林产化学与工业
林產化學與工業
림산화학여공업
CHEMISTRY AND INDUSTRY OF FOREST PRODUCTS
2010年
1期
63-66
,共4页
张金龙%芮果%葛圣才%王鹏翔%张佩祥
張金龍%芮果%葛聖纔%王鵬翔%張珮祥
장금룡%예과%갈골재%왕붕상%장패상
钯炭催化剂%歧化松香%活性炭%预处理
鈀炭催化劑%歧化鬆香%活性炭%預處理
파탄최화제%기화송향%활성탄%예처리
Pd/C catalyst%disproportionated rosin%activated carbon%pretreatment
用浸渍-还原法制备了一系列Pd/C催化剂,并应用于马尾松松香歧化反应.研究了活性炭粒径大小、载体预处理、还原条件等因素对Pd/C催化剂活性的影响.结果表明:用10% H_2O_2和1%强氧化物G的复合氧化剂对椰壳活性炭(粒径150 ~ 250μm)进行预处理,制得的Pd/C催化剂,可以使钯利用率达到96.4%,去氢枞酸高达68.4%.通过X射线光电子能谱(XSP)测定Pd/C中钯化合价的分布.甲醛过量1倍时,有44.4%Pd~(2+)被还原成金属钯,且有24.9%的Pd~(4+)生成.通过优化条件所制备的Pd/C催化剂活性明显高于其它厂家同类催化剂活性,并已应用于工业化生产.
用浸漬-還原法製備瞭一繫列Pd/C催化劑,併應用于馬尾鬆鬆香歧化反應.研究瞭活性炭粒徑大小、載體預處理、還原條件等因素對Pd/C催化劑活性的影響.結果錶明:用10% H_2O_2和1%彊氧化物G的複閤氧化劑對椰殼活性炭(粒徑150 ~ 250μm)進行預處理,製得的Pd/C催化劑,可以使鈀利用率達到96.4%,去氫樅痠高達68.4%.通過X射線光電子能譜(XSP)測定Pd/C中鈀化閤價的分佈.甲醛過量1倍時,有44.4%Pd~(2+)被還原成金屬鈀,且有24.9%的Pd~(4+)生成.通過優化條件所製備的Pd/C催化劑活性明顯高于其它廠傢同類催化劑活性,併已應用于工業化生產.
용침지-환원법제비료일계렬Pd/C최화제,병응용우마미송송향기화반응.연구료활성탄립경대소、재체예처리、환원조건등인소대Pd/C최화제활성적영향.결과표명:용10% H_2O_2화1%강양화물G적복합양화제대야각활성탄(립경150 ~ 250μm)진행예처리,제득적Pd/C최화제,가이사파이용솔체도96.4%,거경종산고체68.4%.통과X사선광전자능보(XSP)측정Pd/C중파화합개적분포.갑철과량1배시,유44.4%Pd~(2+)피환원성금속파,차유24.9%적Pd~(4+)생성.통과우화조건소제비적Pd/C최화제활성명현고우기타엄가동류최화제활성,병이응용우공업화생산.
A series of Pd/C catalysts were prepared by impregnation-reduction method, and used for the disproportionation of Masson′s pine rosin. Factors influencing Pd/C catalytic activity such as particle size, carrier pretreatment and reduction condition were studied. Results showed that the Pd/C catalyst prepard from activated carbon(AC) treated with complex oxidants(10% H_2O_2 and 1% oxidant G )can increase the utilization rate of palladium up to 96.4% and dehydroabietic acid up to 68.4%.Through X-ray photoelectron spectroscopy(XPS), the distribution of valency of Pd in Pd/C were investigated. When HCHO amount exceeded one fold, about 44.4% Pd~(2+) was reduced to metallic Pd with the formation of 24.9% Pd~(4+) found in Pd/C catalyst. The activity of catalyst prepared under the optimized experiment conditions:obviously exceeds counterparts of other companies. Furthermore, this catalyst has been produced industrially.