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Sorptive H2S removal by impregnated activated carbons for the production of SNG

机译:浸渍活性炭对H2S的吸附脱除以生产SNG

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The desulfurization ability for H2S enriched syngas of several impregnated activated carbons was investigated under dry, oxygen-free conditions to protect a commercial methanation catalyst for SNG production. All sorption experiments were performed at ambient temperature together with the methanation of an N-2 diluted syngas at 400 degrees C. It could be shown that none of the examined activated carbons is able to protect the catalyst from poisoning. The non-impregnated activated carbon shows the best performance with a loss of catalyst activity <1% until the breakthrough. Impregnations containing no oxygen showed the fastest loss of catalyst activity until the breakthrough. The loading capacities of all impregnated activated carbons are two to four times higher than of those without impregnation. The results show that syngas obtained by biomass gasification, which contains no oxygen, cannot be sufficiently desulfurized by activated carbons. In order to economically perform the desulfurization with activated carbons, it is necessary to add oxygen and water to the syngas. Several publications showed that thereby the loading capacity is elevated by 20 times and the breakthrough time was extended by 30 times. (C) 2015 Elsevier B.V. All rights reserved.
机译:在干燥,无氧的条件下研究了几种含浸活性炭的富含H2S的合成气的脱硫能力,以保护用于SNG生产的商业甲烷化催化剂。所有吸附实验都是在环境温度下进行的,同时在400摄氏度下对N-2稀释的合成气进行甲烷化。可以证明,所检查的活性炭均无法保护催化剂中毒。未经浸渍的活性炭表现出最佳性能,直到突破为止,催化剂活性损失<1%。直到突破为止,不含氧的浸渍显示出最快的催化剂活性损失。所有浸渍的活性炭的负载能力是未浸渍活性炭的负载能力的二至四倍。结果表明,通过生物质气化获得的合成气不含氧气,不能被活性炭充分脱硫。为了经济地用活性炭进行脱硫,必须向合成气中加入氧气和水。一些出版物表明,由此负载能力提高了20倍,突破时间延长了30倍。 (C)2015 Elsevier B.V.保留所有权利。

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