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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Release of arsenic and other trace elements from poultry litter: Insights from a field experiment on the Delmarva Peninsula, Delaware
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Release of arsenic and other trace elements from poultry litter: Insights from a field experiment on the Delmarva Peninsula, Delaware

机译:家禽垫料中的砷和其他微量元素的释放:特拉华州德尔马瓦半岛的田间试验的见解

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摘要

A poultry litter application was conducted to examine field scale release and transport of trace elements from poultry litter into the subsurface. Field monitoring before and after litter application demonstrated increases in major ion, nutrient, and trace element concentrations in soil water after application, but concentrations of trace elements were all below regulatory standards. Using laboratory stepwise extractions of litter, calculated leaching rates of trace elements are fastest for As, followed by Cu and Zn. Comparison of the projected (from laboratory extractions) to actual (measured in the field) trace element concentrations in litter show that laboratory-derived rates generally over-predict leaching, but the long-term projections of Cu and Zn concentrations remaining in litter are within 20% of the field measurement. Arsenic leaching from litter was under-predicted by the laboratory leaching model by over 100%, suggesting that other processes (perhaps biological) occurring in the field allowed for additional As to be leached/removed. Mass balance coupled with conservative tracer calculations reveal that the vadose sediment was the main sink for the trace elements, with lesser uptake of Cu and Zn (not As) by orchard grass. Overall, results of this study showed that the fate and transport of trace elements from poultry litter are controlled by their leaching rate from litter, adsorption, uptake in vegetation and dilution. An additional process affecting As is biotransformation.
机译:进行了家禽垫料的应用,以检查田间规模释放和微量元素从家禽垫料到地下的运输。凋落物施用前后的现场监测表明,施用后土壤水中的主要离子,养分和微量元素的浓度增加,但微量元素的浓度均低于监管标准。使用实验室的垫料分步提取方法,计算出的微量元素的淋溶速率对于砷最快,其次是铜和锌。凋落物中的预计(从实验室提取物)与实际(实地测得)微量元素浓度的比较表明,实验室得出的速率通常会高估浸出量,但长期保留在凋落物中的Cu和Zn浓度在现场测量的20%。实验室浸出模型低估了垃圾中砷的浸出率,超过了100%,这表明田间发生的其他过程(也许是生物过程)允许额外的A被浸出/去除。质量平衡和保守的示踪剂计算表明,渗流沉积物是微量元素的主要汇,果园草对铜和锌(而非砷)的吸收较少。总体而言,这项研究的结果表明,家禽垃圾中微量元素的命运和运输受它们从垃圾中的浸出率,吸附,植被吸收和稀释的影响。影响As的其他过程是生物转化。

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