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Resistance of bacteria isolated from leachate to heavy metals and the removal of Hg by Pseudomonas aeruginosa strain FZ-2 at different salinity levels in a batch biosorption system

机译:从批量生产水平的分批生物吸附系统中,抗渗滤液中分离的细菌对重金属的抗性,并在不同盐度水平下除去Hg

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Leachate is produced from sanitary landfills containing various pollutants, including heavy metals. This study aimed to determine the resistance of bacteria isolated from non-active sanitary landfill leachate to various heavy metals and the effect of salinity levels on the removal of Hg by the isolated bacterium. Four dominant bacteria from approximately 33?×?1017 colony-forming units per mL identified as Vibrio damsela, Pseudomonas aeruginosa, Pseudomonas stutzeri, and Pseudomonas fluorescens were isolated from non-active sanitary landfill leachate. Heavy metal resistance test was conducted for Hg, Cd, Pb, Mg, Zn, Fe, Mn, and Cu (0–20?mg?L??1). The removal of the most toxic heavy metals by the most resistant bacteria was also determined at different salinity levels, i.e., fresh water (0‰), marginal water (10‰), brackish water (20‰), and saline water (30‰). Results showed that the growth of these bacteria is promoted by Fe, Mn, and Cu, but inhibited by Hg, Cd, Pb, Mg, and Zn. The minimum inhibitory concentration (MIC) of all the bacteria in Fe, Mn, and Cu was >?20?mg?L??1. The MIC of V. damsela was 5?mg?L??1 for Hg and?>??20?mg?L??1 for Cd, Pb, Mg, and Zn. For P. aeruginosa, MIC was >?20?mg?L??1 for Cd, Pb, Mg, and Zn and 10?mg?L??1 for Hg. Meanwhile, the MIC of P. stutzeri was >?20?mg?L??1 for Pb, Mg, and Zn and 5?mg?L??1 for Hg and Cd. The MIC of P. fluorescens for Hg, Pb, Mg, and Zn was 5, 5, 15, and 20?mg?L??1, respectively, and that for Cd was >?20?mg?L??1. From the MIC results, Hg is the most toxic heavy metal. In marginal water (10‰), P. aeruginosa FZ-2 removed up to 99.7% Hg compared with that in fresh water (0‰), where it removed only 54% for 72?h. Hence, P. aeruginosa FZ-2 is the most resistant to heavy metals, and saline condition exerts a positive effect on bacteria in removing Hg.
机译:渗滤液由含有各种污染物的卫生垃圾填埋场生产,包括重金属。本研究旨在确定从非活性卫生垃圾填埋场渗滤液中分离的细菌对各种重金属的抗性以及盐度水平对分离的细菌除去Hg的影响。从非活跃的卫生垃圾填埋场渗滤液中分离出鉴定为vibrio damsela,假单胞菌术,荧光素,荧光细胞,X×1017个菌落形成单位,均为亚塞拉,假单胞菌毒素和假单胞菌荧光。对Hg,Cd,Pb,Mg,Zn,Fe,Mn和Cu进行重金属阻力试验(0-20×mg≤1→1)。在不同的盐度水平下也测定最具抗性细菌的最有毒重金属,即淡水(0‰),边缘水(10次),咸水(20‰)和盐水(30‰ )。结果表明,这些细菌的生长由Fe,Mn和Cu促进,但抑制Hg,Cd,Pb,mg和Zn。 Fe,Mn和Cu的所有细菌的最小抑制浓度(MIC)>Δ20≤mg≤1。 V.Amsela的MIC为5?mg?l ?? 1用于hg和??? 20?mg?l ?? 1用于Cd,pb,mg和zn。对于铜绿假单胞菌,麦克风>?20?mg?l ?? 1用于Cd,pb,mg和zn和10?mg ?? 1。hg。同时,P. Stutzeri的MIC>?20?mg?l ?? 1用于pb,mg和zn和5?mg≤1.hg和cd.用于Hg,pb,mg和zn的p.荧光的MIC分别为5,5,15和20?mg?l ?? 1,并且对于cd>Δ2mg≤1。从MIC结果,HG是最有毒的重金属。在边缘水(10次),P.铜绿假单胞菌FZ-2较高至99.7%HG,与淡水(0‰)相比,其中仅取54%72℃。因此,P.铜绿假单胞菌FZ-2对重金属最具抗性,并且盐水条件对除去Hg的细菌产生积极影响。

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