从制革废水中分离的微生物群对铬的生物修复及其潜在的工业应用

IF 1 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
Arghyadeep Bhattacharjee,Rajarshi Chaudhuri,Priyanshu Pandey,Arup Kumar Mitra
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引用次数: 0

摘要

西孟加拉邦有几个皮革工业,每年加工大量的皮革。制革废水排放到土地和露天水域,分别造成土壤和水污染。铬是毒性最大的无机污染物之一,其致癌性是众所周知的。因此,我们的研究重点是研究从制革废水中分离出的常见微生物群的生物修复潜力。在我们的研究中,与其他菌株相比,分离物1具有最高的还原铬(Cr6+)的能力。分离物4具有最高的蛋白酶、脂肪酶和皮革降解活性。分离物1显示出最大的角化酶活性,使其成为角化酶生产的有效菌株。此外,还发现pH 8和温度40°C最适合角化酶的产生。经16S rRNA测序鉴定,分离物1和分离物4分别属于蜡样芽孢杆菌F4810/72和短芽孢杆菌F4810/72。因此,本研究确定了这些微生物在防治污染方面的作用和效率,特别是在由于各种工业废物管理不当而经常泄漏有害化学品的水体中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BIOREMEDIATION OF CHROMIUM (VI) BY A MICROBIAL CONSORTIUM ISOLATED FROM TANNERY EFFLUENTS AND THEIR POTENTIAL INDUSTRIAL APPLICATION
West Bengal has several leather industries and as such huge amount of leather are processed every year. The tannery effluents are discharged into the land and open water causing soil and water pollution respectively. Chromium is one of the most toxic inorganic contaminants which is well known for its carcinogenicity. Thus, our study focuses on investigating the bioremediation potential of common microflora isolated from tannery wastewater. In our study, Isolate 1 has the highest ability to reduce chromium (Cr6+) as compared to others. Isolate 4 has the highest protease, lipase and leather degradation activities. Isolate 1 shows the maximum keratinase activity making it an effective strain for keratinase production. Also, it has been found that pH 8 and temperature 40 °C was most suitable for keratinase production. Owing to the multidimensional ability of these two isolates, they were identified by 16S rRNA sequencing and it reveals that Isolate 1 and Isolate 4 belong to Bacillus cereus F4810/72 and Brevibacillus brevis F4810/72 respectively. Thus, this study establishes the role and efficiencies of these microorganisms in combatting pollution, particularly in the water bodies in which harmful chemicals leak regularly owing to improper waste management by various industries.
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来源期刊
CiteScore
1.90
自引率
7.70%
发文量
41
审稿时长
>12 weeks
期刊介绍: The Journal of Environmental Engineering and Landscape Management publishes original research about the environment with emphasis on sustainability.
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