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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Vapor-phase transport (VPT) modification of ZSM-5/SiC foam catalyst using TPAOH vapor to improve the methanol-to-propylene (MTP) reaction
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Vapor-phase transport (VPT) modification of ZSM-5/SiC foam catalyst using TPAOH vapor to improve the methanol-to-propylene (MTP) reaction

机译:使用TPAOH蒸气改善ZSM-5 / SiC泡沫催化剂的蒸汽相传输(VPT)改善甲醇 - 丙烯(MTP)反应

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摘要

Tetrapropylammonium hydroxide (TPAOH) was introduced in the vapor phase to perform the vapor-phase transport (VPT) modification of the structured ZSM-5 supported on SiC foam (ZSM-5/SiC foam) catalyst. An optimum precursor concentration of 0.5 M TPAOH could effectively convert the amorphous aluminosilicate binder to the zeolitic phase with improved intracrystal mesopores, nanosized crystals (ca. 100 nm), high concentration of acidity sites (83 mmol g(-1)) as well as a high value of the relative acidity (0.7). Combined with the intrinsic property of macroscopic SiC foams such as the low pressure drop and the high thermal conductivity (14 W m(-1) K-1 at 773 K), TPAOH VPT modified ZSM-5/SiC foam catalyst demonstrated an excellent activity in the catalytic methanol-to-propylene (MTP) reaction, surpassing the state-of-the-art hierarchal ZSM-5 monolith catalyst. The catalyst showed an extended activity for ca. 970 h ( 95% methanol conversion) with the high selectivity to the propylene ( 45%). The coke formation was significantly retarded (ca. 2.1 x 10(-2) wt.% h(-1)) due to the enhanced transport phenomena within the developed structured catalyst.
机译:在气相中引入氢氧化铵(TPAOH),以进行支持的SiC泡沫(ZSM-5 / SiC泡沫)催化剂的结构化ZSM-5的气相传输(VPT)修饰。 0.5μmTPaOh的最佳前体浓度可以有效地将无定形铝硅酸盐粘合剂转化为沸石相,通过改进的肠内孔,纳米晶体(约100nm),高浓度的酸性位点(83mmol g(-1))以及高值相对酸度(0.7)。结合宏观SiC泡沫的固有性质,例如低压下降和高导热率(14W m(-1)K-1,TPAOH VPT改性ZSM-5 / SiC泡沫催化剂表现出优异的活性在催化甲醇 - 丙烯(MTP)反应中,超过最先进的等级ZSM-5整料催化剂。催化剂显示了CA的扩展活性。 970 H(& 95%甲醇转化),对丙烯的选择性高(& 45%)。由于显影结构催化剂内的增强的运输现象,焦炭形成显着延迟(约1.1×10(-2)重量%H(-1))。

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