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SYNTHESES OF 4A ZEOLITE IN DETERGENTS WITH KAOLIN
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作者 曹明礼 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 1997年第Z1期58-62,共5页
The main technical conditions for synthesizing 4A zeolite with kaolin were determined. The whiteness and calcium ion exchange capacity (CIEC) of the product were increased by calcining and screening the colouring ions... The main technical conditions for synthesizing 4A zeolite with kaolin were determined. The whiteness and calcium ion exchange capacity (CIEC) of the product were increased by calcining and screening the colouring ions, and the high quality 4A zeolite was synthesized successfully. Moreover, the formation mechanism of zeolite also discussed. 展开更多
关键词 KaOLIN CaLCINE 4a zeolite
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Medium effect on dielectric relaxation behaviors of 4A zeolite bulk dispersion system
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作者 Wei Zhou Di-Wei Zhang +2 位作者 Dong-Sheng Bai Shu-Jing Li Xin-Rui Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2015年第10期1255-1258,共4页
Dielectric spectra of 4A zeolite particles bulked in deionized water(4A/W) or cyclohexane(4A/C) were measured respectively under different temperatures, and two dielectric relaxations were found in both of 4A/W an... Dielectric spectra of 4A zeolite particles bulked in deionized water(4A/W) or cyclohexane(4A/C) were measured respectively under different temperatures, and two dielectric relaxations were found in both of 4A/W and 4A/C. Because of existence of water molecules in pores, both low and high frequency relaxation times(t LFR and t HFR) of 4A/W decreased more sharply than 4A/C with increasing temperature.According to the temperature dependence of t LFR and t HFR, the activation energies of Na+interacting with framework under hydrated and dehydrated environments were calculated respectively, and the original properties of Na+in dehydrated zeolite were obtained by analyzing the dielectric properties of 4A/C.Furthermore, a transient state of Na+motion with temperature was found in 4A/C system. 展开更多
关键词 Dielectric relaxation 4a zeolite Medium effect Ion hopping
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Adsorption dynamics of ethane from air in structured fixed beds with different microfibrous composites
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作者 Huan Xiang Huiping Zhang +1 位作者 Pengfei Liu Ying Yan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第1期14-24,共11页
Adsorption dynamics of ethane in two granular fixed beds and structured fixed beds with microfibrous composites was studied.5A zeolite membrane 5A/PSSF(paper-like sintered stainless steel fiber)and microfibrous entrap... Adsorption dynamics of ethane in two granular fixed beds and structured fixed beds with microfibrous composites was studied.5A zeolite membrane 5A/PSSF(paper-like sintered stainless steel fiber)and microfibrous entrapped activated carbon(MEAC)composites were prepared by wet layup papermaking/sintering technique and in-situ hydrothermal method.Microfibrous composites were characterized by X-ray diffraction,scanning electron microscopy and N2 adsorption/desorption.Structured fixed beds were designed by filling granular adsorbents(5A zeolite or activated carbon)and microfibrous composites at the inlet and outlet of the beds,respectively.Effects of flow rate,bed height and structure on the breakthrough curves were investigated.The length of unused bed(LUB)was determined,and Yoon–Nelson model was used to fit the breakthrough curves.The experimental results showed ethane was effectively adsorbed on the granular adsorbents and microfibrous composites.Both composites could decrease the LUB values and enhance bed utilization.All breakthrough curves fitted well to Yoon–Nelson model,with correlation coefficient exceeding 0.89.The adsorption rate of ethane could be improved in the structured fixed beds,which showed an enhanced mass transfer efficiency for ethane adsorption.LUB values of structured fixed beds with 5A/PSSF composites were larger,the bed utilization values were lower,and the adsorption rate constants were higher than those with MEAC composites under the same conditions. 展开更多
关键词 5a zeolite membrane Microfibrous entrapped activated carbon ETHaNE Structured fixed bed adsorption dynamics
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