化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2013年
9期
2143-2149
,共7页
郭敏%潘大海%贺敏%王小燕%李瑞丰
郭敏%潘大海%賀敏%王小燕%李瑞豐
곽민%반대해%하민%왕소연%리서봉
铬%孔材料%制备%催化剂
鉻%孔材料%製備%催化劑
락%공재료%제비%최화제
chromium%porous materials%synthesis%catalyst
负载型铬基催化材料不仅可显著提高铬活性组分的分散度并保留其多价态性,同时兼具多孔载体材料固有的孔结构、强酸性及优异的分子扩散性能,从而表现出良好的催化活性,并作为一类重要的催化剂有效应用于多种催化过程。本文详细阐述了目前负载型铬基催化剂在制备方法及催化应用方面的研究进展,并就合成方法、载体性质、金属前体及助剂等因素对铬物种引入量、分散程度及配位状态的影响以及进而造成对催化剂孔道结构、反应活性及使用寿命的影响进行了详尽地评述。同时指出了通过改变载体的表面酸性、孔结构及其与活性组分铬物种间的相互作用,从而提高铬物种在载体中的分散度和稳定性是今后负载型铬基催化材料研究的重要方向。
負載型鉻基催化材料不僅可顯著提高鉻活性組分的分散度併保留其多價態性,同時兼具多孔載體材料固有的孔結構、彊痠性及優異的分子擴散性能,從而錶現齣良好的催化活性,併作為一類重要的催化劑有效應用于多種催化過程。本文詳細闡述瞭目前負載型鉻基催化劑在製備方法及催化應用方麵的研究進展,併就閤成方法、載體性質、金屬前體及助劑等因素對鉻物種引入量、分散程度及配位狀態的影響以及進而造成對催化劑孔道結構、反應活性及使用壽命的影響進行瞭詳儘地評述。同時指齣瞭通過改變載體的錶麵痠性、孔結構及其與活性組分鉻物種間的相互作用,從而提高鉻物種在載體中的分散度和穩定性是今後負載型鉻基催化材料研究的重要方嚮。
부재형락기최화재료불부가현저제고락활성조분적분산도병보류기다개태성,동시겸구다공재체재료고유적공결구、강산성급우이적분자확산성능,종이표현출량호적최화활성,병작위일류중요적최화제유효응용우다충최화과정。본문상세천술료목전부재형락기최화제재제비방법급최화응용방면적연구진전,병취합성방법、재체성질、금속전체급조제등인소대락물충인입량、분산정도급배위상태적영향이급진이조성대최화제공도결구、반응활성급사용수명적영향진행료상진지평술。동시지출료통과개변재체적표면산성、공결구급기여활성조분락물충간적상호작용,종이제고락물충재재체중적분산도화은정성시금후부재형락기최화재료연구적중요방향。
Supporting chromium onto carriers (porous materials) not only can remarkably improve the dispersion of chromium active sites and retain their oxidation states,but also make supported chromium-based catalysts show the inherent advantages of the carrier materials in the pore structure,strong acidity and excellent performance of molecular diffusion. As a result,supported Cr-based catalysts usually exhibit relative higher catalytic activity and are effectively applied in various catalytic processes. In this paper,the recent progress in synthetic methods and main applications of supported Cr-based catalysts are reviewed. Meanwhile,the influences of synthetic methods,the properties of carriers,metal precursors and additives on the amount,the dispersion degree and the coordination state of chromium species,and thus the pore structure,the catalytic properties and lifetime of supported Cr-based catalysts are discussed in detailed. In addition,it can be seen that there is an important research prospect in the future for supported Cr-based catalysts in adjusting the pore structure and surface acidity of carriers and the interactions between carriers and chromium active species to enhance the dispersion and the stability of chromium species existed in the carriers.