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Evaluation of Waste Process Grease as Feedstock for Biodiesel Production

机译:评价废油脂作为生物柴油生产的原料

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Awareness of the depletion of fossil energy reserves, the rising demand for energy in the world and the problems associated with the burning of fossil fuel encourage researchers to find alternative energy sources, such as biodiesel. The use of inedible and waste oils as feedstock for biodiesel production is an important way of converting waste into valuable energy products. In this study, waste process grease (WPG) was used to produce biodiesel via two processing routes. The traditional two-step alkaline catalyzed transesterification method (route 1) produced biodiesel that did not conform to the SANS 1935 biodiesel standard of South Africa with regard to sulfur and phosphorous levels. The WPG in the second process route was modified by saponification with aqueous sodium hydroxide followed by acidulation with hydrochloric acid to be purified by means of column chromatography. A hydrophobic resin with methanol as the mobile phase was used to reduce the non-polar sulfur from the grease. The crude biodiesel produced by means of acid esterifica-tion using sulfuric acid as catalyst was purified using silica gel with hexane as the mobile phase. The sulfur level in the biodiesel was reduced to a low enough level to conform to the SANS 1935 standard for biodiesel production. It was shown with this study that waste process grease from the metal working industry can be used to produce biodiesel that conforms to the SANS 1935 specification for sulfur and is suitable to be used in biodiesel blending. A preliminary economic assessment shows that owed to the complexity of the second process route, biodiesel produced by this process is not economically viable given the current petroleum diesel prices. With the rising trend in crude oil prices and the limited supply of feedstock for biodiesel, WPG is anticipated to become a viable feedstock for biodiesel production in future.
机译:人们对化石能源储备的枯竭,世界对能源需求的增长以及与化石燃料燃烧相关的问题的认识促使研究人员寻找替代能源,例如生物柴油。使用不可食用的和废油作为生物柴油生产的原料是将废物转化为有价值的能源产品的重要途径。在这项研究中,废润滑脂(WPG)用于通过两种工艺路线生产生物柴油。传统的两步碱性催化酯交换法(路线1)生产的生物柴油在硫和磷含量方面不符合南非的SANS 1935生物柴油标准。通过用氢氧化钠水溶液皂化,然后用盐酸酸化,对第二种工艺路线中的WPG进行改性,以通过柱色谱法进行纯化。使用以甲醇为流动相的疏水性树脂来减少油脂中的非极性硫。通过使用己烷作为流动相的硅胶,纯化通过使用硫酸作为催化剂的酸酯化反应生产的粗制生物柴油。生物柴油中的硫含量降低到足以符合SANS 1935生物柴油生产标准的水平。这项研究表明,金属加工行业的废过程润滑脂可用于生产符合SANS 1935年硫磺规格且适合用于生物柴油混合的生物柴油。初步的经济评估表明,由于第二种工艺路线的复杂性,鉴于当前的石油柴油价格,这种工艺生产的生物柴油在经济上不可行。随着原油价格的上涨趋势以及生物柴油原料的供应有限,预计WPG将来将成为生物柴油生产的可行原料。

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