29th Symposium of Malaysian Chemical Engineers 2016 | |
Effect of temperature on methanogenesis stage of two-stage anaerobic digestion of palm oil mill effluent (POME) into biogas | |
Trisakti, B.^1 ; Irvan, Mahdalena^1 ; Taslim^1 ; Turmuzi, M.^1 | |
Chemical Engineering Department, Faculty of Engineering, University of Sumatera Utara, Jalan Almamater Komplek USU Medan, 20155, Indonesia^1 | |
关键词: Continuous stirred tank reactor; Effect of temperature; Palm oil mill effluents; Thermophilic range; Total suspended solids; Two-stage anaerobic digestions; Varying temperature; Volatile suspended solids; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/206/1/012027/pdf DOI : 10.1088/1757-899X/206/1/012027 |
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来源: IOP | |
【 摘 要 】
This study aimed to determine the effect of temperature on methanogenesis stage of conversion of palm oil mill effluent into biogas. Methanogenesis is the second stage of methanogenic anaerobic digestion. Improved performance of the methanogenesis process was determined by measuring the growth of microorganisms, degradation of organic materials, biogas production and composition. Initially, the suitable loading up was determined by varying the HRT 100, 40, 6, and 4.0 days in the continuous stirred tank reactor (CSTR) with mixing rate 100 rpm, pH 6.7-7.5 at room temperature. Next, effect of temperature on the process was determined by varying temperature at mesophilic range (30-42°C) and thermophilic range (43-55°C). Analysis of total solids (TS), volatile solids (VS), total suspended solids (TSS), volatile suspended solids (VSS), and chemical oxygen demand (COD) were conducted in order to study the growth of microorganisms and their abilities in converting organic compound to produce biogas. Degradation of organic content i.e. VS decomposition and COD removal increased with the increasing of temperature. At mesophilic range, VS decomposition and COD removal were 51.56 ± 8.30 and 79.82 ± 6.03, respectively. Meanwhile at thermopilic range, VS decomposition and COD removal were 67.44 ± 3.59 and 79.16 ± 1.75, respectively. Biogas production and its methane content also increased with the increasing of temperature, but CO2content also increased. Biogas production at mesophilic range was 31.77 ± 3.46 L/kg-ΔVS and methane content was 75 . Meanwhile, biogas production at thermopilic range was 37.03 ± 5.16 L/kg-ΔVS and methane content was 62.25 ± 5.50 .
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