化学与生物工程
化學與生物工程
화학여생물공정
CHEMISTRY & BIOENGINEERING
2015年
2期
53-56
,共4页
高雨%贾志奇%李彦龙%赵永祥
高雨%賈誌奇%李彥龍%趙永祥
고우%가지기%리언룡%조영상
锡掺杂PHTS催化剂(Sn-PHTS)%1,4-丁二醇%酯化反应%水热合成%催化
錫摻雜PHTS催化劑(Sn-PHTS)%1,4-丁二醇%酯化反應%水熱閤成%催化
석참잡PHTS최화제(Sn-PHTS)%1,4-정이순%지화반응%수열합성%최화
tin-doped PHTS catalyst(Sn-PHTS)%1,4-butanediol%esterification%hydrothermal synthesis%ca-talysis
在低酸度溶液中,以三嵌段非离子表面活性剂 P123为模板剂,采用水热合成法制备锡掺杂 PHTS 催化剂(Sn-PHTS),采用 XRD、TEM、N2吸附-脱附、NH3-TPD 和 FTIR 等手段对其进行表征,并考察了 Sn-PHTS 催化1,4-丁二醇酯化的性能。结果表明,Sn-PHTS 催化剂具有有序的六方晶相结构,随着锡含量的增加,其比表面积、孔容、孔径变化较小,酸性逐渐减小;在 催 化1,4-丁二醇和醋酸的酯化反应中,3Sn-PHTS 表现出更高的催化活性,单酯收率达46·8%。
在低痠度溶液中,以三嵌段非離子錶麵活性劑 P123為模闆劑,採用水熱閤成法製備錫摻雜 PHTS 催化劑(Sn-PHTS),採用 XRD、TEM、N2吸附-脫附、NH3-TPD 和 FTIR 等手段對其進行錶徵,併攷察瞭 Sn-PHTS 催化1,4-丁二醇酯化的性能。結果錶明,Sn-PHTS 催化劑具有有序的六方晶相結構,隨著錫含量的增加,其比錶麵積、孔容、孔徑變化較小,痠性逐漸減小;在 催 化1,4-丁二醇和醋痠的酯化反應中,3Sn-PHTS 錶現齣更高的催化活性,單酯收率達46·8%。
재저산도용액중,이삼감단비리자표면활성제 P123위모판제,채용수열합성법제비석참잡 PHTS 최화제(Sn-PHTS),채용 XRD、TEM、N2흡부-탈부、NH3-TPD 화 FTIR 등수단대기진행표정,병고찰료 Sn-PHTS 최화1,4-정이순지화적성능。결과표명,Sn-PHTS 최화제구유유서적륙방정상결구,수착석함량적증가,기비표면적、공용、공경변화교소,산성축점감소;재 최 화1,4-정이순화작산적지화반응중,3Sn-PHTS 표현출경고적최화활성,단지수솔체46·8%。
Sn-PHTS Catalysts were synthesized by hydrothermal synthesis method in solution with low a-cidity using non-ionic surfactant P123 as template.All samples were characterized by XRD,TEM,N2 adsorption-desorption isotherms,NH3-TPD and FTIR spectra.The catalytic properties of Sn-PHTS for 1,4-butanediol es-terification were studied.The results showed that,Sn-PHTS possessed well-ordered hexagonal mesostructure;with the increasing of tin content,the acidity of Sn-PHTS reduced,while the specific surface area,the pore vol-ume and pore size almost kept the same.In the esterification of 1,4-butanediol and acetic acid,3Sn-PHTS showed higher catalytic activities,the yield of 1,4-butanediol monoacetate was 46·8%.