采用Hβ沸石为载体,以Ni为主剂,分别以P、Mg、La为助剂合成了FCC汽油加氢改质双功能催化剂。考察了采用不同热处理方式脱模板剂对Naβ沸石载体的影响,以及助剂种类和助剂含量对双功能催化剂性能的影响。结果表明,采用阶段焙烧法脱模板...采用Hβ沸石为载体,以Ni为主剂,分别以P、Mg、La为助剂合成了FCC汽油加氢改质双功能催化剂。考察了采用不同热处理方式脱模板剂对Naβ沸石载体的影响,以及助剂种类和助剂含量对双功能催化剂性能的影响。结果表明,采用阶段焙烧法脱模板剂可以有效的抑制分子筛脱铝,更好的保持分子筛原始结晶态和比表面积;在FCC汽油加氢改质反应中,加入0.25%磷改性后的Ni P β催化剂,有效的降低了汽油中的烯烃含量,使烯烃转化率达到65%,并保证汽油的辛烷值基本不降低。展开更多
Metal-organic frameworks(MOFs) are important functional materials. MOF-5(IL)(Zn4O(BDC)3(BDC=1,4-benzenedicarboxylate) was in situ synthesized by the electrochemical method using a tunable ionic liquid(IL), ...Metal-organic frameworks(MOFs) are important functional materials. MOF-5(IL)(Zn4O(BDC)3(BDC=1,4-benzenedicarboxylate) was in situ synthesized by the electrochemical method using a tunable ionic liquid(IL), 1-butyl-3-methylimidazolium chloride, as template. The crystallization of distinctly spherical MOF-5(IL) synthsized in ionic liquid by the electrochemical method is attributed to π-π stacking effect, ionic bond, and coordination bond. The analysis results show that the product MOF-5(IL) exhibits better crystallinity and higher thermal stability than MOF-5 generated using the solvothermal method. The cyclic voltammetry reveals that the electrosynthesis reaction is irreversible and controlled by the diffusion. The experiments on methylorange degradation show that the unique structure characteristics of MOF-5(IL) can enhance the photocatalytic ability of Bi OBr. Therefore, MOFs can replace noble metals to improve the photocatalytic properties of bismuth oxyhalide.展开更多
文摘采用Hβ沸石为载体,以Ni为主剂,分别以P、Mg、La为助剂合成了FCC汽油加氢改质双功能催化剂。考察了采用不同热处理方式脱模板剂对Naβ沸石载体的影响,以及助剂种类和助剂含量对双功能催化剂性能的影响。结果表明,采用阶段焙烧法脱模板剂可以有效的抑制分子筛脱铝,更好的保持分子筛原始结晶态和比表面积;在FCC汽油加氢改质反应中,加入0.25%磷改性后的Ni P β催化剂,有效的降低了汽油中的烯烃含量,使烯烃转化率达到65%,并保证汽油的辛烷值基本不降低。
基金Project(U1261103)jointly supported by the National Natural Science Foundation of China and Shenhua Group Corp
文摘Metal-organic frameworks(MOFs) are important functional materials. MOF-5(IL)(Zn4O(BDC)3(BDC=1,4-benzenedicarboxylate) was in situ synthesized by the electrochemical method using a tunable ionic liquid(IL), 1-butyl-3-methylimidazolium chloride, as template. The crystallization of distinctly spherical MOF-5(IL) synthsized in ionic liquid by the electrochemical method is attributed to π-π stacking effect, ionic bond, and coordination bond. The analysis results show that the product MOF-5(IL) exhibits better crystallinity and higher thermal stability than MOF-5 generated using the solvothermal method. The cyclic voltammetry reveals that the electrosynthesis reaction is irreversible and controlled by the diffusion. The experiments on methylorange degradation show that the unique structure characteristics of MOF-5(IL) can enhance the photocatalytic ability of Bi OBr. Therefore, MOFs can replace noble metals to improve the photocatalytic properties of bismuth oxyhalide.