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Optimization of fresh palm oil mill effluent biodegradation with Aspergillus niger and Trichoderma virens

机译:黑曲霉和木霉菌对新鲜棕榈油厂废水生物降解的优化

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摘要

In this work, response surface optimization strategy was employed to enhance the biodegradation process of fresh palm oil mill effluent (POME) by Aspergillus niger and Trichoderma virens. A central composite design (CCD) combined with response surface methodology (RSM) were employed to study the effects of three independent variables: inoculum size (%), agitation rate (rpm) and temperature (degrees C) on the biodegradation processes and production of biosolids enriched with fungal biomass protein. The results achieved using A. niger were compared to those obtained using T. virens. The optimal conditions for the biodegradation processes in terms of total suspended solids (TSS), turbidity, chemical oxygen demand (COD), specific resistance to filtration (SRF) and production of biosolids enriched with fungal biomass protein in fresh POME treated with A. niger and T. virens have been predicted by multiple response optimization and verified experimentally at 19% (v/v) inoculum size, 100 rpm, 30.2 degrees C and 5% (v/v) inoculum size, 100 rpm, 33.3 degrees C respectively. As disclosed by ANOVA and response surface plots, the effects of inoculum size and agitation rate on fresh POME treatment process by both fungal strains were significant.
机译:在这项工作中,采用响应面优化策略来增强黑曲霉和木霉菌对新鲜棕榈油厂废水(POME)的生物降解过程。采用中央复合设计(CCD)结合响应表面方法(RSM)来研究三个独立变量的影响:接种量(%),搅拌速率(rpm)和温度(℃)对生物降解过程和微生物产量的影响生物固体富含真菌生物质蛋白。将使用黑曲霉获得的结果与使用维尔纽斯氏菌获得的结果进行比较。从总悬浮固体(TSS),浊度,化学需氧量(COD),比过滤抗性(SRF)以及在经过A.niger处理的新鲜POME中富含真菌生物质蛋白的生物固体的生产来看,生物降解过程的最佳条件已通过多重响应优化预测了T. virens和T. virens,并分别在19%(v / v)接种物大小,100 rpm,30.2摄氏度和5%(v / v)接种物大小,100 rpm,33.3摄氏度下进行了实验验证。如方差分析和响应面图所揭示的,两种真菌菌株的接种量和搅拌速率对新鲜POME处理过程的影响都很大。

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