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A review of environmental characteristics and effects of low-molecular weight organic acids in the surface ecosystem

A review of environmental characteristics and effects of low-molecular weight organic acids in the surface ecosystem

作     者:Min Xiao Fengchang Wu 

作者机构:State Key Laboratory of Environmental GeochemistryInstitute of Geochemistry Chinese Academy of Sciences State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Sciences 

出 版 物:《Journal of Environmental Sciences》 (环境科学学报(英文版))

年 卷 期:2014年第26卷第5期

页      面:935-954页

核心收录:

学科分类:08[工学] 0815[工学-水利工程] 

基  金:financially supported by the National Natural Sciences Foundation of China(No.41373138,41003055,41261140337) the National Science and Technology Major Special Project(No.2011ZX07212-007) State Key Laboratory of Environmental Geochemistry(No.SKLEG2013404),Institute of geochemistry, Chinese Academy of Sciences 

主  题:low molecular weight organic acids conversion mechanism pollutants environmental effects ecological risk management of water quality 

摘      要:Low molecular weight organic acids (LMWOAs) are prevalent on the earth's surface. They are vital intermediate products during metabolic pathways of organic matter and participate in the tricarboxylic acid cycle during life activities. Photochemical reactions are pivotal for LMWOAs' origination and play a large role in determining their diversity and their ultimate fate. Within the long time that organic matter is preserved in sediments, it can be decomposed and converted to release organic and inorganic pollutants as well as C, N, and P nutrients, which are of potential ecological risk in causing secondary pollution to lake water. The sediment pool is a comprehensive and complex compartment closely associated with overlying water by various biochemical processes, during which LMWOAs play critical roles to transport and transform elements. This article elucidates geochemical behaviors of LMWOAs in the surface environment in details, taking natural water, soil, and aerosol as examples, focusing on reviewing research developments on sources and characteristics, migration and mineralization of LMWOAs and relevant environmental effects. Simultaneously, this review article depicts the categories and contents of LMWOAs or their contribution to DOC in environmental media, and evaluates their importance during organic matter early diagenesis. Through concluding and discussing the conversion mechanisms and influencing factors, the next research orientations on LMWOAs in lake ecosystems are determined, mainly concerning relationships with hydrochemical parameters and microorganisms, and interactions with pollutants. This will enrich the knowledge on organic matter degradation and related environmental effects, and help reconstruct a theoretical framework for organic compound succession and influencing factors, providing basic data for lake eutrophication and ecological risk assessment, conducive to better control over water pollution and proper management of water quality.

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