生物修复
黑曲霉
流出物
生物反应器
椰壳
制浆造纸工业
生物量(生态学)
生物吸附
化学
玉米芯
生物技术
环境化学
环境科学
吸附
环境工程
植物
食品科学
生物
农学
污染
有机化学
生态学
原材料
工程类
吸附
作者
Tan Phat Chau,Laura Bulgariu,Mythili Saravanan,R. Rajkumar,Arunachalam Chinnathambi,Saleh H. Salmen,G.K. Jhanani
标识
DOI:10.1016/j.envres.2023.116275
摘要
Untreated tannery effluent discharge, which causes severe environmental pollution. This research was performed to assess the bioremediation (multi-pollutant adsorption) potential of pre-identified and multi metal tolerant Aspergillus niger and Aspergillus tubigenesis through a stirred tank bioreactor in free and immobilized form. Physicochemical property analysis results showed that most of the tannery effluent properties were beyond the permissible limits. These A. niger and A. tubigenesis effectively immobilized on corncob and coir solid support material. The stirred tank bioreactor based bioremediation study revealed that the fungal biomass (Aspergillus niger and Aspergillus tubigenesis) immobilized coir and corncob material demonstrated remarkable multi-pollutant (TSS: 22.5% & 13.5%, TS: 29% & 22%, BOD: 21% & 10%, TDS: 28% & 19%, COD: 30% & 22%, Cr: 27% & 19%, Cu: 28% & 12%, and Pb: 48% & 29% respectively) adsorption potential in a week of treatment. Moreover, it reduced the toxicity of tannery effluent and promotes the sprouting of Oriza sativa seeds, as demonstrated by petri plate bioassay. These finding suggest that the metal-tolerant fungal isolates A. niger and A. tubigenesis demonstrated impressive bioremediation proficiencies in an immobilized state. A field investigation is required to assess the feasibility of this strategy on tannery effluent.
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