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矿物吸附剂对铜、镍和锌对土壤微生物及酶的不利影响的缓解作用

Mitigation of the Adverse Impact of Copper, Nickel, and Zinc on Soil Microorganisms and Enzymes by Mineral Sorbents.

作者信息

Wyszkowska Jadwiga, Borowik Agata, Zaborowska Magdalena, Kucharski Jan

机构信息

Department of Soil Science and Microbiology, University of Warmia and Mazury in Olsztyn, Plac Łódzki 3, 10-727 Olsztyn, Poland.

出版信息

Materials (Basel). 2022 Jul 27;15(15):5198. doi: 10.3390/ma15155198.

Abstract

Despite numerous studies on the influence of heavy metals on soil health, the search for effective, eco-friendly, and economically viable remediation substances is far from over. This encouraged us to carry out a study under strictly controlled conditions to test the effects of Cu, Ni, and Zn added to soil in amounts of 150 mg·kg d.m. of soil on the soil microbiome, on the activity of two oxidoreductases and five hydrolases, and on the growth and development of the sunflower L. The remediation substances were a molecular sieve, halloysite, sepiolite, expanded clay, zeolite, and biochar. It has been demonstrated that the most severe turbulences in the soil microbiome, its activity, and the growth of L. were caused by Ni, followed by Cu, and the mildest negative effect was produced by Zn. The adverse impact of heavy metals on the soil microbiome and its activity was alleviated by the applied sorbents. Their application also contributed to the increased biomass of plants, which is significant for the successful phytoextraction of these metals from soil. Irrespective of which property was analysed, sepiolite can be recommended for the remediation of soil polluted with Ni and zeolite-for soil polluted with Cu and Zn. Both sorbents mitigated to the highest degree disturbances caused by the tested metals in the soil environment.

摘要

尽管针对重金属对土壤健康的影响开展了大量研究,但寻找有效、环保且经济可行的修复物质的工作仍远未结束。这促使我们在严格控制的条件下开展一项研究,以测试向土壤中添加150毫克·千克干土量的铜、镍和锌对土壤微生物群落、两种氧化还原酶和五种水解酶的活性以及向日葵生长发育的影响。修复物质包括分子筛、埃洛石、海泡石、膨胀黏土、沸石和生物炭。结果表明,土壤微生物群落、其活性以及向日葵生长中最严重的紊乱是由镍引起的,其次是铜,而锌产生的负面影响最轻微。所施用的吸附剂减轻了重金属对土壤微生物群落及其活性的不利影响。它们的施用还促进了植物生物量的增加,这对于从土壤中成功进行这些金属的植物提取具有重要意义。无论分析哪种特性,海泡石都可推荐用于修复被镍污染的土壤,沸石则可用于修复被铜和锌污染的土壤。两种吸附剂都最大程度地减轻了测试金属在土壤环境中造成的干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa9/9369485/eeb8efac4b50/materials-15-05198-g001.jpg

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