Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, Hunan, China.
Huanjiang Observation and Research Station for Karst Ecosystems, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Huanjiang 547100, Guangxi, China.
Environ Sci Technol. 2023 Nov 14;57(45):17490-17500. doi: 10.1021/acs.est.3c05409. Epub 2023 Oct 31.
The karst forest is one of the extremely sensitive and fragile ecosystems in southwest China, where the biogeochemical cycling of mercury (Hg) is largely unknown. In this study, we investigated the litterfall deposition, accumulation, and soil migration of Hg in an evergreen-deciduous broadleaf karst forest using high-resolution sampling and stable isotope techniques. Results show that elevated litterfall Hg concentrations and fluxes in spring are due to the longer lifespan of evergreen tree foliage exposed to atmospheric Hg. The hillslope has 1-2 times higher litterfall Hg concentration compared to the low-lying land due to the elevated atmospheric Hg levels induced by topographical and physiological factors. The Hg isotopic model suggests that litterfall Hg depositions account for ∼80% of the Hg source contribution in surface soil. The spatial trend of litterfall Hg deposition cannot solely explain the trend of Hg accumulation in the surface soil. Indeed, soil erosion enhances Hg accumulation in soil of low-lying land, with soil Hg concentration up to 5-times greater than the concentration on the hillslope. The high level of soil Hg migration in the karst forest poses significant ecological risks to groundwater and downstream aquatic ecosystems.
喀斯特森林是中国西南地区极为敏感和脆弱的生态系统之一,其汞(Hg)的生物地球化学循环在很大程度上尚未可知。本研究采用高分辨率采样和稳定同位素技术,调查了常绿落叶阔叶喀斯特森林中 Hg 的凋落物沉降、积累和土壤迁移。结果表明,春季凋落物 Hg 浓度和通量升高是由于常绿树种树叶暴露于大气 Hg 中的寿命延长所致。由于地形和生理因素引起的大气 Hg 水平升高,山坡上的凋落物 Hg 浓度比低地高出 1-2 倍。Hg 同位素模型表明,凋落物 Hg 沉降占表层土壤 Hg 源贡献的约 80%。凋落物 Hg 沉降的空间趋势不能单独解释表层土壤 Hg 积累的趋势。事实上,土壤侵蚀增强了低地土壤中 Hg 的积累,土壤 Hg 浓度比山坡上高 5 倍。喀斯特森林中土壤 Hg 的高迁移水平对地下水和下游水生生态系统构成了重大的生态风险。