Efficiency of soil organic and inorganic amendments on the remediation of a contaminated mine soil: I. Effects on trace elements and nutrients solubility and leaching risk

环境修复 浸出(土壤学) 石灰 土壤改良剂 堆肥 环境化学 多年生黑麦草 土壤水分 环境科学 中观 土壤污染 化学 土壤pH值 营养物 土壤酸化 农学 污染 土壤科学 地质学 生态学 禾本科 古生物学 有机化学 生物
作者
Tania Pardo,M.P. Bernal,Rafael Clemente
出处
期刊:Chemosphere [Elsevier BV]
卷期号:107: 121-128 被引量:71
标识
DOI:10.1016/j.chemosphere.2014.03.023
摘要

A mesocosm experiment, in columns, was conducted in a growth chamber to assess the viability of two organic materials (pig slurry and compost; in combination with hydrated lime) for the remediation of a highly acidic and trace elements (TEs) contaminated mine soil and the reduction of its associated leaching risks. Their influence on the evolution throughout the soil depth of the physicochemical properties (including TEs mobility) of the soil and soil solution (in situ periodic collection) and on Lolium perenne growth and foliar TEs accumulation was evaluated. Soluble and extractable concentrations of the different TEs were considerably high, although the organic amendments (with lime) and lime addition successfully decreased TEs mobility in the top soil layer, as a consequence of a rise in pH and changes in the redox conditions. Compost and pig slurry increased the soluble organic-C and dissolved N, K and P of the soil, producing a certain downwards displacement of N and K. The organic amendments allowed the growth of L. perenne in the soil, thus indicating improvement of soil conditions, but elevated TEs availability in the soil led to toxicity symptoms and abnormally high TEs concentrations in the plants. An evaluation of the functioning and ecotoxicological risks of the remediated soils is reported in part II: this allows verification of the viability of the amendments for remediation strategies.
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