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基于輕組分充壓的改進型三塔真空變壓吸附工藝富集煤礦乏風瓦斯的實驗研究

Experimental study on the improved VPSA process of pressurization with raffinate for VAM upgrading

  • 摘要: 建立了以活性炭為吸附劑的三塔真空變壓吸附實驗裝置,對循環過程中的充壓方式和抽真空排放過程進行了實驗研究.采用輕組分從吸附塔上端充壓可以在排放氣甲烷體積分數相同的情況下,延長穿透時間,提高產品氣甲烷體積分數;而在循環中引入抽真空排放步驟也可以在不改變吸附與解吸壓力的情況下有效提高產品氣中甲烷的體積分數.在此基礎上,對同時包含排放氣充壓步驟和抽排步驟的三塔變壓吸附循環流程進行了實驗研究.實驗結果表明,應用該循環可以在吸附和解吸壓力分別為140 kPa和20 kPa條件下將甲烷體積分數為0.2%的乏風瓦斯富集至0.654%,同時甲烷回收率在65%.

     

    Abstract: An improved pressurization step with raffinate and vacuum exhaust step were developed and experimentally studied in a three-bed vacuum pressure-swing adsorption (VPSA) system with activated carbon for ventilation air methane (VAM) upgrading. It is found that pressurization with raffinate from the effluent end can prolong the penetration time and increase the CH4 concentration in product gas in the case of the same raffinate concentration;but the vacuum exhaust step can increase the CH4 concentration in product gas without increasing pressure. A three-bed VPSA cycle which contains the two steps was also studied experimentally. The results show that the CH4 concentration in product gas can increase from 0.4% to 0.654% with the CH4 recovery of 65% when the CH4 concentration in feed is 0.2% and the adsorption and desorption pressures are 140 kPa and 20 kPa, respectively.

     

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