生物地球化学循环
反硝化
地下水
低流变区
地表水
化学
环境化学
沉积物
微生物种群生物学
水文学(农业)
环境科学
土壤科学
氮气
环境工程
地质学
地貌学
古生物学
有机化学
岩土工程
细菌
作者
Yuanyuan Liu,Chongxuan Liu,William Nelson,Liang Shi,Fen Xu,Yunde Liu,Ailan Yan,Lirong Zhong,Christopher J. Thompson,James K. Fredrickson,John M. Zachara
标识
DOI:10.1021/acs.est.6b05018
摘要
Hyporheic zones (HZ) are active biogeochemical regions where groundwater and surface water mix. N transformations in HZ sediments were investigated in columns with a focus on understanding how the dynamic changes in groundwater and surface water mixing affect microbial community and its biogeochemical function with respect to N transformations. The results indicated that denitrification, DNRA, and nitrification rates and products changed quickly in response to changes in water and sediment chemistry, fluid residence time, and groundwater-surface water exchange. These changes were accompanied by the zonation of denitrification functional genes along a 30 cm advective flow path after a total of 6 days' elution of synthetic groundwater with fluid residence time >9.8 h. The shift of microbial functional potential toward denitrification was correlated with rapid NO3- reduction collectively affected by NO3- concentration and fluid residence time, and was resistant to short-term groundwater-surface water exchange on a daily basis. The results implied that variations in microbial functional potential and associated biogeochemical reactions in the HZ may occur at space scales where steep concentration gradients present along the flow path and the variations would respond to dynamic HZ water exchange over different time periods common to natural and managed riverine systems.
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