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污水污泥施用对土壤生物地球化学的影响。

Impact of sewage sludge applications on the biogeochemistry of soils.

作者信息

Devaney D, Godley A R, Hodson M E, Purdy K, Yamulki S

机构信息

Department of Soil Science, University of Reading, Whiteknights, PO Box 217, Reading, RG6 6DW, UK.

出版信息

Water Sci Technol. 2008;57(4):513-8. doi: 10.2166/wst.2008.006.

Abstract

This report describes an investigation into the bioavailability and fate of trace metals and their subsequent impact on important soil microbiological functions such as nitrification, denitrification and methane oxidation in low and high Cu containing soils in the presence and absence of residual organic matter from sewage sludge additions made 10 years earlier. The soils being studied are part of long term sewage sludge trials and include a low Cu soil (13.3 mg Cu/kg soil, 4.18 LOI %), left un-amended to serve as a control soil, soil amended with a high Cu sewage sludge (278.3 mg Cu/kg soil, 6.52 LOI %) and soil amended with a low Cu sewage sludge (46.3 mg Cu/kg soil, 6.18 LOI %). Soil was also amended with inorganic metal salts (273.4 mg Cu/kg soil, 4.52 LOI %) to further investigate the impact of Cu in the absence of additional organic matter contained in applied sewage sludge. Data from the first two years of a project are presented which has included field-based studies at long term sewage sludge trials based in Watlington, Oxford, UK and laboratory based studies at the Institute of Grassland & Environmental Research, North Wyke, Devon, UK.

摘要

本报告描述了一项关于痕量金属的生物有效性和归宿及其对重要土壤微生物功能后续影响的调查,这些功能包括硝化作用、反硝化作用和甲烷氧化,研究对象为含有低铜和高铜的土壤,土壤中存在或不存在10年前添加的污水污泥中的残留有机物。所研究的土壤是长期污水污泥试验的一部分,包括低铜土壤(13.3毫克铜/千克土壤,4.18%烧失量),未进行改良作为对照土壤;用高铜污水污泥改良的土壤(278.3毫克铜/千克土壤,6.52%烧失量);以及用低铜污水污泥改良的土壤(46.3毫克铜/千克土壤,6.18%烧失量)。还用无机金属盐(273.4毫克铜/千克土壤,4.52%烧失量)对土壤进行了改良,以进一步研究在不存在施用污水污泥中所含额外有机物的情况下铜的影响。本文展示了一个项目前两年的数据,该项目包括在英国牛津郡沃特林顿长期污水污泥试验基地进行的实地研究,以及在英国德文郡北怀克草地与环境研究所进行的实验室研究。

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