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Instability in a carbon pool driven by multiple dissolved organic matter sources in a eutrophic lake basin: Potential factors for increased greenhouse gas emissions.
Ma, Jie; Zhou, Muchun; Peng, Yu; Tuo, Ya; Zhou, Chuanqiao; Liu, Kexin; Huang, Yilin; He, Fei; Lai, Qiuying; Zhang, Zhihui; Kinouchi, Tsuyoshi; Li, Shuyin; Xu, Xiaoguang; Wu, Xiaodong; Lin, Xiaowen; Li, Weixin; Wang, Guoxiang.
Afiliação
  • Ma J; Ministry of Ecology and Environment, Nanjing Institute of Environment Sciences, Nanjing, 210042, China.
  • Zhou M; Department of Applied Physics and Chemical Engineering, Tokyo University of Agriculture and Technology, Tokyo, 184-8588, Japan.
  • Peng Y; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan.
  • Tuo Y; Environmental Development Center of the Ministry of Ecology and Environment, Beijing, 100029, China.
  • Zhou C; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan. Electronic address: chuanqiaozhou@163.com.
  • Liu K; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan.
  • Huang Y; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan.
  • He F; Ministry of Ecology and Environment, Nanjing Institute of Environment Sciences, Nanjing, 210042, China. Electronic address: hefei@nies.org.
  • Lai Q; Ministry of Ecology and Environment, Nanjing Institute of Environment Sciences, Nanjing, 210042, China.
  • Zhang Z; School of Environment, Nanjing Normal University, Nanjing, 210023, China.
  • Kinouchi T; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan.
  • Li S; Department of Transdisciplinary Science and Engineering, Tokyo Institute of Technology, Tokyo, 152-8550, Japan; Yangtze River Basin Ecological Environment Monitoring and Scientific Research Center, Yangtze River Basin Ecological Environment Supervision and Administration Bureau, Ministry of Ecologic
  • Xu X; School of Environment, Nanjing Normal University, Nanjing, 210023, China.
  • Wu X; College of Urban and Environmental Sciences, Hubei Normal University, Huangshi, 435002, China.
  • Lin X; College of Urban and Environmental Sciences, Hubei Normal University, Huangshi, 435002, China.
  • Li W; Ministry of Ecology and Environment, Nanjing Institute of Environment Sciences, Nanjing, 210042, China.
  • Wang G; School of Environment, Nanjing Normal University, Nanjing, 210023, China.
J Environ Manage ; 350: 119697, 2024 Jan 15.
Article em En | MEDLINE | ID: mdl-38035504
ABSTRACT
Lakes serve as vital reservoirs of dissolved organic matter (DOM) and play pivotal roles in biogeochemical carbon cycles. However, the sources and compositions of DOM in freshwater lakes and their potential effects on lake sediment carbon pools remain unclear. In this study, seven inflowing rivers in the Lake Taihu basin were selected to explore the potential effects of multi-source DOM inputs on the stability of the lake sediment carbon pool. The results showed the high concentrations of dissolved organic carbon in the Lake Taihu basin, accompanied by a high complexity level. Lignins constituted the majority of DOM compounds, surpassing 40% of the total, while the organic carbon content was predominantly composed of humic acids (1.02-3.01 g kg-1). The high amounts of lignin oxidative cleavage led to CHO being the main molecular structure in the DOM of the seven rivers. The carbon constituents within the sediment carbon reservoir exhibited a positive correlation with dissolved CH4 and CO2, with a notable emphasis on humic acid and dissolved CH4 (R2 = 0.86). The elevated concentration of DOM, coupled with its intricate composition, contributed to the increases in dissolved greenhouse gases (GHGs). Experiments showed that the mixing of multi-source DOM can accelerate the organic carbon mineralization processes. The unit carbon emission efficiency was highest in the mixed group, reaching reached 160.9 µmol∙Cg-1, which also exhibited a significantly different carbon pool. The mixed decomposition of DOM from different sources influenced the roles of the lake carbon pool as source and sink, indicating that the multi-source DOM of this lake basin was a potential driving factor for increased carbon emissions. These findings have improved our understanding of the sources and compositions of DOM in lake basins and revealed their impacts on carbon emissions, thereby providing a theoretical basis for improving assessments of lake carbon emissions.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Gases de Efeito Estufa / Matéria Orgânica Dissolvida País/Região como assunto: Asia Idioma: En Revista: J Environ Manage Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Gases de Efeito Estufa / Matéria Orgânica Dissolvida País/Região como assunto: Asia Idioma: En Revista: J Environ Manage Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China