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Adsorption separation of CH4/N-2 on modified coal-based carbon molecular sieve

机译:CH4 / N-2对改性煤基碳分子筛的吸附分离

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Coal-based carbon molecular sieves (CMS) were modified by organic reagents with affinities for hydrocarbons including tetracosane (C24), lauryl sodium sulfate (SDS), and polyethylene imine (PEI), and low temperature plasma treatment in a CH4 and N-2 atmosphere, respectively. The modified CMS samples were characterized by FT-IR analysis, low-temperature N-2 adsorption tests and SEM. In addition, the adsorption capacities of pure CH4 and N-2 were measured by the static volume method and the CH4/N-2 separation coefficients of the modified samples were also compared. The saturated adsorption capacities q(m) after modification and separation coefficients were investigated. CH4 was more strongly adsorbed on all the modified samples. The sample of CMS-P-N has the best modification effect and its saturated adsorption capacities q(m) were 6.76 mmol/g for CH4 and 5.56 mmol/g for N-2, respectively. The separation coefficient of CH4/N-2 of CMS-P-N was 3.32. Besides, CH4 breakthrough tests were performed using a fixed bed apparatus. The breakthrough curves confirmed that low temperature plasma treatment of CMS in an N-2 atmosphere was beneficial for the adsorption separation of CH4/N-2.
机译:通过有机试剂改性煤基碳分子筛(CMS),其具有烃的亲和力,包括四丝烷(C24),月桂基硫酸钠(SDS)和聚乙烯亚胺(PEI),以及CH4和N-2的低温等离子体处理气氛分别。通过FT-IR分析,低温N-2吸附试验和SEM表征改性的CMS样品。另外,通过静态体积法测量纯CH4和N-2的吸附容量,并且还比较了修饰样品的CH 4 / N-2分离系数。研究了改性和分离系数后的饱和吸附容量Q(M)。在所有修饰的样品上更强烈地吸附CH4。 CMS-P-N的样品具有最佳的改性效果,并且其饱和吸附容量Q(M)分别为N-2的CH4和5.56mmol / g为6.76mmol / g。 CMS-P-N的CH 4 / N-2的分离系数为3.32。此外,使用固定床装置进行CH4突破性测试。突破性曲线证实,N-2气氛中CM的低温等离子体处理有利于CH 4 / N-2的吸附分离。

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