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Synthesis of bioadditives of fuels from biodiesel-derived glycerol by esterification with acetic acid on solid catalysts

机译:在固体催化剂上用乙酸酯化由生物柴油衍生的甘油合成燃料生物添加剂

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摘要

In this paper, glycerol esterification with acetic acid (AA) was studied on several solid acid catalysts: Al2O3, Al-MCM-41, HPA/SiO2, HBEA, Amberlyst 15 and Amberlyst 36 with the aim of determining the reaction conditions and the nature of the surface acid sites required to produce selectively triacetylglycerol (triacetin). The acidity of the catalysts (nature, density and strength of acid sites) was characterized by temperature-programmed desorption of NH3 and FTIR of adsorbed pyridine. Al2O3 (Lewis acidity) did not show any activity in the reaction. In contrast, highest activity and selectivity to the triacetylated product (triacetin) were obtained on catalysts with BrOnsted acidity: Amberlyst 15 and Amberlyst 36. The effect of temperature and molar ratio of AA to glycerol was studied, and the results showed that both parameters have a significant impact on the production of the desired product. Glycerol conversion rate and selectivity to triacetin increased when temperature or AA to glycerol molar ratio were increased, reaching a triacetin yield on Amberlyst 36 of 44% at 393K and AA to glycerol molar ratio of 6. Deactivation and reusability of Amberlyst 36 were evaluated by performing consecutive catalytic tests. The presence of some irreversible deactivation due to sulfur loss was observed. In addition, the feasibility of using crude glycerol from biodiesel production as reactant was also investigated. Conversion of crude pretreated glycerol yielded values of triacetin and diacetin similar to those obtained with the commercial pure glycerol although at a lower rate.
机译:在本文中,研究了用乙酸(AA)对甘油进行酯化的几种固体酸催化剂:Al2O3,Al-MCM-41,HPA / SiO2,HBEA,Amberlyst 15和Amberlyst 36,目的是确定反应条件和性质选择性产生三乙酰甘油(三醋精)所需的表面酸性位点。催化剂的酸度(酸位的性质,密度和强度)通过NH3的程序升温脱附和吸附的吡啶的FTIR表征。 Al 2 O 3(路易斯酸度)在反应中没有显示任何活性。相反,在布朗斯台德酸度:Amberlyst 15和Amberlyst 36的催化剂上,三乙酰化产物(三醋精)具有最高的活性和选择性。研究了温度和AA与甘油的摩尔比的影响,结果表明两个参数都具有对所需产品生产的重大影响。当温度或AA与甘油的摩尔比增加时,甘油的转化率和对三乙酸甘油酯的选择性增加,在393K时,Amberlyst 36的甘油三乙酸酯收率为44%,AA与甘油的摩尔比为6。连续的催化测试。观察到由于硫的损失而存在一些不可逆的失活。此外,还研究了将生物柴油生产中的粗甘油用作反应物的可行性。粗制甘油的转化产生了三醋精和双醋精的值,类似于用市售纯甘油获得的值,但速率较低。

著录项

  • 来源
    《Environmental Technology》 |2018年第16期|1955-1966|共12页
  • 作者单位

    Univ Nacl Chaco Austral, Pcia Roque Saenz Pena, Chaco, Argentina;

    UNL, CONICET, INCAPE, Catalysis Sci & Engn Res Grp GICIC,Inst Invest Ca, Santa Fe, Argentina;

    Univ Nacl Chaco Austral, Pcia Roque Saenz Pena, Chaco, Argentina;

    Univ Nacl Chaco Austral, Pcia Roque Saenz Pena, Chaco, Argentina;

    UNL, CONICET, INCAPE, Catalysis Sci & Engn Res Grp GICIC,Inst Invest Ca, Santa Fe, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Glycerol acetylation; triacetin; solid acid catalysts; biofuel;

    机译:甘油乙酰化;甘油三乙酸甘油酯;固体酸催化剂;生物燃料;
  • 入库时间 2022-08-17 13:27:28

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