催化学报
催化學報
최화학보
CHINESE JOURNAL OF CATALYSIS
2009年
10期
1035-1040
,共6页
于素霞%杨建华%初乃波%李刚%鲁金明%王金渠
于素霞%楊建華%初迺波%李剛%魯金明%王金渠
우소하%양건화%초내파%리강%로금명%왕금거
多级结构%ZSM-5沸石%水热晶化%碳纳米管%钼催化剂%甲烷%无氧脱氢芳构化
多級結構%ZSM-5沸石%水熱晶化%碳納米管%鉬催化劑%甲烷%無氧脫氫芳構化
다급결구%ZSM-5비석%수열정화%탄납미관%목최화제%갑완%무양탈경방구화
hierarchical structure%ZSM-5 zeolite%hydrothermal synthesis%carbon nanotube%molybdenum catalyst%methane%dehydroaromatization
以经盐酸预处理的碳纳米管为第二模板,在不添加其它有机溶剂的情况下,仅通过控制晶化条件,即采用变温水热晶化法合成具有多级结构的ZSM-5分子筛.通过x射线衍射、红外光谱测试、透射电镜和N2吸附对合成的分子筛进行了表征,结果表明,该合成分子筛呈近球形,是由纳米棒自组装形成的具有多级结构的亚微米球.该分子筛改性后用于甲烷无氧脱氢芳构化反应,显示出良好的催化性能,甲烷转化率最初达到19%,反应至24 h时甲烷转化率仍保持在10%左右,并且保持了较高的芳香物选择性(达到50%以上).
以經鹽痠預處理的碳納米管為第二模闆,在不添加其它有機溶劑的情況下,僅通過控製晶化條件,即採用變溫水熱晶化法閤成具有多級結構的ZSM-5分子篩.通過x射線衍射、紅外光譜測試、透射電鏡和N2吸附對閤成的分子篩進行瞭錶徵,結果錶明,該閤成分子篩呈近毬形,是由納米棒自組裝形成的具有多級結構的亞微米毬.該分子篩改性後用于甲烷無氧脫氫芳構化反應,顯示齣良好的催化性能,甲烷轉化率最初達到19%,反應至24 h時甲烷轉化率仍保持在10%左右,併且保持瞭較高的芳香物選擇性(達到50%以上).
이경염산예처리적탄납미관위제이모판,재불첨가기타유궤용제적정황하,부통과공제정화조건,즉채용변온수열정화법합성구유다급결구적ZSM-5분자사.통과x사선연사、홍외광보측시、투사전경화N2흡부대합성적분자사진행료표정,결과표명,해합성분자사정근구형,시유납미봉자조장형성적구유다급결구적아미미구.해분자사개성후용우갑완무양탈경방구화반응,현시출량호적최화성능,갑완전화솔최초체도19%,반응지24 h시갑완전화솔잉보지재10%좌우,병차보지료교고적방향물선택성(체도50%이상).
A hierarchical spherical-like ZSM-5 zeolite was synthesized using multiwall carbon nanotubes as secondary template. First, the nanotubes were purified by reflux with concentrated hydrochloric acid for 24 h. This purification step was repeated until the hydrochloric acid was no longer colored by impurities from the nanotubes (typically 3-4 times). Then the disposed nanotubes were added into the synthesis solution of ZSM-5, which was obtained by mixing H_2O, tetraethylorthosilicate, Al(C_3H_8O)_3, and tetrapropylammonium hydroxide (TPAOH). Afterward, this mixture was subjected to crystallization at varying temperatures. The obtained products were characterized by X-ray diffraction, Fourier transform infrared spectroscopy, transmission electron microscopy, and nitrogen adsorption analysis. The results indicated that ZSM-5 zeolite with uniform size of 300-400 nm was synthesized, and it was spherical-like aggregates and has hierarchical structure constructed by many ZSM-5 nanotubes of 20-40 nm. The hierarchical ZSM-5 zeolite was modified to form a Mo/HZSM-5 catalyst, and its catalytic performance for methane dehydroaromatization was investigated. The modified Mo/HZSM-5 catalyst exhibited CH_4 conversion as high as 19% and better life time. The CH_4 conversion was kept at 10% even when the reaction time was 24 h. It is suggested that hierarchical structure was favorable for the enhancement of catalyst performance, which is due to the presence of both micropores and mesopores.