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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Desiloxanation process of biogas using an amorphous iron hydroxide-based adsorbent: A comparison between laboratory and field-scale experiments
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Desiloxanation process of biogas using an amorphous iron hydroxide-based adsorbent: A comparison between laboratory and field-scale experiments

机译:使用非晶铁基氢氧化物吸附剂的沼泽脱毒过程:实验室和场尺度实验的比较

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Amorphous iron hydroxide-based material was selected as a suitable adsorbent for the siloxanes from biogas and landfill gas. The adsorptive characteristics of the desiloxanation (DeSiloxs) process were studied through a lab-scale experiment using a simulated gas containing a mixture of siloxanes (D4, and D5) and a field experiment on an actual environment scale. The iron hydroxide-based adsorbents exhibited high activity in adsorption of siloxanes during lab-scale experiments, where the obtained adsorption capacity was about 26.3 % with N-2 as a carrier gas. However, from an applicability point of view, the effectiveness of the siloxane removal process was significantly affected by the space velocity during the in-situ test in anaerobic digestion gas plant using wastewater sludge. In the experimental case of various space velocities (50, 100, 300 h(-1)), a very high removal efficiency (100 %) was obtained. (C) 2020 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:基于无定形的铁氢氧化物材料作为来自沼气和垃圾填埋气体的硅氧烷的合适吸附剂。通过使用含有硅氧烷(D4和D5)的混合物的模拟气体和实际环境规模的场实验,通过实验室测量实验研究了脱氧化(脱硅)方法的吸附特性。基于氢氧化氢的吸附剂在实验室实验期间表现出硅氧烷吸附的高活性,其中所得的吸附能量为约26.3%,用N-2作为载气。然而,从适用性的观点来看,硅氧烷去除过程的有效性受到使用废水污泥的厌氧消化煤气厂的原位试验期间的空间速度的显着影响。在各种空速(50,100,300h(-1))的实验情况下,获得了非常高的去除效率(100%)。 (c)由elsevier b.v发表的2020年代代表化学工程师机构。

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