伊朗Miankaleh湿地Halobacillus sp. KN57对镍的生物吸附

Q3 Environmental Science
F. Kardel, Nafiseh Torabi
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引用次数: 3

摘要

重金属通常从未经处理的废水中排放到水生生态系统中。本研究旨在探讨从伊朗北部Miankaleh湿地沉积物中分离的原生嗜盐细菌吸附镍金属的有效参数。选取耐药程度最高的革兰氏阳性盐杆菌KN57进行表型和系统发育鉴定(16S rRNA)。该菌株对镍的最佳接触时间、pH、温度、盐度和初始生物吸附剂浓度分别为100 min、7℃、30℃、10%、1 g。L -1和150毫克。分别是L -1。在实验室条件下,所选菌株对镍的生物吸附量为111.11 mg/g,符合Langmuir等温线,相关系数大于0.98,单层吸附量最大。此外,该菌株的镍生物吸附动力学符合准二级动力学模型,相关系数大于0.99。利用扫描电镜研究了Halobacillus sp. KN57对Ni 2+的吸附。最后,FT-IR光谱鉴定出酰胺、羰基和胺官能团参与了与镍离子的结合。结果表明,从Miankaleh湿地分离到的原生细菌(Halobacillus sp. KN57)是一种很有前途的镍金属吸附生物吸附剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biosorption of nickel by Halobacillus sp. KN57 isolated from the Miankaleh Wetland, Iran
Heavy metals are generally discharged from untreated wastewater in the aquatic ecosystem. This study was aimed to investigating the effective parameters in the sorption of nickel metal by a native halophile bacterium isolated from sediments of the Miankaleh Wetland in the north of Iran. Halobacillus sp. KN57 as the most resistant Gram-positive strain was selected and identified by phenotypic and phylogenetic properties (16S rRNA). The optimum contact time, pH, temperature, salinity, and initial biosorbent concentration of nickel for this strain were 100 min, 7, 30°C, 10%, 1 g.L -1 , and 150 mg.L -1 , respectively. The nickel biosorption was 111.11 mg/g by the selected strain under the laboratory conditions, followed Langmuir isotherm with a correlation coefficient of more than 0.98 and the maximum single layer sorption. In addition, the kinetics of nickel biosorption of this strain correspond to a pseudo second order kinetic model with a correlation coefficient of more than 0.99. Scanning electron microscopy was applied to confirm the biosorption of Ni 2+ by Halobacillus sp. KN57. Finally, the FT-IR spectrum identified that the amide, carbonyl, and amine functional groups were participated in binding to nickel ions. The results showed that the native bacterial strain ( Halobacillus sp. KN57) isolated from Miankaleh Wetland, is potentially a promising biosorbent for sorption of nickel metal.
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来源期刊
International Journal of Aquatic Biology
International Journal of Aquatic Biology Environmental Science-Ecology
CiteScore
1.30
自引率
0.00%
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0
审稿时长
10 weeks
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