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Methane enrichment on biogas generated from anaerobic digester using coconut shell-based activated carbon

机译:甲烷富集沼气从厌氧蒸煮器产生的醋酸生物蒸煮物使用椰壳壳的活性炭

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This study evaluates methane enrichment on biogas generated from Anaerobic Digester (AD) through CO_2 adsorption process so that biogas can be used as fuel for vehicle engines, power plants, and natural gas substitutes. The experiment was observed by passing biogas synthesis (45% CH4 + 55% CO_2) and biogas from cattle manure ±59.7% CH_4, ± 37.1% CO_2 and ±3.2% other gases) in spontaneously pressurized adsorption column. In addition, observation of CO2 adsorption capacity at various pressure and fixed temperature (27°C) was performed using pure CO_2 (±98%). Methane in biogas has been successfully purified to 92% at 0.5 L/min flowrate and 79.6 seconds retention time. The adsorbent will be saturated after gas flowing for 60 and 80 minutes for synthesis biogas and biogas from AD on the amount of adsorbent of 266 grams. A change of surface area of activated carbon (AC) after thermal regeneration at 160°C for 2 hours was 7.51% and regeneration efficiency was 67%. The adsorption process followed Freundlich isothermal. This process can be feasible alternative technology to meet the need for biogas with high levels of methane in small-scale AD.
机译:该研究评估了通过CO_2吸附过程从厌氧消化器(AD)产生的沼气上的甲烷富集,以便沼气可用作车辆发动机,发电厂和天然气替代品的燃料。通过在自发加压吸附柱中通过沼气合成(45%CH4 + 55%CO_2)和沼气从牛粪±59.7%CH_4,±37.1%CO_2和±3.2%的其他气体中通过沼气合成(45%CH4 + 55%CO_2)和沼气。此外,使用纯CO_2(±98%)进行各种压力和固定温度(27℃)的CO 2吸附容量。甲烷在沼气已成功纯化到92%以0.5升/分钟的流量和79.6秒保留时间。在气体流动60和80分钟后,吸附剂将饱和60分钟,用于从AD上的合成沼气和沼气量为266克的吸附剂量。在160℃热再生2小时后热再生后的活性炭(AC)的变化为7.51%,再生效率为67%。吸附过程跟踪Freundlich等温。该过程可以是可行的替代技术,以满足小型广告中具有高水平甲烷的沼气的需求。

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