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◆ Water research2026-09-16

Peri-urban karst pond cascades act as reactive biogeochemical filters coupling non-point-source pollutant fate with carbonate weathering.

Chuwen Gao, Rui Yang, Shouyang He, Qingguang Li

原始摘要(英文原文)· Original abstract
Small cascade ponds in peri‑urban karst areas are key reaction zones where nonpoint source inputs, solute transport and transformation, and carbonate weathering interact, yet their biogeochemical functions remain poorly understood. Here, hydrochemistry, multiple stable isotopes, principal component analysis-absolute principal component scores-multiple linear regression (PCA-APCS-MLR), and MixSIAR were integrated to determine how anthropogenic solute inputs affect pollutant fate and carbonate-weathering mechanisms in a peri‑urban karst cascade pond system. The Ca-HCO3 hydrochemical facies reflected a background dominated by carbonate dissolution, whereas the mixed Ca·Na-HCO3 signature, ionic ratios, and modified Gibbs diagrams jointly indicated substantial restructuring of solute composition by livestock farming, domestic sewage, and agricultural runoff. Combined constraints from δ13CDIC, δ15N/δ18O-NO3-, and δ34S-SO42- showed that nitrate and sulfate were jointly controlled by sewage/manure, fertilisers, soil organic nitrogen, atmospheric deposition, sulfide oxidation, and sulfate reduction. Along the flow path, the cascade ponds exhibit a non-linear process characterized by a sequence of "input superposition, mixed dilution, filtration and self-purification, pollutant reloading, and reattenuation", with anthropogenic source contributions decreasing by 13.5 and 1.9 percentage points before and after the secondary pollutant loading, respectively (equivalent to relative reductions of 21.43 % and 3.35 %) Nitric and sulfuric acids generated by nitrification and sulfide oxidation promoted carbonate dissolution, causing HCO3-accumulation and enriched δ13CDIC values. These findings indicate that anthropogenic pollution altered both the acid drivers of weathering and the sources of dissolved inorganic carbon (DIC), thereby inducing a decoupling between enhanced carbonate dissolution and reduced karst carbon sink efficiency. We identify peri‑urban karst cascade ponds as reactive biogeochemical filters that regulate C-N-S cycling, attenuate non-point-source pollution, and mediate feedbacks on carbonate weathering, providing new process-based insights for targeted control of peri‑urban diffuse pollution, ecological management of small water bodies, and evaluation of karst carbon sink effects.
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Peri-urban karst pond cascades act as reactive biogeochemical filters coupling non-point-source pollutant fate with carbonate weathering. — 科研速览 Science Skim