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Bromate catalytic reduction in continuous mode using metal catalysts supported on monoliths coated with carbon nanofibers

机译:使用负载在碳纳米纤维涂层整料上的金属催化剂以连续模式进行溴酸盐催化还原

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摘要

Nitrogen-doped and un-doped carbon nanofibers layers, denoted as N-CNFs and CNFs respectively, coating the walls of cordierite monoliths have been used as support for Pd and Ru catalyst. They have been tested in bromate reduction in batch and continuous operation employing different reactor configurations. The CNF/monolith catalysts were benchmarked with Pd catalyst on CNF coated on another structured support, namely sintered metal fibers. CNF/monolith is a robust, active and stable catalyst for bromate reduction. The catalyst shows stable performance when operating in monolithic reactor and the CNFs showed excellent attachment to the monolith. The comparison of intrinsic activity of catalysts in batch experiments (free of diffusional limitations) revealed that Pd supported on CNF/monolith exhibited higher intrinsic activity than Pd on CNF/SMFs. Pd metal showed significantly higher specific activity than Ru. The doping of CNF with nitrogen, although contribute to decrease reoxidation propensity of metal does not supplies higher activity in bromate reduction.
机译:涂覆堇青石整料壁的氮掺杂和非掺杂碳纳米纤维层分别表示为N-CNF和CNF,已经用作Pd和Ru催化剂的载体。已对它们采用不同的反应器配置进行批量减少溴酸盐和连续运行的测试。用涂覆在另一种结构化载体即烧结金属纤维上的CNF上的Pd催化剂对CNF /整体催化剂进行基准测试。 CNF /整料是用于溴酸盐还原的稳健,活性和稳定的催化剂。当在整体反应器中操作时,催化剂表现出稳定的性能,而CNF显示出与整体的优异附着性。批量实验中催化剂固有活性的比较(没有扩散限制)表明,负载在CNF /整体材料上的Pd的内在活性高于在CNF / SMFs上的Pd。钯金属的比活度明显高于钌。用氮掺杂CNF,虽然有助于降低金属的再氧化倾向,但在溴酸盐的还原中不能提供更高的活性。

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