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Simultaneous Upgrading Utilizing Iron Sponge and Zeolite 13X fixed Bed Columns for Gaseous Fuel Production

机译:同时升级利用铁海绵和沸石13x固定床柱进行气态燃料生产

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Biogas technology is continuously being studied to enhance its quality and expand its power generation application. To increase its heating value and eliminate its corrosive effect on machine components, a biogas upgrading system was designed and developed. This study evaluates the developed upgrading system by its capability to increase the methane content through hydrogen sulfide and carbon dioxide reduction using the iron sponge and Zeolite 13x, respectively as adsorbent columns. The results show that by varying the volume flow rate of the biogas into the system could lengthen the contact time between the biogas and adsorbent and eventually increase the CH4 content from the biogas. Furthermore, the highest methane content achieved at 63.1 % from a raw biogas concentration of 32% CH4. Meanwhile, with the breakthrough adsorption capacity of zeolite 13x was 224 mg CO2/g. This had reduced the CO2 by 41.76% from its raw biogas composition. The maximum superior and inferior calorific values produced were 22.53 MJ/m3 and 20.29 MJ/m3 respectively. The simplified design of a simultaneous upgrading system intends to increase the methane content of the biogas and further extend its application as an alternative fuel for power generation applications.
机译:沼气技术不断研究,以提高其质量,扩大其发电应用。为了提高其加热价值并消除其对机器组件的腐蚀性影响,设计并开发了沼气升级系统。本研究通过其能力评估了发育的升级系统,以通过硫化氢和使用铁海绵和沸石13x来增加甲烷含量和二氧化碳减少作为吸附柱。结果表明,通过改变沼气的体积流量,可以延长沼气和吸附剂之间的接触时间,并最终从沼气中增加CH4含量。此外,甲烷含量最高,从原始沼气浓度为32%ch的原料浓度达到63.1% 4 。同时,随着沸石13x的突破性吸附能力为224毫克CO 2 /G。这减少了CO 2 从其原料沼气组成中的41.76%。产生的最高和劣质热值为22.53 mj / m 3 和20.29 mj / m 3 分别。同时升级系统的简化设计旨在增加沼气的甲烷含量,并进一步将其应用作为发电应用的替代燃料。

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