矿化(土壤科学)
含水层
有机质
环境化学
地下水
冲积层
磷
地质学
生物地球化学循环
化学
地球化学
营养物
氮气循环
环境科学
水文学(农业)
污染
作者
Ce Wang,Yao Du,Yi-Xiang Wang,Liu W,Lijie Lin,Mengze Li,Yanxin Wang
标识
DOI:10.1021/acs.est.6c00175
摘要
Geogenic phosphorus (P) is widely documented in aquifers worldwide, and its content varies substantially across geologic environments. However, comparative investigations elucidating the mechanisms underlying disparities in geogenic P enrichment among basins with contrasting geologic settings are limited. In this study, two representative aquifer systems with contrasting P levels were investigated, including an alluvial-lacustrine aquifer in the middle Yangtze River (MYZ) and an alluvial aquifer in the middle-lower Yellow River (MYR). We observed that dissolved inorganic phosphorus (DIP) dominated the P pool in both regions and was primarily derived from organic matter (OM) mineralization, whereas markedly higher P concentrations occurred in MYZ. In MYZ, abundant OM underwent advanced methanogenic mineralization governed by thermodynamic constraints, with DIP production driven by the transformation of recalcitrant CHO+2P into labile CHO+1P. In contrast, OM mineralization in MYR remained at an initial fermentation stage under kinetic constraints, and DIP formation was mainly associated with the dephosphorylation of labile CHO+1P. Overall, OM supply, mineralization stage, and degradation pathway jointly regulated the magnitude of geogenic P enrichment across aquifer systems under different geologic settings. These findings can improve the mechanistic understanding of geogenic P production and provide a theoretical basis for managing geogenic P in groundwater.
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