Effects of coal spoil amendment on heavy metal accumulation and physiological aspects of ryegrass (Lolium perenne L.) growing in copper mine tailings
Copper mine tailings pose many threats to the surrounding environment and human health, and thus, their remediation is fundamental. Coal spoil is the waste by-product of coal mining and characterized by low levels of metals, high content of organic matter, and many essential microelements. This stud...
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Published in | Environmental monitoring and assessment Vol. 190; no. 1; pp. 36 - 12 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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01.01.2018
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Abstract | Copper mine tailings pose many threats to the surrounding environment and human health, and thus, their remediation is fundamental. Coal spoil is the waste by-product of coal mining and characterized by low levels of metals, high content of organic matter, and many essential microelements. This study was designed to evaluate the role of coal spoil on heavy uptake and physiological responses of
Lolium perenne
L. grown in copper mine tailings amended with coal spoil at rates of 0, 0.5, 1, 5, 10, and 20%. The results showed that applying coal spoil to copper mine tailings decreased the diethylenetriaminepentaacetic acid (DTPA)-extractable Cd, Cu, Pb, and Zn contents in tailings and reduced those metal contents in both roots and shoots of the plant. However, application of coal spoil increased the DTPA-extractable Cr concentration in tailings and also increased Cr uptake and accumulation by
Lolium perenne
L. The statistical analysis of physiological parameters indicated that chlorophyll and carotenoid increased at the lower amendments of coal spoil followed by a decrease compared to their respective controls. Protein content was enhanced at all the coal spoil amendments. When treated with coal spoil, the activities of superoxide dismutases (SOD), peroxidase (POD), and catalase (CAT) responded differently. CAT activity was inhibited, but POD activity was increased with increasing amendment ratio of coal spoil. SOD activity increased up to 1% coal spoil followed by a decrease. Overall, the addition of coal spoil decreased the oxidative stress in
Lolium perenne
L., reflected by the reduction in malondialdehyde (MDA) contents in the plant. It is concluded that coal spoil has the potential to stabilize most metals studied in copper mine tailings and ameliorate the harmful effects in
Lolium perenne
L. through changing the physiological attributes of the plant grown in copper mine tailings. |
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AbstractList | Copper mine tailings pose many threats to the surrounding environment and human health, and thus, their remediation is fundamental. Coal spoil is the waste by-product of coal mining and characterized by low levels of metals, high content of organic matter, and many essential microelements. This study was designed to evaluate the role of coal spoil on heavy uptake and physiological responses of Lolium perenne L. grown in copper mine tailings amended with coal spoil at rates of 0, 0.5, 1, 5, 10, and 20%. The results showed that applying coal spoil to copper mine tailings decreased the diethylenetriaminepentaacetic acid (DTPA)-extractable Cd, Cu, Pb, and Zn contents in tailings and reduced those metal contents in both roots and shoots of the plant. However, application of coal spoil increased the DTPA-extractable Cr concentration in tailings and also increased Cr uptake and accumulation by Lolium perenne L. The statistical analysis of physiological parameters indicated that chlorophyll and carotenoid increased at the lower amendments of coal spoil followed by a decrease compared to their respective controls. Protein content was enhanced at all the coal spoil amendments. When treated with coal spoil, the activities of superoxide dismutases (SOD), peroxidase (POD), and catalase (CAT) responded differently. CAT activity was inhibited, but POD activity was increased with increasing amendment ratio of coal spoil. SOD activity increased up to 1% coal spoil followed by a decrease. Overall, the addition of coal spoil decreased the oxidative stress in Lolium perenne L., reflected by the reduction in malondialdehyde (MDA) contents in the plant. It is concluded that coal spoil has the potential to stabilize most metals studied in copper mine tailings and ameliorate the harmful effects in Lolium perenne L. through changing the physiological attributes of the plant grown in copper mine tailings. Copper mine tailings pose many threats to the surrounding environment and human health, and thus, their remediation is fundamental. Coal spoil is the waste by-product of coal mining and characterized by low levels of metals, high content of organic matter, and many essential microelements. This study was designed to evaluate the role of coal spoil on heavy uptake and physiological responses of Lolium perenne L. grown in copper mine tailings amended with coal spoil at rates of 0, 0.5, 1, 5, 10, and 20%. The results showed that applying coal spoil to copper mine tailings decreased the diethylenetriaminepentaacetic acid (DTPA)-extractable Cd, Cu, Pb, and Zn contents in tailings and reduced those metal contents in both roots and shoots of the plant. However, application of coal spoil increased the DTPA-extractable Cr concentration in tailings and also increased Cr uptake and accumulation by Lolium perenne L. The statistical analysis of physiological parameters indicated that chlorophyll and carotenoid increased at the lower amendments of coal spoil followed by a decrease compared to their respective controls. Protein content was enhanced at all the coal spoil amendments. When treated with coal spoil, the activities of superoxide dismutases (SOD), peroxidase (POD), and catalase (CAT) responded differently. CAT activity was inhibited, but POD activity was increased with increasing amendment ratio of coal spoil. SOD activity increased up to 1% coal spoil followed by a decrease. Overall, the addition of coal spoil decreased the oxidative stress in Lolium perenne L., reflected by the reduction in malondialdehyde (MDA) contents in the plant. It is concluded that coal spoil has the potential to stabilize most metals studied in copper mine tailings and ameliorate the harmful effects in Lolium perenne L. through changing the physiological attributes of the plant grown in copper mine tailings. |
ArticleNumber | 36 |
Author | Wang, Xingming Dong, Zhongbing Chu, Zhaoxia Liu, Guijian Zha, Fugeng Wang, Yunmin Chen, Guangzhou Lu, Xianwen |
Author_xml | – sequence: 1 givenname: Zhaoxia surname: Chu fullname: Chu, Zhaoxia organization: School of Earth and Environment, Anhui University of Science and Technology, School of Bioengineering, Huainan Normal University, College of Life Sciences, Anhui Normal University, Collaborative Innovation Center of Recovery and Reconstruction of Degraded Ecosystem in Wanjiang City Belt, School of Earth and Space Sciences, University of Science and Technology of China – sequence: 2 givenname: Xingming surname: Wang fullname: Wang, Xingming email: xmwang-2004@126.com organization: School of Earth and Environment, Anhui University of Science and Technology, School of Bioengineering, Huainan Normal University, College of Life Sciences, Anhui Normal University, Collaborative Innovation Center of Recovery and Reconstruction of Degraded Ecosystem in Wanjiang City Belt, School of Earth and Space Sciences, University of Science and Technology of China, Sinosteel Maanshan Institute of Mining Research Company Limited, Key Laboratory of Mine Geological Disaster Prevention in Anhui Province – sequence: 3 givenname: Yunmin surname: Wang fullname: Wang, Yunmin organization: Sinosteel Maanshan Institute of Mining Research Company Limited – sequence: 4 givenname: Guijian surname: Liu fullname: Liu, Guijian organization: School of Earth and Space Sciences, University of Science and Technology of China – sequence: 5 givenname: Zhongbing surname: Dong fullname: Dong, Zhongbing email: dongzb@huainan.gov.cn organization: School of Earth and Environment, Anhui University of Science and Technology, School of Earth and Space Sciences, University of Science and Technology of China – sequence: 6 givenname: Xianwen surname: Lu fullname: Lu, Xianwen organization: School of Bioengineering, Huainan Normal University – sequence: 7 givenname: Guangzhou surname: Chen fullname: Chen, Guangzhou organization: School of Environment and Energy Engineering, Anhui Jianzhu University – sequence: 8 givenname: Fugeng surname: Zha fullname: Zha, Fugeng organization: School of Earth and Environment, Anhui University of Science and Technology |
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CitedBy_id | crossref_primary_10_1007_s11356_020_08081_z crossref_primary_10_1080_15226514_2018_1501341 crossref_primary_10_1016_j_chemosphere_2024_141889 crossref_primary_10_1016_j_chemosphere_2018_12_190 crossref_primary_10_1007_s11270_020_04479_0 crossref_primary_10_1007_s11356_023_30008_7 crossref_primary_10_1007_s13762_021_03396_x crossref_primary_10_1016_j_jclepro_2018_06_225 |
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Keywords | Plant growth Antioxidant enzyme L Copper mine tailings Coal spoil Lolium perenne L |
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SubjectTerms | Accumulation Atmospheric Protection/Air Quality Control/Air Pollution Cadmium Carotenoids Catalase Chlorophyll Chlorophylls Chromium Coal Coal mines Coal mining Copper Diethylenetriamine pentaacetic acid Earth and Environmental Science Ecology Ecotoxicology Environment Environmental Management Environmental monitoring Environmental science Heavy metals Lead Lolium perenne Malondialdehyde Metal content Mine tailings Mine wastes Monitoring/Environmental Analysis Organic matter Oxidative stress Peroxidase Physiological effects Physiological responses Physiology Plant extracts Proteins Shoots Spoil Statistical analysis Statistical methods Superoxide Tailings Turfgrasses Uptake Zinc |
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Title | Effects of coal spoil amendment on heavy metal accumulation and physiological aspects of ryegrass (Lolium perenne L.) growing in copper mine tailings |
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