjYKHv1tCFfe7T8J2drODR_Bw9ZBZfuNRG3Bmi8ew4M_YAu34dc-a1IKbBYYOpCMlMrCf2tq4RlFtHhBrmj1C2GJ26lnR02ZesmonwU3zOd-wc6_-ymVXTMqa-EHk4VbTip2uCwrlhU5nqH0xcSxcVcM_wQu7uRbP4X1Ylb4Z8CCcLEfZInKXaScDaY_kP3EI0lh-pH1PYi7z5m6Ft6cpmxM0xUwM7EgRRakNQvSqAfvbvbMG3CPW9_e6biUthe9TFdi2YPdjnOr5f9Te347tdewORp_Pk1Pj89OXsB9QYJTd0DuwHq1WPqX6ApV9lUtfwy-3rXA_wYxIRe6 |
linkToPdf | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwtV1LbxMxEB6VVEJwQDzVQAEf4ARWd21v7BwQKk2ilqKoghb1tqy9togUNiG7EfSv8euY2UcDSPTW0x68Hq08n-ex8wJ4oWUuE5lZrpzJuNLB8Qz9Zj60JvKoPnJ8ULbFdHB4pt6fJ-db8KurhaG0yk4m1oI6Xzj6R74nlEFTJUH1uRfatIiT0eTt8junCVIUae3GaTQQOfYXP9B9K98cjZDXL4WYjE8PDnk7YYA7JVTFdVBBhjiI2FuNgtrlyqo4SwJFs3JpFXWHsT7oYKQaBpNJK0OmNJqkOgTELtK9AduavKIebL8bT08-XuoBrep5fXUvBGWkaUt2msI9vEmak-tGoUfBo7_V4sbW_Sc8W2u9yV2405qrbL_B1z3Y8sV9uP1HE8MH8HOfNQEGtggMzUlGImblvzaZ8Yz8W7wuF7T6mTqL27ln4yZpvWRU3YIblku_Yp---TklYTNKcuEHs5Vbzyo2WpcVy4ocv6H0xcyx0y41_iGcXctpP4JesSj8DrAgXOyHWaJyFylngxkM5SDxSFKYQWR9H-LuOFPXNjunmRvzdNOmmViQIgvSmgVp1IdXl3uWTauPK9_e7biUtte-TDcg7cPrjnOb5f9Te3w1tedwE8GefjiaHj-BW4JwU5dD7kKvWq39U7SLKvusBSCDL9eN-d__dB1M |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=A+Review+of+the+Comprehensive+Recovery+of+Valuable+Elements+from+Copper+Smelting+Open-Circuit+Dust+and+Arsenic+Treatment&rft.jtitle=JOM+%281989%29&rft.au=Xu%2C+Bin&rft.au=Ma%2C+Yongpeng&rft.au=Gao%2C+Wei&rft.au=Yang%2C+Junkui&rft.date=2020-11-01&rft.pub=Springer+Nature+B.V&rft.issn=1047-4838&rft.volume=72&rft.issue=11&rft.spage=3860&rft.epage=3875&rft_id=info:doi/10.1007%2Fs11837-020-04242-0&rft.externalDBID=HAS_PDF_LINK |
thumbnail_l | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1047-4838&client=summon |
thumbnail_m | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1047-4838&client=summon |
thumbnail_s | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1047-4838&client=summon |