假单胞菌:潜在毒性金属污染土壤修复潜力--最低抑制浓度调查与应用

Jorge Diniz De Oliveira, Ivaneide de Oliveira Nascimento, Wanderson Lima Cunha, H. S. De Sousa
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摘要

用于农业改良或营养的农业投入物的成分中,除了含有理想的元素外,往往还包括可能会污染土壤的有毒金属。面对这种情况,我们可以看到各种修复技术的出现,其中包括生物修复技术。由于微生物的种类和属种繁多,这种技术已被证明是非常有前途的。本研究调查了假单胞菌在豆类种植土壤中的应用,目的是去除 Zn2+ 和 Ni2+ 离子。对土壤参数、水和氯化钾中的 pH 值、零电荷点、可交换酸度、土壤中有机物的数量以及离子的初始浓度进行了分析。为了评估细菌对土壤中金属浓度的耐受性,进行了最低抑制浓度研究。然后进行了生物修复实验,在土壤中施用细菌并监测 21 天的过程。结果表明,假单胞菌对高浓度金属有良好的抗性,对金属的吸收能力和效率也很高,对 Ni2+ 离子的去除能力达到 0,063 毫克/千克,效率为 90.5%;对 Zn2+ 离子的去除能力达到 0,012 毫克/千克,效率为 47.9%。这些结果表明,假单胞菌有望对受到潜在有毒金属污染的土壤进行生物修复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pseudomonas sp. Bacteria: potentially toxic metal-contaminated soil remediation potentials - minimum inhibitory concentration investigation and application
Agricultural inputs used for correction or nutrition in agriculture have a composition that, in addition to containing desirable elements, often includes potentially toxic metals that contaminate the soil. Faced with this scenario, one can observe the appearance of various remediation techniques, amongst them, bio-remediation. This technique has been shown to be highly promising, as there is a wide variety of genera and species of microorganisms. In this study, the application of Pseudomonas sp. bacteria in soil from bean cultivation was investigated, with the aim of removing Zn2+ and Ni2+ ions. Analyzes were carried out of soil parameters, pH in water and KCl, Zero Charge Point, exchangeable acidity, quantity of organic matter in soil and initial concentrations of ions. To evaluate the tolerance of bacteria to metal concentrations in the soil, studies of Minimum Inhibitory Concentration were conducted. A bioremediation experiment was then carried out, applying the bacteria to the soil and monitoring the process over 21 days. The results showed that Pseudomonas sp. bacteria showed good resistance to high metal concentrations, as well as remarkable capacity and efficiency in the absorption of metals, reaching 0,063 mg kg-1 and 90.5% efficiency in the removal of Ni2+ ions, and 0,012 mg kg-1 capacity and 47.9% efficiency in the removal of Zn2+ ions. These results suggest that the Pseudomonas sp. bacteria are promising for the bioremediation of soils contaminated with potentially toxic metals.
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