首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Adsorptive removal of tetrahydrothiophene (THT) and tert-butylmercaptan (TBM) using Na-Y and AgNa-Y zeolites for fuel cell applications
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Adsorptive removal of tetrahydrothiophene (THT) and tert-butylmercaptan (TBM) using Na-Y and AgNa-Y zeolites for fuel cell applications

机译:使用Na-Y和AgNa-Y沸石吸附去除四氢噻吩(THT)和叔丁基硫醇(TBM)用于燃料电池

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Adsorptive removal of tetrahydrothiophene (THT) and tert-butyimercaptan (TBM) that are widely used sulfur odorants in pipeline natural gas was studied using AgNa-Y zeolites at ambient temperature and atmospheric pressure. The AgNa-Y were obtained via Ag+-exchange with Na+ of Na-Y at various exchange levels, and the contributions of formed adsorption sites (Ag+, Na+, Ag-0, H+, and Ag2O) in the THT and TBM adsorption uptake and selectivity were characterized. THT adsorption strength on these sites followed an order of Ag+ > Na+ similar to Ag-0 > H+ > Ag2O. The adsorption strength of THT on Na+ sites was sufficiently high, thus an increase in the Ag+-exchange level did not lead to a notable increase in the breakthrough THT uptake. Differently, adsorption of TBM on Na+ sites was weak, whereas that on Ag+ sites was strong. This resulted in a marked increase in the breakthrough TBM uptake with an increase in the Ag+-exchange level, showing an order of magnitude higher uptake on AgNa-Y compared with that on Na-Y. Noticeably, the adsorption strength of THT on these adsorption sites was higher than that of TBM. This resulted in an almost 100% adsorption selectivity for THT over TBM, when these two sulfur species coexisted in the feed stream. (c) 2007 Elsevier B.V. All rights reserved.
机译:在环境温度和大气压下,使用AgNa-Y沸石研究了管道天然气中广泛使用的硫臭剂四氢噻吩(THT)和叔丁硫醇(TBM)的吸附去除。 AgNa-Y是通过在不同交换水平下通过与Na-Y的Na +交换Ag +而获得的,形成的吸附位点(Ag +,Na +,Ag-0,H +和Ag2O)在THT和TBM吸附吸收和表征选择性。在这些位置上的THT吸附强度遵循类似于Ag-0> H +> Ag2O的Ag +> Na +的顺序。 THT在Na +位点上的吸附强度足够高,因此Ag +交换水平的提高并未导致突破性THT吸收的显着增加。不同的是,TBM在Na +位点上的吸附很弱,而在Ag +位点上的吸附很强。这导致突破性TBM摄取量显着增加,且Ag +交换水平增加,与Na-Y相比,AgNa-Y的摄取量高一个数量级。值得注意的是,THT在这些吸附位点上的吸附强度高于TBM。当这两种硫物质共存于进料流中时,THT的吸附选择性比TBM接近100%。 (c)2007 Elsevier B.V.保留所有权利。

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