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Development of enhanced biogas production from palm oil mill effluent (POME)

机译:从棕榈油磨流出物(Pome)的增强沼气生产的开发

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This study aims to characterize palm oil mill effluent (POME) as a source of biogas production and to examine the biotic and abiotic factors for enhancing the POME biogas production. The results show that the POME sludge (LCPMKS) generated from PT Swastisiddhi Amarga Bioenergi mill is viscous, brown or greyish in color with total solid (TS) content of 38.5-57.4, chemical oxygen demand (COD) of 56.5-75.6, biological oxygen demand (BOD) of 35.5-40.7 and suspended solid (SS) of 28.1-46.9 in g/L. These values are above the standard threshold limits, thus POME is a potential source of environmental contamination if released untreated. Abiotic factors such as addition of Ca(OH)2 to neutralize the pH, provision of agitation system and increase in temperature enhanced the biogas production up to 50.5 L, 50.5 L and 98.5 L respectively. While, among the biotic factors, the condition which produced the highest biogas (250 L) contains the substrate volume of 50 L with 25% inoculum of type mud LCPMKS pool II using a laboratory scale anaerobic digester.
机译:本研究旨在将棕榈油厂流出物(Pome)作为沼气生产来源,并检查增强沼泽生产的生物和非生物因素。结果表明,从Pt乳头乳汁生物切割磨机产生的墨粉污泥(LCPMK)是粘性,棕色或灰色的颜色,总固体(TS)含量为38.5-57.4,化学需氧量(COD)为56.5-75.6,生物氧需求(BOD)35.5-40.7,悬浮的固体(SS)为G / L 28.1-46.9。这些值高于标准阈值限制,因此释放未经处理的情况下是一种潜在的环境污染来源。无生物因子,例如加入Ca(OH)2中和pH,提供搅拌系统和温度的增加,同比增强沼气产量,分别高达50.5升50.5升和98.5升。虽然,在生物因子中,产生最高沼气(250l)的条件含有50μl的基材体积,其使用实验室挖掘机的实验室规模含有25%的泥浆Lcpmks池II。

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