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Catalytic Cracking of Inedible Oils for the Production of Drop-In Biofuels over a SO_4~(2-)/TiO_2-ZrO_2 Catalyst

机译:在SO_4〜(2 - )/ TiO_2-ZRO_2催化剂中催化油的催化油生产中滴生物的生物燃料

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摘要

Triglycerides from animal fats and vegetable oils are used as the sustainable feedstocks for the generation of biofuels. Tung oil, rubber seed oil, iJatropha curcas oil, waste cooking oil, and waste acidified oil were selected as the triglyceride feedstocks for the production of drop-in biofuels by a catalytic cracking process. The one-step process was carried out in a laboratory-scale fixed-bed reactor using a SO_(4)~(2–)/TiO_(2)-ZrO_(2) catalyst. The catalyst exhibited an excellent performance of cracking, deoxygenation, and aromatization reactions. Moreover, it could be repeatedly used for more than 15 times without an obvious deactivation. The catalytic cracking process resulted in a high yield (65–72%) of the biofuel, which showed a low acid value (3.78 mg KOH/g) and low oxygen content (1.49%). The biofuels were characterized by Fourier transform infrared spectroscopy, thermogravimetric analysis, elemental analysis, proton nuclear magnetic resonance, and gas chromatography–mass spectrometry, suggesting that the dominant components of the biofuels are hydrocarbons in the range of C6–C26, including 17% alkanes, 56% olefins, and 22% monocyclic aromatics. These bio-hydrocarbon fuels in the crude form are chemically identical or near-identical to petroleum-based fuels, which have an attractive fraction distribution (32% bio-gasoline, 50% green diesel, and 11% heavy fraction) and can be fractionated and used in different formulations depending on the types of desired fuels.
机译:来自动物脂肪和植物油的甘油三酯用作生物燃料的可持续原料。选择桐油,橡胶籽油,制过药加工油,废料烹饪油和废酸化油作为催化裂化工艺生产滴式生物燃料的甘油三酯原料。使用SO_(4)〜(2 - )/ TiO_(2)-Zro_(2)催化剂,在实验室尺度固定床反应器中进行一步法。催化剂表现出裂解,脱氧和芳族化反应的优异性能。此外,它可以重复使用超过15次,而不会显而易见的失活。催化裂化工艺产生高产率(65-72%)的生物燃料,其显示低酸值(3.78mg KOH / g)和低氧含量(1.49%)。通过傅里叶变换红外光谱,热重分析,元素分析,质子核磁共振和气相色谱 - 质谱,表明生物燃料的特征在于,这表明生物燃料的主要成分是C6-C26的范围内的烃类,包括17%烷烃,56%的烯烃和22%的单环芳烃。粗产物中的这些生物烃燃料在化学上与石油基燃料具有化学相同或近似 - 具有吸引力的级分配(> 32%生物汽油,> 50%的绿色柴油和<11%重量分数)和<11%可以根据所需燃料的类型分馏并用于不同的配方中。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14204-14214|共11页
  • 作者单位

    Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Chemical Engineering Nanjing Forestry University|Jiangsu Provincial Key Lab for Chemistry and Utilization of Agro-forest Biomass Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals;

    Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Chemical Engineering Nanjing Forestry University|Jiangsu Provincial Key Lab for Chemistry and Utilization of Agro-forest Biomass Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals;

    Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Chemical Engineering Nanjing Forestry University|Jiangsu Provincial Key Lab for Chemistry and Utilization of Agro-forest Biomass Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals;

    Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Chemical Engineering Nanjing Forestry University|Jiangsu Provincial Key Lab for Chemistry and Utilization of Agro-forest Biomass Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals;

    Chemical Sciences Division and Center for Nanophase Materials Sciences Oak Ridge National Laboratory;

    Department of Chemical and Biomedical Engineering West Virginia University;

    Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources College of Chemical Engineering Nanjing Forestry University|Jiangsu Provincial Key Lab for Chemistry and Utilization of Agro-forest Biomass Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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