미세플라스틱 필름의 프로시미돈과 3,5-다이클로로아닐린 흡착 특성

Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics. In this study, the sorption characteristics of procymidone (PCM) and one of its metabolites, 3,5-dichloroaniline (DCA), on low-density polyeth...

Full description

Saved in:
Bibliographic Details
Published inHanguk hwangyeong nonghak hoeji Vol. 42; no. 3; pp. 184 - 192
Main Authors 양지원, Ji Won Yang, 이연준, Youn-jun Lee, 조은혜, Eun Hea Jho
Format Journal Article
LanguageKorean
Published 한국환경농학회 30.09.2023
Subjects
Online AccessGet full text
ISSN1225-3537
2233-4173
DOI10.5338/KJEA.2023.42.3.22

Cover

Loading…
Abstract Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics. In this study, the sorption characteristics of procymidone (PCM) and one of its metabolites, 3,5-dichloroaniline (DCA), on low-density polyethylene (LDPE) and polyvinyl chloride (PVC) microplastics were investigated. The sorption and desorption tests were carried out for 72 h using LDPE or PVC microplastic films to study the sorption isotherms of PCM and DCA and kinetics for sorption and desorption of PCM. The results show that the sorption data of PCM and DCA were better described by the Freundlich isotherm model (R 2 =0.7568-0.9915) than the Langmuir isotherm model (R 2 =0.0545-0.5889). The sorption potential of PVC for both PCM and DCA was greater than that of LDPE. The sorption data of PCM on PVC and LDPE were fitted better to the pseudo-second- order kinetic model than the pseudo-first-order kinetic model. The PCM sorption on LDPE was about three times faster than that on PVC. Both microplastic films released the sorbed PCM back to water, and more PCM was released from PVC than LDPE, but the desorption rate was faster with LDPE than PVC. Overall, the results show that different microplastics have different sorption characteristics for different chemicals. Also, the sorbed chemicals can be released back to environment suggesting the potential of contaminant spread by microplastics. Thus, the management practices of microplastics in agricultural soil need to consider their interaction with the chemical contaminants in soil.
AbstractList Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics. In this study, the sorption characteristics of procymidone (PCM) and one of its metabolites, 3,5-dichloroaniline (DCA), on low-density polyethylene (LDPE) and polyvinyl chloride (PVC) microplastics were investigated. The sorption and desorption tests were carried out for 72 h using LDPE or PVC microplastic films to study the sorption isotherms of PCM and DCA and kinetics for sorption and desorption of PCM. The results show that the sorption data of PCM and DCA were better described by the Freundlich isotherm model (R2=0.7568-0.9915) than the Langmuir isotherm model (R2=0.0545-0.5889). The sorption potential of PVC for both PCM and DCA was greater than that of LDPE. The sorption data of PCM on PVC and LDPE were fitted better to the pseudo-second-order kinetic model than the pseudo-first-order kinetic model. The PCM sorption on LDPE was about three times faster than that on PVC. Both microplastic films released the sorbed PCM back to water, and more PCM was released from PVC than LDPE, but the desorption rate was faster with LDPE than PVC. Overall, the results show that different microplastics have different sorption characteristics for different chemicals. Also, the sorbed chemicals can be released back to environment suggesting the potential of contaminant spread by microplastics. Thus, the management practices of microplastics in agricultural soil need to consider their interaction with the chemical contaminants in soil.
Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics. In this study, the sorption characteristics of procymidone (PCM) and one of its metabolites, 3,5-dichloroaniline (DCA), on low-density polyethylene (LDPE) and polyvinyl chloride (PVC) microplastics were investigated. The sorption and desorption tests were carried out for 72 h using LDPE or PVC microplastic films to study the sorption isotherms of PCM and DCA and kinetics for sorption and desorption of PCM. The results show that the sorption data of PCM and DCA were better described by the Freundlich isotherm model (R2 =0.7568-0.9915) than the Langmuir isotherm model (R2 =0.0545-0.5889). The sorption potential of PVC for both PCM and DCA was greater than that of LDPE. The sorption data of PCM on PVC and LDPE were fitted better to the pseudo-second-order kinetic model than the pseudo-first-order kinetic model. The PCM sorption on LDPE was about three times faster than that on PVC. Both microplastic films released the sorbed PCM back to water, and more PCM was released from PVC than LDPE, but the desorption rate was faster with LDPE than PVC. Overall, the results show that different microplastics have different sorption characteristics for different chemicals. Also, the sorbed chemicals can be released back to environment suggesting the potential of contaminant spread by microplastics. Thus, the management practices of microplastics in agricultural soil need to consider their interaction with the chemical contaminants in soil KCI Citation Count: 1
Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics. In this study, the sorption characteristics of procymidone (PCM) and one of its metabolites, 3,5-dichloroaniline (DCA), on low-density polyethylene (LDPE) and polyvinyl chloride (PVC) microplastics were investigated. The sorption and desorption tests were carried out for 72 h using LDPE or PVC microplastic films to study the sorption isotherms of PCM and DCA and kinetics for sorption and desorption of PCM. The results show that the sorption data of PCM and DCA were better described by the Freundlich isotherm model (R 2 =0.7568-0.9915) than the Langmuir isotherm model (R 2 =0.0545-0.5889). The sorption potential of PVC for both PCM and DCA was greater than that of LDPE. The sorption data of PCM on PVC and LDPE were fitted better to the pseudo-second- order kinetic model than the pseudo-first-order kinetic model. The PCM sorption on LDPE was about three times faster than that on PVC. Both microplastic films released the sorbed PCM back to water, and more PCM was released from PVC than LDPE, but the desorption rate was faster with LDPE than PVC. Overall, the results show that different microplastics have different sorption characteristics for different chemicals. Also, the sorbed chemicals can be released back to environment suggesting the potential of contaminant spread by microplastics. Thus, the management practices of microplastics in agricultural soil need to consider their interaction with the chemical contaminants in soil.
Author Ji Won Yang
이연준
Eun Hea Jho
Youn-jun Lee
조은혜
양지원
Author_xml – sequence: 1
  fullname: 양지원
– sequence: 2
  fullname: Ji Won Yang
– sequence: 3
  fullname: 이연준
– sequence: 4
  fullname: Youn-jun Lee
– sequence: 5
  fullname: 조은혜
– sequence: 6
  fullname: Eun Hea Jho
BackLink https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002997777$$DAccess content in National Research Foundation of Korea (NRF)
BookMark eNo90L9Lw0AcBfBDKlhr_wBxyeIiJt7d9665jKVU7Q8QpJPLkTSJhNZWGhdHIYM0gg4VHNqhUApOttihQv8ik_wPplac3vA-vOHtokyn23EQ2idY4wDipFYtFzWKKWiMaqBRuoWylAKojOiQQVlCKVeBg76D8r7vWRgTwolh0Cy6ij6WcbBMBk_RaBX3J0k4V5LXIJoG8ehNSQZBNB7G4TBV0fPj9-dKgWOuRuEkHi2Sh0VarvvUhy_RdKYko3E8e1eS_lcczPfQtmu2fSf_lznUOC03Sudq_eKsUirW1ZbgXKUmWKZLmTCFgcEqgIVNQhi1AQtucW5b3LFd4dq2y2jTdBnBQhfMAMfhTe4KyKGjzWyn58pW05Nd0_vN665s9WTxslGRBKdrOucpPtzgluffebJj-21ZLdYu1udRAVzoBaYXIHUH_86Xtz3vxuzdS4YZI4aAH82oh1A
ContentType Journal Article
DBID HZB
Q5X
JDI
ACYCR
DEWEY 630
DOI 10.5338/KJEA.2023.42.3.22
DatabaseName KISS (Koreanstudies Information service system) (KSI Package)
Korean Studies Information Service System (KISS) B-Type
KoreaScience
Korean Citation Index
DatabaseTitleList


DeliveryMethod fulltext_linktorsrc
Discipline Agriculture
DocumentTitleAlternate 미세플라스틱 필름의 프로시미돈과 3,5-다이클로로아닐린 흡착 특성
Sorption Characteristics of Procymidone and 3,5-Dichloroaniline on Microplastic Films
EISSN 2233-4173
EndPage 192
ExternalDocumentID oai_kci_go_kr_ARTI_10308755
JAKO202328358764763
4044198
GroupedDBID ALMA_UNASSIGNED_HOLDINGS
HZB
Q5X
9ZL
JDI
OK1
ACYCR
ID FETCH-LOGICAL-k855-2a3baf248a8903b63b0a1142d3085b55db5edf8fddf42caf410878493ee5c5f83
ISSN 1225-3537
IngestDate Thu Apr 17 08:37:46 EDT 2025
Fri Dec 22 12:04:09 EST 2023
Fri May 16 03:32:59 EDT 2025
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 3
Keywords Polyvinyl chloride
Procymidone
Microplastic
Low-density polyethylene
3,5-dichloroaniline
Language Korean
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-k855-2a3baf248a8903b63b0a1142d3085b55db5edf8fddf42caf410878493ee5c5f83
Notes The Korean Society of Environmental Agriculture
KISTI1.1003/JNL.JAKO202328358764763
http://www.korseaj.org/
OpenAccessLink http://click.ndsl.kr/servlet/LinkingDetailView?cn=JAKO202328358764763&dbt=JAKO&org_code=O481&site_code=SS1481&service_code=01
PageCount 9
ParticipantIDs nrf_kci_oai_kci_go_kr_ARTI_10308755
kisti_ndsl_JAKO202328358764763
kiss_primary_4044198
PublicationCentury 2000
PublicationDate 20230930
PublicationDateYYYYMMDD 2023-09-30
PublicationDate_xml – month: 09
  year: 2023
  text: 20230930
  day: 30
PublicationDecade 2020
PublicationTitle Hanguk hwangyeong nonghak hoeji
PublicationTitleAlternate 한국환경농학회지
PublicationYear 2023
Publisher 한국환경농학회
Publisher_xml – name: 한국환경농학회
SSID ssib001151992
ssib053377575
ssib044738257
ssj0000602930
Score 2.230397
Snippet Microplastics are generated by the breakdown of plastic wastes in agricultural soil and residual pesticides in agricultural soil can adsorb on microplastics....
SourceID nrf
kisti
kiss
SourceType Open Website
Open Access Repository
Publisher
StartPage 184
SubjectTerms 3
5-dichloroaniline
Low-density polyethylene
Microplastic
Polyvinyl chloride
Procymidone
농학
Title 미세플라스틱 필름의 프로시미돈과 3,5-다이클로로아닐린 흡착 특성
URI https://kiss.kstudy.com/ExternalLink/Ar?key=4044198
http://click.ndsl.kr/servlet/LinkingDetailView?cn=JAKO202328358764763&dbt=JAKO&org_code=O481&site_code=SS1481&service_code=01
https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002997777
Volume 42
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
ispartofPNX 한국환경농학회지, 2023, 42(3), , pp.184-192
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1Lb9NAEF615QIHBBREeVSWYE_BIfbuxrtHO0lVWhUuRaq4WHZstyWohbQVggMSUg6oQYJDkTg0h0pVJU60ooci9ReR5D8ws3ZeBSHg4oxmxjuzMxvvt_Y-CLmbMBGJuGqbUcKrJldRZIYs5qaKuO1EMgxZhO8hFx4WZx_zuSWxNDb-YmjW0tZmmK--_u26kv_JKvAgr7hK9h8y2y8UGEBDfuEKGYbrX-WYVjzqzlBP0kqJSq6JMlUAD0soUmXqlbTIpS5HkfSoZ-W0ksAb8P6iJkqorWSuV0Aqs6hKC_A00bfmUTlDJRAu9RgYyTFIlTC1wNO2dHleatTSRL-4oXL7XqCBQuaOV0i9KKMeKHkF6irNgnp4qldXaxhXz-Jr11pu5SX8vorx_KQ1uKwEwFqPn672mpW2WaRKl-s6OM0DOWh8RCV1HQgHraMuhGREBVxLJaCLpWDwoFLDL1Fs1pvxkTX7LO5YdaiIoG5ZcxTeihybemUdDEhJuaesNOFCSof6D3g8mkyk-9jkY80DAMZMbjlsqJ-w0nPxMshhpccBnu3NAInjCo35uYqbR6fz3M6zfLqMe3Tn8DM9-sje4bXqqr-87tfqPoyQHviW3gNSiHFyzoaRFZ52svCmMkDQgADV4EM75w6T9uDDOLjkOD2En4KdAgBGvey4V_V07gA6f_8X1wH4wLhoA0aCODxaBUC3Vk-GAN3iJXIxG4kZbvq3ukzGautXyAV3uZ7tRhNPkiftryedxkl35327ddrZ3u82j4zup0b7oNFpfTa6O4323m6nuQta7Q_vfnw7Ndg9Ybab-53WcfftMQhRDvrNj-2DQ6Pb2uscfjG62987jaOrZHGmsliaNbPDSMyaFMK0AxYGic1lIFWBhUUWFgJchh5BNEUoRBSKOEpkEsEzz64GCbcgypIrFseiKhLJrpEJaPjxdWLYkeNgTyuELHJlV8MgtOwkCpJYyCSQwRSZxBj5z9PtZnwOWbCUnCLTOmb-WrTxzJ9z5x9hYHG7RAA0HGDCFLkDwdT5_kPeb_yV1k1yfvA3uUUmNutb8W1A35vhtG4vPwGLsLge
linkProvider ISSN International Centre
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=%EB%AF%B8%EC%84%B8%ED%94%8C%EB%9D%BC%EC%8A%A4%ED%8B%B1+%ED%95%84%EB%A6%84%EC%9D%98+%ED%94%84%EB%A1%9C%EC%8B%9C%EB%AF%B8%EB%8F%88%EA%B3%BC+3%2C5-%EB%8B%A4%EC%9D%B4%ED%81%B4%EB%A1%9C%EB%A1%9C%EC%95%84%EB%8B%90%EB%A6%B0+%ED%9D%A1%EC%B0%A9+%ED%8A%B9%EC%84%B1&rft.jtitle=Hanguk+hwangyeong+nonghak+hoeji&rft.au=%EC%96%91%EC%A7%80%EC%9B%90&rft.au=%EC%9D%B4%EC%97%B0%EC%A4%80&rft.au=%EC%A1%B0%EC%9D%80%ED%98%9C&rft.date=2023-09-30&rft.pub=%ED%95%9C%EA%B5%AD%ED%99%98%EA%B2%BD%EB%86%8D%ED%95%99%ED%9A%8C&rft.issn=1225-3537&rft.eissn=2233-4173&rft.spage=184&rft.epage=192&rft_id=info:doi/10.5338%2FKJEA.2023.42.3.22&rft.externalDBID=n%2Fa&rft.externalDocID=oai_kci_go_kr_ARTI_10308755
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1225-3537&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1225-3537&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1225-3537&client=summon