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Performance analysis of a pressure swing adsorption unit in removing biogas impurities using zeolite 13X

机译:变压吸附装置使用13X沸石去除沼气杂质的性能分析

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This study aims to assess the performance of a Pressure Swing Adsorption (PSA) unit in removing the carbon dioxide from biogas by evaluating the breakthrough and adsorption capacity of the adsorption process as well as determining the effects of cyclic regeneration of the adsorbent. The PSA system developed and composed only a main vessel made up of 316 stainless steel components. It was then operated up to 10 bars pressure at ambient temperatures and gas flows at a rate from 0 to 15 L min~(-1). Use of physical adsorbent (zeolite 13X) will consume the gaseous impurities such as CO_(2). Product gas was collected into 1 L Tedlar bags and analyzed using SRI gas chromatograph with TCD and HID detector to validate the CO_(2)and CH_(4)composition. The results of the pressure swing adsorption (PSA) experiments showed an average increase of 160% in the net heating value over that of a certified gas standard. The amount of methane was also significantly higher although the amount of the other gasses (i.e. nitrogen) remained comparatively the same. The number of other gases was significantly lower and leaving no traces of carbon dioxide was observed in the PSA system product gas indicating that carbon dioxide had been completely adsorbed by the system. This study greatly helps to reduce CO_(2)emitted to the atmosphere from the anaerobic co-digestion of biogas to produce high energy content bio-methane fuel.
机译:这项研究旨在通过评估吸附过程的穿透力和吸附能力以及确定吸附剂循环再生的效果,来评估变压吸附(PSA)装置从沼气中去除二氧化碳的性能。 PSA系统仅由316不锈钢部件组成的主要容器组成。然后在环境温度下将其操作至最高10 bar的压力,气体流量为0至15 L min〜(-1)。使用物理吸附剂(沸石13X)会消耗气态杂质,例如CO_(2)。将产品气收集到1 L Tedlar袋中,并使用带有TCD和HID检测器的SRI气相色谱仪进行分析,以验证CO_(2)和CH_(4)的组成。变压吸附(PSA)实验的结果表明,净热值平均比认证的气体标准高160%。尽管其他气体(即氮气)的数量保持相对相同,但甲烷的数量也明显更高。其他气体的数量明显减少,并且在PSA系统产品气体中未观察到二氧化碳的痕迹,表明二氧化碳已被系统完全吸附。这项研究极大地有助于减少厌氧消化沼气产生高能含量生物甲烷燃料而排放到大气中的CO_(2)。

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