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化学改良剂对长期受污染土壤中镉和铅浓度的影响。

Effect of chemical amendments on the concentration of cadmium and lead in long-term contaminated soils.

作者信息

Lee Tse-Ming, Lai Hung-Yu, Chen Zueng-Sang

机构信息

Graduate Institute of Agricultural Chemistry, National Taiwan University, Taipei 106-17, Taiwan.

出版信息

Chemosphere. 2004 Dec;57(10):1459-71. doi: 10.1016/j.chemosphere.2004.08.094.

Abstract

The availability of metal in contaminated soil can be reduced by the addition of soil amendments. The objectives of this study are to study the effects of applying different soil amendments on the concentration of Cd and Pb in soil solution, DTPA or EDTA extractable Cd and Pb, and the uptake of Cd and Pb by wheat (Triticum vulgare) when growing in long-term Cd and Pb-contaminated soils, more than 20 years. The soil amendments, including check, compost, zinc oxide, calcium carbonate, calcium carbonate mixed with zinc oxide, and calcium carbonate mixed with compost, were conducted in a four replicates pot cultural study. The amended soils were incubated for six months under 60% of water holding capacity. Following incubation, wheat was grown for four months in greenhouse. Analyses of Cd concentration demonstrated a significant decrease in soil solution concentration and DTPA or EDTA extractable in soils amended with calcium carbonate or calcium carbonate mixed with ZnO (or compost) (p<0.01). These amendments can significantly reduce the Cd concentration in the grain, leaf and stem, or reduce the total Cd uptake in all parts of wheat species grown in highly contaminated soil amended with calcium carbonate or calcium carbonate mixed with ZnO (or compost) (p<0.01). The concentration of Cd in soil solution and extracted with DTPA or EDTA can predict the Cd concentration in wheat, especially for soil solution.

摘要

添加土壤改良剂可以降低污染土壤中金属的有效性。本研究的目的是研究在长期(超过20年)受镉和铅污染的土壤中,施用不同土壤改良剂对土壤溶液中镉和铅的浓度、DTPA或EDTA可提取的镉和铅以及小麦(普通小麦)对镉和铅的吸收的影响。土壤改良剂包括对照、堆肥、氧化锌、碳酸钙、碳酸钙与氧化锌混合以及碳酸钙与堆肥混合,在一个四重复的盆栽试验中进行。改良后的土壤在持水量60%的条件下培养六个月。培养后,小麦在温室中生长四个月。镉浓度分析表明,在用碳酸钙或碳酸钙与氧化锌(或堆肥)混合改良的土壤中,土壤溶液浓度以及DTPA或EDTA可提取的镉显著降低(p<0.01)。这些改良剂可以显著降低在施用碳酸钙或碳酸钙与氧化锌(或堆肥)改良的高污染土壤中生长的小麦籽粒、叶片和茎中的镉浓度,或降低小麦所有部位的总镉吸收量(p<0.01)。土壤溶液中以及用DTPA或EDTA提取的镉浓度可以预测小麦中的镉浓度,尤其是土壤溶液中的镉浓度。

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