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首页> 外文期刊>International Journal of Greenhouse Gas Control >Capture of carbon dioxide from flue or fuel gas mixtures by clathrate crystallization in a silica gel column
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Capture of carbon dioxide from flue or fuel gas mixtures by clathrate crystallization in a silica gel column

机译:在硅胶柱中通过包合物结晶从烟道气或燃气混合物中捕获二氧化碳

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摘要

A column of silica gel was employed to contact water with flue gas (CO_2/N2) mixture to assess if CO_2 can be separated by hydrate crystallization. Three different silica gels were used. One with a pore size of 30 nm (particle size 40-75 ,um) and twowith a pore size of 100 nm and particle sizes of 40-75 and 75-200 |xm respectively. The observed trends indicate that larger pores and particle size increase the gas consumption, CO_2 recovery, separation factor and water conversion to hydrate. Thus, thegel (gel #3) with the larger particle size and larger pore size was chosen to carry out experiments with concentrated CO_2 mixtures and for experiments in the presence of tetrahydrofuran (THF), which itself is a hydrate forming substance. Addition of THF reduces the operating pressure in the crystallizer but it also reduces the gas uptake. Gel #3 was also used in experiments with a fuel gas (CO_2/H_2) mixture in order to recover CO_2 and H_2. It was found that the gel column performs as well as a stirred reactor in separating the gas components from both flue gas and fuel gas mixtures. However, the crystallization rate and hydrate yield are considerably enhanced in the former. Finally the need for stirring is eliminated with the gel column which is enormously beneficial economically.
机译:使用硅胶柱使水与烟气(CO_2 / N2)混合物接触,以评估CO_2是否可以通过水合物结晶分离。使用了三种不同的硅胶。一种具有30 nm的孔径(粒径40-75μm),另一种具有100 nm的孔径且粒径分别为40-75和75-200 | xm。观察到的趋势表明,较大的孔隙和更大的粒径会增加气体消耗,CO_2回收率,分离系数和水转化为水合物的程度。因此,选择具有较大粒径和较大孔径的凝胶(凝胶#3)以进行浓CO 2混合物的实验,并在存在四氢呋喃(THF)的情况下进行实验,四氢呋喃本身是形成水合物的物质。 THF的加入降低了结晶器中的操作压力,但同时也降低了气体吸收。为了回收CO_2和H_2,凝胶#3也用于燃料气体(CO_2 / H_2)混合物的实验中。已发现,在从烟气和燃料气体混合物中分离气体组分时,凝胶塔的性能与搅拌反应器一样好。但是,前者的结晶速率和水合物产率大大提高。最终,用凝胶柱消除了搅拌的需要,这在经济上是非常有益的。

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