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Biodiesel production from jatropha seeds with bead-type heterogeneous catalyst

机译:来自Jatropha种子的生物柴油生产与珠型非均相催化剂

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This study adapted two types of heterogeneous catalysts to the process of manufacturing biodiesel through a two-stage process using Jatropha oil as a raw material. The acid value of Jatropha oil prepared in this study was 11.3 mgKOH/g, and it could be reduced to less than 0.4 mgKOH/g via 2 h of esterification using the Amberlyst-15 catalyst. The pretreated oil was used as a raw material for transesterification in a Carberry spinning catalyst basket reactor equipped with a bead-type dolomite catalyst, as the bead-type dolomite catalyst prepared with 20 wt% pseudoboehmite sol as an inorganic binder was found to be the optimal catalyst for the transesterification reaction. The spent dolomite bead catalyst could be regenerated and reused twice without a loss of activity during transesterification. However, the catalyst when repeatedly regenerated three times nearly lost its active sites, which is attributed to the conversion of CaO to CaCO3 during the regeneration and reuse procedure.
机译:该研究通过使用Joatropha油作为原料,通过两级过程改编两种类型的异质催化剂,以制造生物柴油的过程。 本研究制备的麻风树油的酸值为11.3mgKOH / g,并且使用Amberlyst-15催化剂可以通过2小时将其降低至小于0.4mgKOH / g。 使用预处理的油作为配备有珠粒型白云石催化剂的丙纤维纺丝催化剂篮制反应器中的原料作为胎圈型白云岩催化剂。发现用20wt%伪泡溶胶作为无机粘合剂制备的珠粒型白云石催化剂是 用于酯交换反应的最佳催化剂。 可以在酯交换过程中再生并重新再生二粒珠催化剂并重复使用两次,而不会丧失活性。 然而,当反复再生三次时催化剂几乎丢失其活性位点,其归因于在再生和再利用程序期间CaO至CaCO 3的转化。

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