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Deactivation of vanadia-based commercial SCR catalysts by polyphosphoric acids

机译:多磷酸使基于钒的商用SCR催化剂失活

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摘要

Commercial vanadia-based SCR monoliths have been exposed to flue gases in a pilot-scale setup into which phosphoric acid has been added and the deactivation has been followed during the exposure time. Separate measurements by SMPS showed that the phosphoric acid formed polyphosphoric acid aerosols, which were characterized by particle number concentrations in the order of 1 x 10~(14) #/m~3 at 350 °C and diameters <0.1 μm. Three full-length monoliths have been exposed to flue gases doped with 10, 100 and 1000 ppmv H3PO4 for 819, 38 and 24 h, respectively. At the end of the exposure the relative activities were equal to 65, 42 and 0%, respectively. After exposure, samples of the spent monoliths have been characterized by ICP-OES, Hg-porosimetry, SEM-EDX and in situ EPR. The results showed that the polyphosphoric acids chemically deactivate the vanadia-based catalysts by decreasing the redox properties of the catalyst surface and by titrating the number of V(V) active species. When plate-shaped commercial catalysts have been wet impregnated with different aqueous solutions of H3PO4 obtaining P/V ratios in the range 1.5-5, the relative activity for the doped catalysts in the whole P/V range was 0.85-0.90 at 350 °C. These results show that the presence of phosphor compounds in the flue gas may be much more harmful than indicated by simple wet chemical impregnation by phosphoric acid. The reason has been found in the nature of the polyphosphoric acid aerosol formed in the combustion process, which cannot be reproduced by the wet impregnation process.
机译:商业化的基于钒的SCR整料已在中试规模的装置中暴露于烟道气,在装置中添加了磷酸,并在暴露时间内进行了失活。 SMPS的单独测量表明,磷酸形成了多磷酸气溶胶,其特征是在350°C且直径<0.1μm时,颗粒数浓度约为1 x 10〜(14)#/ m〜3。三个全长整料已分别暴露于掺有10、100和1000 ppmv H3PO4的烟气中819、38和24 h。在暴露结束时,相对活性分别等于65%,42%和0%。暴露后,用ICP-OES,Hg孔隙率法,SEM-EDX和原位EPR对废料的样品进行了表征。结果表明,多磷酸通过降低催化剂表面的氧化还原特性和滴定V(V)活性物种的数量来化学灭活基于钒的催化剂。当将板状市售催化剂用不同的H3PO4水溶液湿法浸渍以获得P / V比为1.5-5时,在350°C下整个P / V范围内掺杂催化剂的相对活性为0.85-0.90 。这些结果表明,烟道气中磷化合物的存在可能比用磷酸进行简单的湿式化学浸渍所表明的有害得多。已经发现在燃烧过程中形成的多磷酸气溶胶的性质的原因,其不能通过湿式浸渍过程复制。

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