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Source identification and component characterization of dissolved organic matter in an acid mine drainage reservoir

摘要:Acid mine drainage (AMD) is one of the most serious environmental problems and extreme environments on the earth, with high concentrations of sulphate and dissolved metals. A comprehensive description of dissolved organic matter (DOM) in these reservoirs is lacking, and it can play an important role in AMD pollution treatment and ecosystem. Thus, the source, composition and property of DOM in an AMD reservoir in Ma'an shan, China were studied using Fourier transform ion cyclotron resonance mass spectrometry and three-dimension excitation emission matrix fluorescence spectroscopy. The results suggested that the autochthonous algal metabolites significantly contributed to the DOM pool in the AMD reservoir. Bioavailable substances with lower oxidation, unsaturation and aromaticity such as lipids and carbohydrates were lacking in the AMD reservoir especially in the deeper layers. In addition, the proportion of sulfur compounds was significantly higher than that in other waters, suggesting the potential formation of organic matter with sulfur atom in a sulfur-rich environment. These findings underscore that the investigation of DOM in AMD reservoirs may offer references for the AMD treatment with addition of organic matter and broaden the understanding of special carbon cycling in the extreme environment of AMD.
© 2020 Elsevier B.V.

ISSN号:489697

卷、期、页:v 739,

发表日期:2020-10-15

期刊分区(SCI为中科院分区):二区

收录情况:SCI(科学引文索引印刷版),EI(工程索引),SCIE(科学引文索引网络版)

发表期刊名称:Science of the Total Environment

参与作者:王进,Zhang, Siyu,She, Zhixiang,Pan, Xin,Shao, Rui,Yue, Zhengbo

通讯作者:Li, Yunyun

第一作者:何晨,史权

论文类型:期刊论文

论文概要:王进,Zhang, Siyu,何晨,She, Zhixiang,Pan, Xin,Li, Yunyun,Shao, Rui,史权,Yue, Zhengbo,Source identification and component characterization of dissolved organic matter in an acid mine drainage reservoir,Science of the Total Environment,2020,v 739,

论文题目:Source identification and component characterization of dissolved organic matter in an acid mine drainage reservoir

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