首页> 外文期刊>Journal of Hazardous Materials >Self-sustainable Chlorella pyrenoidosa strain NCIM 2738 based photobioreactor for removal of Direct Red-31 dye along with other industrial pollutants to improve the water-quality
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Self-sustainable Chlorella pyrenoidosa strain NCIM 2738 based photobioreactor for removal of Direct Red-31 dye along with other industrial pollutants to improve the water-quality

机译:基于自我维持的小球藻小球藻NCIM 2738型光生物反应器,用于去除直接红31染料以及其他工业污染物,以改善水质

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摘要

The genotoxic and carcinogenic effects of diazo dyes from industrial effluents pose a serious environmental threat by contaminating aquatic ecosystem and consequently impact human health. The potential of a diazo dye resistant, self-sustainable photosynthetic green alga Chlorella pyrenoidosa NCIM 2738 provides a viable green technology for an efficient biodegradation of diazo dye Direct Red-31 (DR-31) and overall improvement of water quality. Herein, we for the first time report the degradation of DR-31 using C. pyrenoidosa. Batch experiments were performed to optimize the effect of initial pH, contact time and toxicity-range of DR-31 in order to achieve the optimal conditions for maximum decolourization in continuous cyclic photobioreactor. In batch culture, C. pyrenoidosa exhibited 96% decolourization with 40 mgL(-1) dye at pH3. The equilibrium was attained within 30 min and the maximum uptake of 30.53 mg g(-1) algal biomass was observed during this period. This was found to be fitted well with Langmuir and Freundlich adsorption isotherm. The FT-IR spectra showed a change from -N=N to -N-H suggesting the possible involvement of the azoreductase enzyme. The application of C. pyrenoidosa not only degraded the DR-31 but also improved the quality of water by reducing COD (82.73%), BOD (56.44%), sulphate (54.54%), phosphate (19.88%), and TDS (84.18%) which was further enhanced in continuous cyclic bioreactor treatment. The results clearly showed that C. pyrenoidosa provides an efficient, self-sustainable green technology for decolourization of DR-31 and improved the water quality. (C) 2015 Elsevier B.V. All rights reserved.
机译:工业废水中重氮染料的遗传毒性和致癌作用会污染水生生态系统,从而严重危害环境,进而影响人类健康。抗重氮染料,自持光合绿藻Chlorella pyrenoidosa NCIM 2738的潜力为有效地降解重氮染料直接红31(DR-31)和整体改善水质提供了可行的绿色技术。在本文中,我们首次报道了利用拟南芥对DR-31的降解。为了实现连续循环光生物反应器中最大脱色的最佳条件,进行了批量实验以优化DR-31的初始pH,接触时间和毒性范围的影响。在分批培养中,C。pyrenoidosa在pH3下用40 mgL(-1)染料表现出96%的脱色。在30分钟内达到平衡,在此期间观察到最大吸收量为30.53 mg g(-1)藻类生物量。已发现它非常适合Langmuir和Freundlich吸附等温线。 FT-IR光谱显示从-N = N到-N-H的变化,表明偶氮还原酶可能参与。拟南芥的应用不仅降解了DR-31,而且还通过减少COD(82.73%),BOD(56.44%),硫酸盐(54.54%),磷酸盐(19.88%)和TDS(84.18)改善了水质。 %),这在连续循环生物反应器处理中得到了进一步增强。结果清楚地表明,C。pyrenoidosa为DR-31的脱色提供了一种有效的,可持续的绿色技术,并改善了水质。 (C)2015 Elsevier B.V.保留所有权利。

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