首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Adsorptive removal of tert-butylmercaptan and tetrahydrothiophene using microporous molecular sieve ETS-10
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Adsorptive removal of tert-butylmercaptan and tetrahydrothiophene using microporous molecular sieve ETS-10

机译:使用微孔分子筛ETS-10吸附去除叔丁基硫醇和四氢噻吩

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摘要

The adsorptive removal of tert-butylmercaptan (TBM) and tetrahydrothiophene (THT) in methane gas using microporous molecular sieve ETS-10 was investigated at an ambient temperature and atmospheric pressure. Na,K-ETS-10 and Cu-exchanged Na,K-ETS-10 (Cu-ETS-10) were characterized by X-ray diffrac-tometer (XRD) for the crystalline phase. X-ray fluorescence (XRF) analyzer for the chemical composition, and nitrogen adsorption-isotherm measurement for the BET surface area and porosity, respectively. Posterior to its treatment at 723 K in He atmosphere for 2h, the Cu(II) in Cu-ETS-10 could be partially autoreduced to Cu(I), which was confirmed by X-ray photoelectron spectroscopy (XPS). The preferential adsorption of THT over TBM on Na,K-ETS-10 and the concurrent adsorption of TBM and THT on Cu-ETS-10 were achieved, which could be explained by the uptake curve in the binary component adsorption, the temperature-programmed desorption, and the apparent activation energy for desorption. The breakthrough sulfur adsorption capacity for both TBM and THT was attained to 2.50 mmol S/g on Cu-ETS-10-0.1(4). This markedly high breakthrough sulfur adsorption capacity on Cu-ETS-10 is unprecedented in removing organic sulfur compounds from fuel gas by adsorption on zeolites.
机译:在环境温度和大气压下,研究了使用微孔分子筛ETS-10吸附去除甲烷中的叔丁基硫醇(TBM)和四氢噻吩(THT)。用X射线衍射仪(XRD)对Na,K-ETS-10和铜交换的Na,K-ETS-10(Cu-ETS-10)进行表征。 X射线荧光(XRF)分析仪用于化学成分测定,氮吸附等温线测定分别用于BET表面积和孔隙率。 X-射线光电子能谱(XPS)证实,Cu-ETS-10中的Cu(II)在He气氛中在723 K下处理2h后,可以部分自动还原为Cu(I)。 NaT,K-ETS-10对THT的吸附优先于TBM,而Cu-ETS-10对TMT和THT的吸附同时发生,这可以通过程序设定的二元组分吸附曲线来解释。解吸和表观活化能。在Cu-ETS-10-0.1(4)上,TBM和THT的突破硫吸附容量均达到2.50 mmol S / g。这种在Cu-ETS-10上极高的突破性硫吸附能力,在通过吸附在沸石上去除燃料气体中的有机硫化合物方面是空前的。

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