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Land use impact on potentially toxic metals concentration on surface water and resistant microorganisms in watersheds

机译:土地使用对流域地表水中潜在的有毒金属浓度和耐药微生物的影响

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摘要

Soil and water resources must be conserved and protected. However, the management of production activities causes a change in the quality of these natural resources due to accumulation in soil of potentially toxic metals. The objective of the present study was to identify the variety and paths of potentially toxic metals (PTMs), such as cadmium, lead, copper, chromium, nickel and zinc, which are associated spatially and temporally to soil and water. We also intended to isolate bacteria resistant to PTMs with important characteristics to be used in bioremediation processes. Water samples were collected every two months for one year (February December/2014) at eight sites (P1-P8) and the soil samples were collected twice (February and August/2014) from twelve sites (S1-S12). Results indicated that agricultural land use impacts the environment, increasing the concentration of potentially toxic metals, mainly copper, zinc and chromium, in soil and water due to crop management. Ten bacteria resistant to all the metals studied were isolated, which could be used as tools for bioremediation of contaminated soils and water with those metals. The results would positively contribute to land use policy, and for the development of enhanced agricultural practices.
机译:土壤和水资源必须得到保护和保护。但是,由于潜在的有毒金属在土壤中的积累,生产活动的管理导致这些自然资源的质量发生了变化。本研究的目的是确定潜在有毒金属(PTM)的种类和途径,例如镉,铅,铜,铬,镍和锌,它们在空间和时间上与土壤和水相关。我们还打算分离出具有重要特征的对PTM具有抗性的细菌,以用于生物修复过程。一年(2014年2月/ 2014年)每两个月在八个地点(P1-P8)收集水样,并从十二个地点(S1-S12)收集土壤样品两次(2014年2月和2014年8月)。结果表明,由于作物管理,农业土地利用会影响环境,增加土壤和水中潜在有毒金属(主要是铜,锌和铬)的浓度。分离出了十种对所有研究的金属具有抗性的细菌,它们可以用作用这些金属对污染的土壤和水进行生物修复的工具。结果将对土地使用政策和发展改良的农业做法产生积极的贡献。

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