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首页> 外文期刊>Journal of Cleaner Production >Production of methane as bio-fuel from palm oil mill effluent using anaerobic consortium bacteria
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Production of methane as bio-fuel from palm oil mill effluent using anaerobic consortium bacteria

机译:使用Anaerobic联盟细菌的棕榈油磨机产生甲烷作为生物燃料

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Consortium of bacteria (Bacillus toyonensis strain BCT-71120 and Stenotrophomonas rhizophila strain e-p10) can reduce biological oxygen demand (BOD) and chemical oxygen demand (COD) values in aerobic fermentation process of POME. This study aims to degrade the organic and inorganic compounds in POME by using anaerobic bacterial consortium of Bacillus toyonensis strain BCT-71120 and Stenotrophomonas rhizophila strain e-p10 to produce biogas and reduce the values of COD, BOD and total suspended solid (TSS). Effect of fermentation time on TSS, COD, BOD and pH are investigated. Specific growth rate and generation time are determined to obtain optimal fermentation time. The results shows that the bacterial consortium of Bacillus toyonensis strain BCT-7112 and Stenotrophomonas rhizophila strain e-p10 reduced COD, BOD and TSS values of POME and produce methane in biogas for 18 d of anaerobic fermentation process. The highest reduction of COD, BOD and TSS were 86, 94 and 80%, respectively, while the highest methane content was 41.05%. The pH values ranged from 7.8 to 8.3 as sufficient condition for the bacterial growth. The highest specific growth rate of the bacteria achieved at 0.268 1/d and the lowest generation time was 3.74 d. Values of mu(max) and K-s were achieved 0.1741/d and 63.011 mg/L, respectively. Value of Y = 1.4 x 10(9) CFU/mg, K-d = 0.42 1/d and q(max) = 1.24 x 10(-10) mg/CFU.d based on BOD values. Values of mu max and K s were achieved 0.122 1/d and 5.945 mg/L, respectively. Y = 2.41 x 10(9) CFU/mg, K-d = 6.60 1/d and q(max )= 5.062 x 10(-10) mg/CFU.d. based on COD values. (C) 2020 Elsevier Ltd. All rights reserved.
机译:细菌联盟(杆菌菌菌株BCT-71120和Stenotrophoomonasrthophila菌株E-P10)可以降低Pome的有氧发酵过程中的生物需氧量(BOD)和化学需氧量(COD)值。本研究旨在通过使用枯草芽孢杆菌菌株BCT-71120和StenotophomonasRrizophila菌株E-P10来降解Pome中的有机和无机化合物,以产生沼气并降低COD,BOD和全悬浮固体(TSS)的值。研究了发酵时间对TSS,COD,BOD和pH的影响。确定具体的生长速率和产生时间以获得最佳发酵时间。结果表明,芽孢杆菌菌株BCT-7112的细菌联盟和鼻科菌菌菌株E-P10的鳕鱼,BOD和TSS值的沼泽和在沼气中产生甲烷18d的厌氧发酵过程。 COD,BOD和TS的最高减少分别为86,94和80%,而最高甲烷含量为41.05%。 pH值从7.8至8.3的范围为细菌生长的足够条件。在0.268 1 / d处实现的细菌的最高特异性生长速率和最低产生时间为3.74天。 MU(MAX)和K-S的值分别达到0.1741 / d和63.011mg / L. Y = 1.4×10(9)CFU / mg,K-D = 0.42 1 / D和Q(最大值)= 1.24 x 10(-10)mg / cfu.d基于BOD值。 Mu max和k s的值分别达到0.1221 / d和5.945mg / L. Y = 2.41 x 10(9)CFU / mg,K-D = 6.60 1 / D和Q(MAX)= 5.062 x 10(-10)mg / cfu.d。基于COD值。 (c)2020 elestvier有限公司保留所有权利。

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