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历史上用污水污泥、粪肥和堆肥改良的土壤中铜的有效性。

The availability of copper in soils historically amended with sewage sludge, manure, and compost.

机构信息

University of Leuven, Leuven, Belgium.

出版信息

J Environ Qual. 2012 Mar-Apr;41(2):506-14. doi: 10.2134/jeq2011.0317.

Abstract

Metals in soils amended with sewage sludge are typically less available compared with those in soils spiked with soluble metal salts. However, it is unclear if this difference remains in the long term. A survey of copper (Cu) availability was made in soils amended with sewage sludge, manure, and compost, collectively named organic amendments. Paired sets of amended and control soils were collected from 22 field trials where the organic amendments had aged up to 112 yr. Amended soils had higher total Cu concentrations (range, 2-220 mg Cu kg; median, 15 mg Cu kg) and organic C (range, 1-16 g kg; median, 4 g kg) than control soils. All samples were freshly spiked with CuCl, and the toxicity of added Cu to barley was compared between amended and control soils. The toxicity of added Cu was significantly lower in amended soils than in control soil in 15 sets by, on average, a factor of 1.4, suggesting that aged amendments do not largely increase Cu binding sites. The fraction of added Cu that is isotopic exchangeable Cu (labile Cu) was compared between control soils freshly spiked with CuCl and amended soils with both soils at identical total Cu concentrations. Copper derived from amendments was significantly less labile (on average 5.9-fold) than freshly added Cu in 18 sets of soils. This study shows that Cu availability after long-term applications of organic amendments is lower than that of freshly added Cu salts, mainly because of its lower availability in the original matrix and ageing reactions than because of increased metal binding sites in soil.

摘要

与添加可溶性金属盐的土壤相比,添加污水污泥的土壤中的金属通常不太容易被利用。然而,这种差异是否会长期存在尚不清楚。本研究对添加污水污泥、粪肥和堆肥的土壤(统称有机肥料)中的铜(Cu)的可用性进行了调查。从 22 个田间试验中收集了添加和对照土壤的成对样本,这些有机肥料的老化时间长达 112 年。添加土壤的总 Cu 浓度(范围为 2-220mg Cu kg;中位数为 15mg Cu kg)和有机碳(范围为 1-16g kg;中位数为 4g kg)高于对照土壤。所有样品均新鲜添加 CuCl,比较了添加 Cu 对大麦的毒性在添加和对照土壤之间。在 15 个样本中,添加 Cu 的毒性平均比对照土壤低 1.4 倍,表明老化的肥料并未显著增加 Cu 结合位点。与新鲜添加 CuCl 的对照土壤相比,在具有相同总 Cu 浓度的添加土壤中比较了添加 Cu 的可交换(可利用)Cu 分数。与新鲜添加的 Cu 相比,来自肥料的 Cu 的可利用性(平均 5.9 倍)在 18 个土壤样本中明显较低。本研究表明,长期施用有机肥料后 Cu 的可用性低于新鲜添加的 Cu 盐,这主要是由于其在原始基质中的可用性较低,老化反应比土壤中增加的金属结合位点更多。

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