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Hierarchical Fe-ZSM-5/SiC foam catalyst as the foam bed catalytic reactor (FBCR) for catalytic wet peroxide oxidation (CWPO)

机译:作为催化湿过氧化物氧化的泡沫床催化反应器(FBCR)作为泡沫床催化反应器(CWPO)的等级Fe-ZSM-5 / SiC泡沫催化剂

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摘要

Structured Fe-ZSM-5 zeolite supported on silicon carbide (SiC) foam catalyst was develop and applied as the packed foam bed catalytic reactor (FBCR) to the liquid phase catalytic wet peroxide oxidation (CWPO) of phenol under flow conditions. Fe catalysts were uniformly incorporated into ZSM-5 coatings using chemical vapour deposition (CVD). Fluid flow analysis of FBCR was performed by varying liquid flow rate, showing the transition of reactor type from the plug flow reactor to the continuous stirred tank reactor at about 1 ml min(-1). Systematic investigation of CWPO within Fe-ZSM-5/SiC FBCRs identified the optimum condition of operating the FBCR (80 mm bed length) as at 60 degrees C and 1 ml min(-1) with the turnover frequency (TOF) of 95 h(-1) for phenol degradation (apparent activation energy = 3.4 kJ mol(-1)) and total organic carbon (TOC) conversion of 45.5%. It was believed that the enhanced macromixing promoted by cellular foam supports was accountable for the observed catalytic performance. The longevity of FBCR under flow conditions was also assessed, showing its good stability over 24 h, as well as the potential for practical adoption.
机译:在流动条件下,将负载碳化硅(SiC)泡沫催化剂上负载的碳化硅(SiC)泡沫催化剂的结构化泡沫催化反应器(FBCR)施加为含有填充泡沫床催化反应器(FBCR)。使用化学气相沉积(CVD)将Fe催化剂均匀地掺入ZSM-5涂层中。通过改变液体流速进行FBCR的流体流动分析,显示在约1mL min(-1)的连续搅拌釜反应器中的反应器型转变为连续搅拌釜反应器。 FE-ZSM-5 / SIC FBCR中CWPO的系统调查确定了在60℃和1mL min(-1)的60℃和1ml min(tof)的最佳条件,其周转频率为95小时(-1)酚类降解(表观活化能量= 3.4kJ摩尔(-1))和总有机碳(TOC)转化为45.5%。据信,通过细胞泡沫载体促进的增强的宏观激增是对观察到的催化性能负责。还评估了FBCR在流动条件下的寿命,显示出其24小时内的良好稳定性,以及实际采用的潜力。

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