首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >ENHANCED BIODEGRADATION OF HIGH MOLECULAR WEIGHT PAHS USING YEAST CONSORTIA IMMOBILIZED ON MODIFIED BIOWASTE MATERIAL
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ENHANCED BIODEGRADATION OF HIGH MOLECULAR WEIGHT PAHS USING YEAST CONSORTIA IMMOBILIZED ON MODIFIED BIOWASTE MATERIAL

机译:固定化改性生物废料上的酵母菌可增强高分子量生物降解

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The degradation of high molecular weight (HMW) polycyclic aromatic hydrocarbons (PAHs) viz. benzo[a]pyrene, perylene and benzo[ghi]perylene in soil was studied using yeast consortia immobilized on various conventional matrices and biowaste materials. Enhanced biodegradation was noted using yeast consortia immobilized in sawdust powder (SDP) which was chemically modified (M-SDP). The chemical modification destroyed the benzene rings in the cellulose and improved the porosity of SDP by decreasing the crystallinity of the biomass. The physicochemical properties of M-SDP were characterized with SEM, EDAX analysis, FTIR analysis, X-ray diffraction and TGA analysis. Application of M-SDP showed enhanced degradation of benzo[a]pyrene (82.5%) followed by perylene (75.1%) and benzo[ghi]perylene (63.4%) after 40 days of incubation. The results of kinetic study demonstrated that HMW PAHs degradation in soil fitted the first order kinetic model. It can be concluded that chemically modified SDP can serve as potential immobilization matrix for supporting pollutant-degrading yeast consortia which can be employed for effective degradation of HMW PAHs.
机译:高分子量(HMW)多环芳烃(PAHs)的降解,即。使用固定在各种常规基质和生物废料上的酵母菌联盟研究了土壤中的苯并[a] py,per和苯并g。使用固定在经过化学修饰的木屑粉(SDP)中的酵母菌群(M-SDP)注意到了增强的生物降解。化学修饰通过降低生物质的结晶度破坏了纤维素中的苯环并改善了SDP的孔隙率。通过SEM,EDAX分析,FTIR分析,X射线衍射和TGA分析对M-SDP的理化性质进行了表征。孵育40天后,M-SDP的应用显示苯并[a] re(82.5%),然后per(75.1%)和苯并g(63.4%)的降解增强。动力学研究结果表明,HMW PAHs在土壤中的降解符合一级动力学模型。可以得出结论,化学修饰的SDP可以作为潜在的固定基质,以支持可降解污染物的酵母菌群,可用于有效降解HMW PAHs。

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