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焙烧温度对Ni/ZnO/Al2 O3深度吸附脱除苯中噻吩性能的影响
引用本文:董森,曹永正,徐新,刘树俊,罗国华,郭学华.焙烧温度对Ni/ZnO/Al2 O3深度吸附脱除苯中噻吩性能的影响[J].工业催化,2019,27(12):41-45.
作者姓名:董森  曹永正  徐新  刘树俊  罗国华  郭学华
作者单位:开滦煤化工研发中心,河北 唐山063611;河北省煤基材料与化学品技术创新中心,河北 唐山063018;北京石油化工学院化学工程学院,北京102617;燃料清洁化与高效催化减排北京市重点实验室,北京102617
摘    要:采用固相法及尿素沉淀法分别制备Ni O和ZnO,以ω(ZnO)∶ω(Ni O)∶ω(Al_2O_3)=0.3∶1∶1混涅成型制备脱硫吸附剂,考察焙烧温度对吸附剂选择性吸附脱除苯中微量噻吩硫化物的影响,并采用XRD、H_2-TPR和BET等对吸附剂进行表征。结果表明,前驱体的焙烧温度对吸附剂晶体结构和脱硫性能影响显著,焙烧温度500℃时,吸附剂表面活性位及与载体的相互作用适中,吸附脱硫效果最好。在185℃和1.5 MPa吸附条件下,以含噻吩100 mg·L~(-1)的苯为原料,吸附剂动态饱和吸附硫容量可达18.4 mg·g~(-1),吸附后苯中噻吩浓度不高于0.010 mg·L~(-1),表明制备的吸附剂具有较好的吸附脱硫应用前景。

关 键 词:催化剂工程  NiO  ZnO    噻吩  吸附脱硫

Effect ofcalcination temperature on deepadsorbent Ni/ZnO/Al2O3for desulfurization of thiophene from benzene
Dong Sen,Cao Yongzheng,Xu Xin,Liu Shujun,Luo Guohua,Guo Xuehua.Effect ofcalcination temperature on deepadsorbent Ni/ZnO/Al2O3for desulfurization of thiophene from benzene[J].Industrial Catalysis,2019,27(12):41-45.
Authors:Dong Sen  Cao Yongzheng  Xu Xin  Liu Shujun  Luo Guohua  Guo Xuehua
Affiliation:1.Coal Chemical R&D Center of Kailuan Group,Tangshan 063611,Hebei,China;2.Hebei Provincial Technology Innovation Center of Coal-based Materials and Chemicals,Tangshan 063018,Hebei,China;3.College of Chemical Engineering,Beijing Institute of Petrochemical Technology, Beijing 102617,China;4.Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction Technology,Beijing 102617,China
Abstract:Nano-nickel oxide and nano-zinc oxide were prepared by solid phase method and urea precipitation method.The desulfurization adsorbent was prepared by kneading with ω(ZnO)∶ω(NiO)∶ω(Al2O3)=0.3∶1∶1.The effect of calcination temperature on the desulfurization performance of the adsorbent was investigated.Texture properties of the prepared adsorbents were characterized by XRD,H2-TPR,and BET.The results showed that the calcination temperature of the precursor had significant effect on the crystal structure and desulfurization performance of the adsorbent.The adsorbent calcinated at 500 ℃ showed the best desulfurization performance due to suitable interaction between surface active site and the support.When benzene with thiophene content of 100 mg·L-1 was used as raw material and adsorbed at 185 ℃ and 1.5 MPa,the saturated adsorption sulfur capacity was up to 18.4 mg·g-1, and the concentration of thiophene in benzene after adsorption was not higher than 0.010 mg·L-1,which meant that the prepared adsorbent had good application prospect for desulfurization.
Keywords:catalyst engineering  NiO  ZnO  benzene  thiophene  adsorption desulfurization  
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