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1.
吗啡啉碱性离子液体催化合成油酸甲酯   总被引:3,自引:0,他引:3  
采用两步法合成了由阳离子N-甲基-N-丁基吗啡啉和阴离子氢氧根搭配的[Nbmm]OH新型碱性离子液体。实验利用FT-IR、元素分析和TGA分别对该离子液体的化学结构和热稳定性进行了表征。结果表明,该离子液体的热稳定性超过200℃。对该离子液体的溶解性能进行了考察, 结果表明,该离子液体能与强极性溶剂互溶,而且其水溶液的碱性较强。为了考察该离子液体对酯化反应的催化活性,实验过程中以油酸和甲醇反应生成油酸甲酯的酯化反应为模型反应,评价该离子液体的催化活性。结果表明,当反应温度60℃、酸醇比为1:6、离子液体加入量为原料总质量的15%、反应10 h时,油酸转化率达93.9%,而且该离子液体易于从反应体系中分离,可以循环使用。  相似文献   

2.
双核离子液体的合成及其对酯化反应的催化活性   总被引:1,自引:0,他引:1  
赵地顺  刘猛帅  葛京京  张娟  任培兵 《有机化学》2012,32(12):2382-2389
合成了双-(3-甲基-1-咪唑)亚丁基双对甲苯磺酸盐(Im-PTSA)、双-(3-甲基-1-咪唑)亚丁基双硫酸氢盐(Im-HSO4)、双-(1-吡啶)亚丁基双对甲苯磺酸盐(Py-PTSA)、双-(1-吡啶)亚丁基双硫酸氢盐(Py-HSO4)等4种功能化双核离子液体.分别采用红外光谱(FT-IR)、核磁共振氢谱(1H NMR)对合成的离子液体进行结构分析;采用热重(TG)测试了离子液体的热稳定性;此外,考察了离子液体的酸性和溶解性.以丁二酸和乙醇的酯化反应考察了4种离子液体的催化活性,结果表明:当n(C4H6O4)∶n(C2H5OH)=1∶3,催化剂Im-PTSA量占总质量的1.90%,反应温度70℃,反应时间2.5 h,酯收率可达93.6%,选择性达100%,且离子液体经真空干燥重复使用8次,催化活性没有明显降低.以奥氏体316 L不锈钢为试样,考察了双核功能化离子液体的腐蚀性,与浓硫酸进行对比,其对钢试样的腐蚀率不到浓硫酸的1/10.以双-(3-甲基-1-咪唑)亚丁基双对甲苯磺酸盐(Im-PTSA)为催化剂,考察了一元有机酸和二元有机酸与系列醇的酯化反应,均获得较高的酯收率和选择性,反应结束后产品与催化剂自动分层,简化了分离,有望成为一种具有发展潜力的酯化催化剂.  相似文献   

3.
双核碱性离子液体催化棉籽油酯交换制备生物柴油   总被引:14,自引:2,他引:12  
采用两步法制备了五种新型咪唑类碱性双核功能化离子液体化合物,并考察了对棉籽油酯交换制备生物柴油的催化性能。结果表明,咪唑类碱性双核功能化离子液体具有很好的催化活性,其催化活性与阳离子中碳链长度有关。其中,双-(3-甲基-1-咪唑)亚乙基双氢氧化物离子液体的催化活性最好。催化剂量、反应时间、反应温度及醇油比对生物柴油中脂肪酸甲酯含量及选择性影响的研究发现,在催化剂用量为0.4%(质量分数),醇油摩尔比为12,反应温度为55℃,反应时间为4 h时,脂肪酸甲酯的含量和选择性分别达98.5%和99.9%。催化剂7次循环后,产物中脂肪酸甲酯含量仍达到96.2%,单甘酯和双甘酯的含量很少,表明该催化剂重复使用良好。  相似文献   

4.
两步法合成了吗啉阴离子型碱性离子液体1-丁基-3-甲基吗啉盐[Hnmm]Im,经1 H-NMR和FT-IR分析确认了离子液体中间体的结构,并通过阴离子交换得到碱性离子液体,对该离子液体在酯交换制备生物柴油反应中的催化性能进行了研究。结果表明,该碱性离子液体[Hnmm]Im具有较高的酯交换催化活性,在60℃、催化剂用量为3%、醇油物质的量比为6.5∶1.0、反应2 h的条件下,产物脂肪酸甲酯(FAME)含量可达95.80%。而且该离子液体的催化稳定性较好,重复使用5次后仍有较高的催化活性。  相似文献   

5.
新型碱性离子液体催化酯交换合成生物柴油   总被引:5,自引:0,他引:5  
两步法合成了吗啉阴离子型碱性离子液体1-丁基-3-甲基吗啉盐Im,经 1H-NMR和FT-IR分析确认了离子液体中间体的结构,并通过阴离子交换得到碱性离子液体,对该离子液体在酯交换制备生物柴油反应中的催化性能进行了研究。结果表明,该碱性离子液体Im具有较高的酯交换催化活性,在60 ℃、催化剂用量为3%、醇油物质的量比为6.5:1.0、反应2 h的条件下,产物脂肪酸甲酯(FAME)含量可达95.80%。而且该离子液体的催化稳定性较好,重复使用5次后仍有较高的催化活性。  相似文献   

6.
采用不同硅铝比的MCM-41负载离子液体,制备得到一系列负载型双酸位催化剂,并用XRD、FTIR、N2-吸脱附、热重分析及TEM对其进行表征,以大豆油与甲醇的酯交换反应为探针实验考察了其催化活性.结果表明,离子液体成功固载于介孔分子筛并能保持其介孔结构,且在酯交换反应中表现出良好的反应活性.在ILs负载量为30%,醇油物质的量的比为36:1,140 ℃下反应5 h,生物柴油收率在90%以上;而分子筛中Al的引入为活性组分离子液体构建了有益的酸环境,促进了其催化活性的提高;与均相离子液体相比,负载型催化剂又能明显提高生物柴油的收率,且回收利用4次后,生物柴油收率仍接近88%.  相似文献   

7.
合成并表征了4种具有Brnsted酸性的磺酸功能化咪唑类离子液体催化剂,考察了其在催化苯酚、甲醛合成双酚F反应中的催化活性.结果表明磺酸功能化双核离子液体双-(3-磺酸丙基-1-咪唑)亚丁基硫酸氢盐([DPSIM][HSO4]2)不仅催化活性最佳,还提高了4,4’-双酚F异构体的含量.以[DPSIM][HSO4]2为催化剂,在苯酚与甲醛摩尔比30∶1、离子液体催化剂质量浓度6.8%、反应温度90℃、反应时间60 min的优化条件下,双酚F收率可达94.1%,同时提出了其催化合成双酚F的反应机理.该离子液体催化剂腐蚀性低,易分离回收,在重复使用6次后,双酚F收率仍在70%以上.  相似文献   

8.
碱性离子液体催化的Claisen-Schmidt缩合反应   总被引:1,自引:0,他引:1  
王媛媛  宫欣欣  戴立益 《有机化学》2009,29(9):1470-1473
合成了6种以N-甲基咪唑为基体的碱性离子液体, 以其作为催化剂, 在无溶剂条件下, 成功催化了Claisen-Schmidt缩合反应. 采用Hammett指示剂法对碱性离子液体的碱性强度和碱量进行表征. 实验结果表明, 此系列碱性离子液体对Claisen-Schmidt缩合反应具有较高的催化活性, 反应条件温和, 产物产率较高, 离子液体经简单处理后可多次循环使用, 催化活性未见明显降低.  相似文献   

9.
Brφnsted酸性离子液体催化合成长链脂肪酸甲酯   总被引:2,自引:0,他引:2  
本文合成了以1-丁基-3-甲基咪唑为阳离子,HSO4-、H2PO4-和BF4-为阴离子的Brφnsted酸性离子液体,并以长链脂肪酸与甲醇的酯化反应考察了这些Brφnsted酸性离子液体的催化性能。实验结果表明,1-丁基-3-甲基咪唑硫酸氢根鎓盐([bmim][HSO4])离子液体具有很高的催化活性,当n(醇)∶n(酸)∶n(离子液体)=6∶1∶0.25,反应温度为70℃,不分水酯化反应2h,长链脂肪酸甲酯的产率可达到93.4%以上,选择性达到100%;且产物酯与离子液体分离容易;离子液体经干燥处理后可以循环使用5次以上,催化活性没有明显降低。  相似文献   

10.
采用不同硅铝比的MCM-41负载离子液体,制备得到一系列负载型双酸位催化剂,并用XRD、FTIR、N2-吸脱附、热重分析及TEM对其进行表征,以大豆油与甲醇的酯交换反应为探针实验考察了其催化活性。结果表明,离子液体成功固载于介孔分子筛并能保持其介孔结构,且在酯交换反应中表现出良好的反应活性。在ILs负载量为30%,醇油物质的量的比为36:1,140℃下反应5h,生物柴油收率在90%以上;而分子筛中Al的引入为活性组分离子液体构建了有益的酸环境,促进了其催化活性的提高;与均相离子液体相比,负载型催化剂又能明显提高生物柴油的收率,且回收利用4次后,生物柴油收率仍接近88%。  相似文献   

11.
Micronized CaO with pores was synthesized by calcining the reaction product CaCO3 from NH4HCO3 and Ca(OH)2. Scanning electron microscopy, X‐ray diffraction, energy dispersive X‐ray spectroscopy, X‐ray fluorescence, Fourier transform infrared spectroscopy, and Brunauer–Emmett–Teller analysis were used to characterize CaO, which confirmed that after calcining at 800°C for 2 hr, CaCO3 was completely converted into porous micronized CaO with a surface area of about 7.295 m2/g and a particle size of 0.5–1.5 μm. The porous CaO microparticles were used as heterogeneous catalysts for producing biodiesel from transesterification of soybean oil and methanol. The influences of reaction time, calcined temperature, and reusability of CaO were explored. The experiments showed that CaO has high catalytic activity for transesterification reaction, and the yield of biodiesel reaches more than 98% under the conditions of methanol/oil mole ratio of 9, and the catalyst amount (catalyst/oil) of 3% after reaction for 2.5 hr. The CaO catalyst can be recycled easily and it also has the advantage of low pollution. Simple synthetic route, low cost, high catalytic activity, good reusability, and great potential for industrialization are the advantages of the porous micronized CaO catalyst that was proposed in this work.  相似文献   

12.
袁冰  张新  侯万国 《化学研究》2011,22(6):25-28
采用共沉淀法制备了不同锂-铝比[n(Li)/n(Al)]的Li-Al类水滑石,经不同温度下焙烧得到复合氧化物;将复合氧化物作为大豆油与甲醇反应制备生物柴油的催化剂,考察了其对大豆油酯交换反应的催化性能.结果表明,n(Li)/n(Al)=13的类水滑石在400℃下焙烧得到的复合氧化物对大豆油酯交换反应具有极高的催化活性....  相似文献   

13.
Production of alternative fuels, such as biodiesel, from transesterification of vegetable oil driven by heterogeneous catalysts is a promising alternative to fossil diesel. However, achieving a successful substitution for a new renewable fuel depends on several quality parameters. 1H NMR spectroscopy was used to determine the amount of methyl esters, free glycerin and acid number in the transesterification of soybean oil with methanol in the presence of hydrotalcite‐type catalyst to produce biodiesel. Reaction parameters, such as temperature and time, were used to evaluate soybean oil methyl esters rate conversion. Temperatures of 100 to 180 °C and times of 20 to 240 min were tested on a 1 : 12 molar ratio soybean oil/methanol reaction. At 180 °C/240 min conditions, a rate of 94.5 wt% of methyl esters was obtained, where free glycerin and free fatty acids were not detected. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

14.
A novel ZnO/Ca(OH)2/KF solid base catalyst was prepared by the grinding method and applied to biodiesel synthesis by the transesterification of soybean oil. The effect of various parameters such as KF molar amount, calcination temperature, the amount of catalyst, molar ratio of methanol to oil, reaction temperature, and time on the activity of the catalyst were investigated. The catalysts were characterized by several techniques of thermogravimetry/derivative thermogravimetry, X–ray diffraction, Hammett indicator method, and scanning electron microscopy. The analysis results indicated that the KF interacted with Ca(OH)2 and formed KCaF3 phase before calcination of the catalyst. The formed KCaF3 crystal phase was the main catalytic active component for the catalyst activity. In addition, the basicity of ZnO/Ca(OH)2/KF was greatly influenced by the different calcination temperates, and the catalyst activity was correlated closely with the basicity. A desired biodiesel yield of 97.6 % was obtained at catalyst amount of 3 %, methanol/oil of 12:1, and reaction time of 1.5 h at 65 °C.  相似文献   

15.
《中国化学会会志》2018,65(6):681-686
Fe3O4@Gly nanoparticles were synthetized by coprecipitation and studied in the transesterification of soybean oil and methanol to determine its performance for biodiesel synthesis. The magnetism and catalytic performance of Fe3O4@Gly alkaline catalyst were investigated in detail. With a catalyst dosage 1.5 wt %, methanol/soybean oil ratio of 15:1, reaction temperature of 65 °C, and a reaction time of 3 h, the highest yield of biodiesel was 95.8%. The strong base catalyst CaO was used as comparison, from which it was seen that Fe3O4@Gly was more hydrophobic than the former. Moreover, because of the complete dissolution of oleic acid in methanol, Fe3O4@Gly could make better contact with oleic acid, which made it perform far better than pure CaO in oleic acid. In addition, after four times recycling, the yield of biodiesel was still 86.6%. The results show that Fe3O4@Gly possesses excellent properties of acid resistance and recyclability. The catalyst can be a high‐efficiency alkaline heterogeneous catalyst for biodiesel production.  相似文献   

16.
采用共沉淀法制备了钾霞石,用于催化豆油和甲醇酯化反应,在煅烧温度1 200℃,得到单一的钾霞石物相.钾霞石表面多孔,孔径分布为0.2到1.0 μm,有利于反应物分子的内扩散和接触活性位;同时对反应温度、反应时间、催化剂用量以及催化剂Li含量进行了系统研究.反应温度120 ℃,醇油摩尔比12:1,反应时间2 min,催化...  相似文献   

17.
Egg shells were subjected to calcination–hydration–dehydration treatment to obtain CaO with high activity. The performance of CaO obtained from the calcination–hydration–dehydration treatment of egg shell and commercial CaO was tested for its catalytic activity via transesterification of waste frying oil (WFO). The results showed that the methyl ester conversion was 67.57% for commercial CaO and it was 94.52% for CaO obtained from the calcination–hydration–dehydration treatment of egg shell at a 5 wt% catalyst (based on oil weight), a methanol to oil ratio of 12:1, a reaction temperature of 65 °C and a reaction time of 1 h. The biodiesel conversion was determined by 1H Nuclear Magnetic Resonance Spectroscopy (1H NMR).  相似文献   

18.
酸性离子液体催化油酸酯化合成生物柴油   总被引:10,自引:0,他引:10  
酸性离子液体具有催化活性好、选择性高及易于回收等优点,是一种应用前景非常好的环境友好的酸性催化剂,在生物柴油合成反应中具有重大的理论意义和应用价值. 本文以油酸和甲醇为原料,探讨了7种不同酸性离子液体在生物柴油合成反应中的催化效应. 研究表明,离子液体酸性越强,催化酯化活性越高;引入磺酸基团可大大增强离子液体Brönsted酸性,使其在酯化反应中发挥溶剂/催化剂的双重作用,促进酯化反应向产物方向进行,达到高产率,因而1-丁基磺酸-3-甲基咪唑硫酸氢盐([BHSO3MIM]HSO4)催化效果最好. 此外,系统研究了[BHSO3MIM]HSO4催化油酸与甲醇酯化反应,并采用响应面法优化了反应条件. 结果发现,该反应的最适醇酸摩尔比、催化剂用量、反应温度及反应时间分别为4:1,10%(基于油酸的质量),130 ℃和4 h;在此条件下,生物柴油产率为97.7%. [BHSO3MIM]HSO4连续使用10批次后,仍能保持初始催化活性的95.6%,表现出极好的操作稳定性. 另外,利用该离子液体催化游离脂肪酸含量为72%的废油脂生产生物柴油,反应6 h可获得产率94.9%. 可见,[BHSO3MIM]HSO4在酯化生产生物柴油方面具有巨大的应用潜力.  相似文献   

19.
A catalyst based on MoO3 was synthesized by a simple and fast pilot-scale combustion reaction method and applied to the conversion of soybean oil to biodiesel via transesterification. For that, the statistical analysis of the catalyst amount and temperature, factors that influence the process, was evaluated by means of central composite design 22. MoO3 was characterized in terms of structure by X-ray diffraction (XRD), textural characterization Brunauer-Emmett-Teller (BET), density by helium pycnometry (DE), particle size analysis (DG) and acidity tests by temperature-programmed desorption of ammonia (NH3-TPD), chemical analysis by X-ray fluorescence (EDX), morphology by scanning electron microscopy (SEM) and catalytic properties. The transesterification products were characterized by gas chromatography (GC), acidity index (AI) and kinematic viscosity (KV). The results indicate the catalyst formation with a surface area of 1.36 m2g?1, and density of 4.5 g/cm3 which consists of a single crystalline phase of orthorhombic configuration, with total NH3 acidity of 33.61 μ.mol/g. Morphological characterization revealed that the catalyst is formed by irregular plates of various sizes and shapes, with a wide sizes range of agglomerated particles. In the soybean oil transesterification reactions, the catalyst was active showing 96.9% conversion to ethyl esters. The experimental design was meaningful and predictive, with a reliability level of 95%. The statistical analysis identified temperature as a significant variable for the adopted planning. To conclude, a new single-phase catalyst (α-MoO3) has been developed and successfully applied to the biodiesel Synthesis from soybean oil. These results have a positive and promising impact for biodiesel production by transesterification of soybean oil against ethanol.  相似文献   

20.
华根霉全细胞脂肪酶催化合成生物柴油   总被引:1,自引:0,他引:1  
贺芹  徐岩  滕云  王栋 《催化学报》2008,29(1):41-46
比较了5种不同商品化脂肪酶和自制的华根霉CCTCCM201021全细胞脂肪酶(RCL)催化油脂合成生物柴油的转化效果,结果表明,RCL能有效应用于无溶剂体系催化合成生物柴油.在无溶剂体系中对该酶催化生物柴油的转酯化反应工艺进行优化,考察了甲醇用量、体系含水量、酶的添加量和反应温度对生物柴油收率的影响,使生物柴油最终收率大于86.0%.在有机溶剂体系中选择不同有机溶剂作为助溶剂进行转酯化反应,发现logP值在4.0~4.5的有机溶剂具有较好的转化效果.其中以正庚烷为助溶剂的转酯化反应具有最高的生物柴油收率86.7%.在无溶剂体系中RCL催化转化油酸和模拟高酸价油脂合成脂肪酸甲酯的研究表明,该酶具有很好的催化合成生物柴油的潜力.  相似文献   

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