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Development of limestone based catalyst for biodiesel production from waste cooking oil

机译:开发用于废厨用油生产生物柴油的石灰石基催化剂

摘要

Recent developments in biodiesel production have heightened the need for feasible feedstock as this biofuel has high demands because of its advantages. Besides, catalysts play a significant role in improving production of biodiesel fuel. In addition, the determination catalyst is main important for designing a transesterification system. Industrial production of biodiesel employs homogeneous catalysts such as NaOH or KOH which are cannot be recovered and tolerate to soap formation. Thus, the purpose of this research is to develop and characterize the catalyst derived from limestone based. The effect of various condition i.e. different activation catalysts, temperature, WCO to methanol ratio, catalyst loading, reaction time and recyclability on biodiesel production will be studied. Besides, this research also attempts to utilize waste cooking oil as viable feedstock for biodiesel production. A catalyst produced from cement clinker (limestone based) with particle size of 250μm was prepared via wet impregnation method using aqueous solution of potassium hydroxide (KOH) and calcination. The characterizations of catalysts were done using Hammett indicators, X-Ray Fluorescence, SEM, BET and BJH and the product of biodiesel were determined using GC and HPLC. From this research, it was found that KOH activated limestone based catalyst shows a good potential as an alternate for one-step transesterification of low FFA waste cooking oil. Conventional transesterification of WCO using this activated catalyst was found to give the highest WCO conversion to FAME at 96.8% and FAME yield of 60.4% within 60 min of reaction. The end-product from this research also complies with ASTM Standards D6751. The results suggest that the catalyst employed in this work might be useful as a new low cost catalyst for biodiesel production.
机译:生物柴油生产的最新发展已经增加了对可行原料的需求,因为这种生物燃料由于其优势而具有很高的需求。此外,催化剂在改善生物柴油燃料的生产中起着重要作用。另外,测定催化剂对于设计酯交换体系至关重要。生物柴油的工业生产使用均相催化剂,例如NaOH或KOH,这些催化剂无法回收且不能形成皂液。因此,本研究的目的是开发和表征源自石灰石的催化剂。将研究各种条件,即不同的活化催化剂,温度,WCO与甲醇的比例,催化剂负载量,反应时间和可回收性对生物柴油生产的影响。此外,这项研究还试图利用废食用油作为生物柴油生产的可行原料。通过湿浸渍法,使用氢氧化钾(KOH)水溶液并煅烧,制备了由水泥熟料(基于石灰石)制备的催化剂,其粒径为250μm。使用Hammett指示剂,X射线荧光,SEM,BET和BJH对催化剂进行表征,并使用GC和HPLC测定生物柴油的产物。从该研究中发现,KOH活化的石灰石基催化剂显示出良好的潜力,可作为低FFA废食用油的一步酯交换的替代品。发现使用这种活化的催化剂进行的WCO的常规酯交换反应在60分钟内可将WCO转化为FAME的最高转化率为96.8%,FAME产率为60.4%。该研究的最终产品还符合ASTM D6751标准。结果表明,在这项工作中使用的催化剂可能可用作生物柴油生产的新型低成本催化剂。

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