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Synthesis of a reusable novel catalyst (β-tricalcium phosphate) for biodiesel production from a common Indian tribal feedstock

机译:从普通印第安部落原料合成可重复使用的新型催化剂(β-磷酸三钙),用于生产生物柴油

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Abstract In recent times, the rate of energy consumption goes on increasing and the world is desperately searching for new sources of fuel. Biodiesel (fatty acid methyl esters) is an alternative renewable energy resource for the next generation. Biodiesel has several advantages which include its non-toxic nature, it is biodegradable and it reduces greenhouse gas emissions. β-Tricalcium phosphate (β-Ca3(PO4)2) catalyst was synthesized from fish waste. Fish waste contains calcium phosphate which is converted into β-tricalcium phosphate since it has low crystallinity and hydroxyl (OH) groups which decrease the potential to be a good catalyst for the synthesis of biodiesel through transesterification. This paper explores the synthesis of biodiesel using β-tricalcium phosphate (β-Ca3(PO4)2) as a heterogeneous catalyst. Pongamia pinnata (Karanja) oil was extracted from seeds through the solvent extraction process. Intended for the development of easier transesterification process, stable and active heterogeneous β-tricalcium phosphate (β-Ca3(PO4)2) catalyst was synthesized and used for the P.?pinnata (Karanja) oil transesterification process. The synthesized heterogeneous catalyst was characterized by XRD, FT-IR, {SEM} and {EDX} to determine its structural and morphological characteristics. The catalyst exhibited good catalytic activity on reuse. Biodiesel yield was greatly dependent on operating parameters such as catalyst concentration, methanol to oil molar ratio, reaction temperature and reaction time. Effect of co-solvent on biodiesel was studied by using different co-solvents in transestrification reactions. High quality and maximum biodiesel yield (97 %) was obtained under the optimized reaction conditions (methanol to oil molar ratio, 10:1 (tetrahydrofuran (THF):methanol 1:1); reaction time 90?min; catalyst concentration 2.5 wt % and stirrer speed 650?rpm at 65 °C). Reusability of catalyst was examined up to five runs and found the catalyst was reusable up to five times without much loss of catalytic activity.
机译:摘要近年来,能源消耗率持续上升,世界正拼命寻找新的燃料来源。生物柴油(脂肪酸甲酯)是下一代的替代可再生能源。生物柴油具有许多优点,包括无毒,可生物降解并减少温室气体排放。从鱼粪中合成了β-磷酸三钙(β-Ca3(PO4)2)催化剂。鱼废料中的磷酸钙具有较低的结晶度和羟基(OH),可转变为β-磷酸三钙,从而降低了通过酯交换反应合成生物柴油的良好催化剂的潜力。本文探索了使用β-磷酸三钙(β-Ca3(PO4)2)作为多相催化剂合成生物柴油的方法。通过溶剂提取过程从种子中提取了樟子松(Karanja)油。为了开发更容易的酯交换过程,合成了稳定和活性的均相β-磷酸三钙(β-Ca3(PO4)2)催化剂,并将其用于P.?pinnata(Karanja)油酯交换过程。通过XRD,FT-IR,{SEM}和{EDX}对合成的多相催化剂进行了表征,以确定其结构和形貌特征。该催化剂显示出良好的再利用催化活性。生物柴油的收率很大程度上取决于操作参数,例如催化剂浓度,甲醇与油的摩尔比,反应温度和反应时间。通过在酯交换反应中使用不同的助溶剂研究了助溶剂对生物柴油的影响。在最佳反应条件下(甲醇与油的摩尔比为10:1(四氢呋喃(THF):甲醇1:1);反应时间为90?min;催化剂浓度为2.5 wt%),获得了高质量和最高的生物柴油收率(97%)。搅拌器转速在65°C时为650?rpm)。对催化剂的可重复使用性进行了多达5次测试,发现该催化剂可重复使用多达5次,而催化活性却没有太大损失。

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