Karst carbon sink mechanism and its contribution to carbon neutralization under land- use management

喀斯特 碳汇 水槽(地理) 碳纤维 中和 机制(生物学) 环境科学 土地利用 生态学 地理 计算机科学 生物 气候变化 哲学 免疫学 认识论 考古 抗体 复合数 地图学 算法
作者
Zhao Min,Dong Li,Zaihua Liu,Qian Bao,Fan Xia,Hao Yan,Bo Chen,Yundi Hu,Guanxia Cai,Rui Lang,Hang Li,Liangxing Shi,Haibo He
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:937: 173381-173381 被引量:11
标识
DOI:10.1016/j.scitotenv.2024.173381
摘要

The chemical weathering process of carbonate rocks consumes a large quantity of CO2. This has great potential as a carbon sink, and it is one of a significant pathway for achieving carbon neutrality. However, the control mechanisms of karst carbon sink fluxes are unclear, and there is a lack of effective and accurate accounting. We took the Puding Shawan karst water‑carbon cycle test site in China, which has identical initial conditions but different land use types, as the research subject. We used controlled experiments over six years to evaluate the mechanisms for the differences in hydrology, water chemistry, concentrations and fluxes of dissolved organic carbon (DOC) and dissolved inorganic carbon (DIC). We found that the transition from rock to bare soil to grassland led to increases in the DIC concentration by 0.08–0.62 mmol⋅L−1. The inorganic carbon sink flux (CSF) increased by 3.01–5.26 t⋅C⋅km−2⋅a−1, an increase amplitude of 30–70 %. The flux of dissolved organic carbon (FDOC) increase by 0.28 to 0.52 t⋅C⋅km−2⋅a−1, an increase amplitude of 34–90 %. We also assessed the contribution of land use modifications to regional carbon neutrality, it indicate that positive land use modification can significantly regulate the karst carbon sink, with grassland having the greatest carbon sequestration ability. Moreover, in addition to DOC from soil organic matter degradation, DOC production by chemoautotrophic microorganisms utilizing DIC in groundwater may also be a potential source. Thus, coupled studies of the conversion of DIC to DOC processes in groundwater are an important step in assessing karst carbon sink fluxes.
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