Biodegradation Assay of Heavy Metals and Dyes Decolorization in Textile Industrial Effluent using Laccase Isolated from Pleurotus ostreatus

IF 0.7 Q4 MICROBIOLOGY Journal of Pure and Applied Microbiology Pub Date : 2023-11-21 DOI:10.22207/jpam.17.4.29
D. A. Johnnie, R. Issac, M. L. Prabha, Levin Anbu Gomez
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Abstract

This study focused on the isolation of laccase enzyme from the fungus Pleurotus ostreatus and its application in the biodegradation of various pollutants present in textile industrial effluent, including chemicals, ions, salts, heavy metals, brittle metals, total suspended solids, total dissolved solids, chemical oxygen demand, biological oxygen demand, minerals, total hardness, total alkalinity, turbidity, electrical conductivity, and dyes. Textile industrial effluent poses a significant threat to the environment, contaminating water bodies and posing risks to human, animal, and plant life. This study employed an economical and ecofriendly biological approach for wastewater treatment, distinguishing it from traditional physical and chemical methods. The optimum temperature of laccase is found to be 30 degree Celsius and pH is 3. Enzyme activity of laccase is 7.25 U/ml. This fugal laccase decolorizes textile Industrial dye effluent containing various dyes, such as Turquoise VG, Black B, Yellow R, Methyl red, Trypan blue, and Acid Orange 7. Laccase depicts maximum decolorization efficacy on Black B dye. Similarly, Laccase from P.ostreatus shows higher decolorization efficacy when compared to other fungal laccase. Additionally, the study assessed the biodegradation of various wastewater quality parameters, including physical and chemical parameters like toxic heavy metals and ions. This research of isolation, characterization, and utilizing laccase from P. ostreatus for the bioremediation of textile industrial effluent wastewater containing dyes, toxic chemicals, ions and metals is effective, economical and ecofriendly.
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利用从黑木耳中分离出的漆酶对纺织工业废水中的重金属和染料进行生物降解脱色分析
这项研究的重点是从真菌 Pleurotus ostreatus 中分离出漆酶,并将其应用于生物降解纺织工业污水中的各种污染物,包括化学品、离子、盐类、重金属、脆性金属、总悬浮固体、总溶解固体、化学需氧量、生物需氧量、矿物质、总硬度、总碱度、浊度、电导率和染料。纺织工业污水对环境构成了严重威胁,污染了水体,并对人类、动物和植物生命构成了风险。这项研究采用了一种既经济又环保的生物方法来处理废水,有别于传统的物理和化学方法。研究发现,漆酶的最适温度为 30 摄氏度,pH 值为 3。这种富加勒漆酶能使含有各种染料(如绿松石 VG、黑 B、黄 R、甲基红、胰蓝和酸性橙 7)的纺织工业染料废水脱色。漆酶对黑 B 染料的脱色效果最好。同样,与其他真菌的漆酶相比,奥斯特菌的漆酶具有更高的脱色功效。此外,该研究还评估了各种废水质量参数的生物降解情况,包括有毒重金属和离子等物理和化学参数。这项关于分离、鉴定和利用奥斯特菌漆酶对含有染料、有毒化学品、离子和金属的纺织工业废水进行生物修复的研究是有效、经济和生态友好的。
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来源期刊
Journal of Pure and Applied Microbiology
Journal of Pure and Applied Microbiology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-MICROBIOLOGY
CiteScore
2.00
自引率
0.00%
发文量
266
审稿时长
11 months
期刊介绍: Journal of Pure and Applied Microbiology (JPAM) is a peer-reviewed, open access international journal of microbiology aims to advance and disseminate research among scientists, academics, clinicians and microbiologists around the world. JPAM publishes high-quality research in all aspects of microbiology in both online and print form on quarterly basis.
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