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Olive mill waste biochar: a promising soil amendment for metal immobilization in contaminated soils

机译:橄榄磨坊废生物炭:一种有前途的土壤改良剂,可用于将金属固定在受污染的土壤中

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摘要

The potential use of biochar from olive mill waste for in situ remediation of metal contaminated soils was evaluated. Biochar was mixed with metal contaminated soil originating from the vicinity of an old zinc smelter. Soil-biochar mixtures were equilibrated for 30 and 90 days. At these time points, Ca(NO3)(2) exchangeable metals were determined, and effects of the biochar amendment on soil toxicity were investigated using plants, bacteria, and earthworms. Bean (Phaseolus vulgaris) growth, metal content, antioxidative enzymes activities, and soluble protein contents were determined. Furthermore, effects on soil microbial communities (activity, diversity, richness) were examined using Biolog ECOplates. After 120 days of soil-biochar equilibration, effects on weight and reproduction of Eisenia foetida were evaluated. With increasing biochar application rate and equilibration period, Ca(NO3)(2) exchangeable metals decreased, and growth of bean plants improved; leaf metal contents reduced, the activities of antioxidative stress enzymes decreased, and soluble protein contents increased. Soil microbial activity, richness, and diversity were augmented. Earthworm mortality lowered, and their growth and reproduction showed increasing trends.
机译:评估了橄榄研磨厂废料中生物炭在原位修复金属污染土壤中的潜在用途。将生物炭与源自旧锌冶炼厂附近的金属污染土壤混合。将土壤-生物炭混合物平衡30天和90天。在这些时间点,确定了Ca(NO3)(2)可交换金属,并使用植物,细菌和earth研究了生物炭改良剂对土壤毒性的影响。测定了豆类(菜豆)的生长,金属含量,抗氧化酶活性和可溶性蛋白质含量。此外,使用Biolog ECOplates检测对土壤微生物群落的影响(活性,多样性,丰富度)。在土壤-生物炭平衡120天后,评估了对ise草的重量和繁殖的影响。随着生物炭施用量和平衡时间的增加,Ca(NO3)(2)交换金属减少,豆类植物的生长得到改善;叶片金属含量降低,抗氧化应激酶的活性降低,可溶性蛋白质含量增加。土壤微生物活性,丰富性和多样性得到增强。 mortality死亡率降低,其生长和繁殖呈上升趋势。

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