水合磷酸铁铵的低热固相合成及其对乙酸丁酯的催化作用  被引量:2

Synthesis of Ammonium Ferric Phosphate Hydrate by Solid State Reaction and Its Catalysis Effect to Butyl Acetate

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作  者:田晓珍[1] 廖森[1] 吴昆[1] 陈智鹏[1] 

机构地区:[1]广西大学化学化工学院,广西南宁530004

出  处:《广西科学》2008年第2期166-169,共4页Guangxi Sciences

基  金:教育部科研重点项目(205120);广西科学基金项目(桂科基0575006);广西测试基金项目(2006年)资助

摘  要:以Fe2(SO4)3与NH4H2PO4·12H2O为原料,PEG-400为表面活性剂,经低热固相反应合成得到水合磷酸铁铵,经XRD分析表征确定其分子式为Fe3(NH4)(PO3(OH)0.666O0.333)3(PO2(OH)2)3(H2O)6Fe3H23.998NO29.997P6后,用其作为催化剂进行乙酸丁酯的合成试验。试验应用均匀设计试验法及数据挖掘技术,在数据挖掘成果的指导下考察反应时间、醇酸物质的量比及催化剂用量等因素对收率的影响。获得催化反应的最佳工艺条件是反应时间6h,醇酸物质的量比1.56∶1,催化剂用量1.73g。在这个最优的工艺条件下,水合磷酸铁铵催化合成乙酸丁酯的收率可达到98.6%。水合磷酸氢铁铵不仅合成工艺简单,可行,而且作为乙酸丁酯的催化剂时,具有良好的催化活性,工业应用潜质大。Ammonium ferric phosphate hydrate was prepared with Fe2 (SO4)3 and NH4H2PO4 · 12H2O as raw materials via solid state reaction at room temperature and PEG-400 as surfactant. The characteristics results of XRD indicated that the molecular formula of the product was Fe3 (NH4)(PO3 ( OH)0. 666 O0.333 )3 (PO2 (OH)2 )3 (H2O)6 Fe3H33.998 NO29. 997 P6. Synthesis experiments of butyl acetate were done used ammonium ferric phosphate hydrate as catalyzer, and application of uniform experimental design as well as data mining technology were applied in the experiments to study effect of the test factors to yield and to obtain the optimal technical conditions of the experiments, which the test factors were reaction time, molar ratio of alcohol to acid and amount of catalyzer. The results of catalysis tests showed that ammonium ferric phosphate hydrate had good catalysis activity, the optimal technical conditions were :reaction time 6h,molar ratio of alcohol to acid 1.56 : 1 ,amount of catalyzer 1.73g,and the reaction yield was 98.6% at the optimal technical conditions. The work of this paper showed that ammonium ferric phosphate hydrate had potential for industry application because it was not only feasible and simple in synthesis technics, but also had good catalysis activity for synthesis of butyl acetate.

关 键 词:水合磷酸铁铵 乙酸丁酯 固相反应 数据挖掘技术 

分 类 号:TQ126.35[化学工程—无机化工]

 

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