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Waste cooking oil-to-biodiesel conversion for space heating applications.

机译:废烹饪油向生物柴油的转化,用于空间供热应用。

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摘要

Transesterification is a process that converts triglycerides, like vegetable oil, into fatty acid methyl esters, commonly known as biodiesel. This conversion reaction requires the triglyceride feedstock, an alcohol, and an alkali-catalyst to produce the biodiesel. Biodiesel is a versatile biofuel that is renewable, biodegradable, and environmentally beneficial in the sense that combustion adds only biogenic carbon to the atmosphere. The main limitation of commercialization of biodiesel is cost. However, developing closed-loop systems that have an available triglyceride supply, such as waste cooking oil, as well as demand for diesel based fuels, can achieve substantial emissions reductions and energy avoidance, while simultaneously solving a waste disposal issue. Thus, an analysis of the development of a closed-loop waste cooking to biodiesel fuel production process is warranted.;A waste-to-energy (WtE) system like this offers great potential to institutions. Thus, this analysis includes the development of a waste cooking oil to biodiesel fuel program utilizing the available waste cooking oil of a university, the production of the fuel, the internal use of the fuel, and subsequent analysis of the fuel characteristics, emissions, and the life cycle environmental and energy impacts of the production process and ultimate use.;The results show that the waste cooking oil derived biodiesel meets the required American Society for Testing and Materials (ASTM) standard specifically for biodiesel, ASTM D6751. The produced biodiesel was blended with commercially available fuel oil, which met the ASTM specification D396-13b. Therefore, a blend of these two ASTM compliant fuels also met the required ASTM standards. The ASTM standards require high quality fuel characteristics and ensure proper utilization and combustion.;Biodiesel blended heating fuels were utilized in two distinct heating facilities, both showing comparable emissions to conventional fuel oil. Small (500 mL) and large (1L) volume biodiesel blends were utilized in a conventional residential furnace. Emissions data were obtained through the exhaust ducting with a combustion gas analyzer. The same fuel blends were utilized in a lab-scale burner apparatus without a heat exchanger, which enabled near-flame interrogation and visualization of the combustion process. The emissions of both heating facilities were comparable to the incumbent fuel oil.;The life cycle assessment results demonstrate the benefits of increasing the approved blends of biodiesel heating fuels. Currently, most oil burners are only approved up to a B5 blend (5% biodiesel, 95% fuel oil). The results show higher blends achieve substantial life cycle reduction in global warming potential and cumulative energy demand, as well as an energy return on investment of above 4, indicating more energy is obtained from the fuel than required to produce it.
机译:酯交换反应是将甘油三酸酯(如植物油)转化为脂肪酸甲酯(通常称为生物柴油)的过程。该转化反应需要甘油三酸酯原料,醇和碱催化剂来生产生物柴油。生物柴油是一种通用的生物燃料,在燃烧仅向大气中添加生物碳的意义上说,它是可再生,可生物降解且对环境有益的。生物柴油商业化的主要限制是成本。然而,开发具有可用甘油三酸酯供应的闭环系统,例如废食用油,以及对柴油燃料的需求,可以实现大幅度的减排和节能,同时解决废物处理问题。因此,有必要对将闭环废物烹饪发展为生物柴油燃料的生产过程进行分析。像这样的废物转化能源(WtE)系统为机构提供了巨大的潜力。因此,该分析包括利用大学可用的废烹饪油开发废烹饪油到生物柴油燃料的计划,燃料的生产,燃料的内部使用以及随后对燃料特性,排放和排放的分析。结果表明,废食用油衍生的生物柴油符合专门针对生物柴油的美国材料试验学会(ASTM)标准,即ASTM D6751。将生产的生物柴油与符合ASTM D396-13b的市售燃油混合。因此,这两种符合ASTM要求的燃料的混合物也符合要求的ASTM标准。 ASTM标准要求高质量的燃料特性,并确保适当的利用和燃烧。生物柴油混合加热燃料在两个不同的加热设施中使用,均显示出与常规燃料油相当的排放量。在常规的居民炉中使用小体积(500毫升)和大体积(1升)的生物柴油混合物。排放数据是通过使用燃烧气体分析仪的排气管获得的。在没有热交换器的实验室规模的燃烧器设备中使用了相同的燃料混合物,从而可以进行近火焰询问和燃烧过程的可视化。两种供暖设施的排放量都与现有的燃油相当。;生命周期评估结果表明,增加批准的生物柴油供暖燃料的掺混物的好处。目前,大多数燃油燃烧器仅允许使用B5混合燃料(5%的生物柴油,95%的燃油)。结果表明,较高的混合气可显着降低全球变暖潜能和累积能量需求的生命周期,并且投资回报率高于4,表明从燃料中获得的能量多于生产所需的能量。

著录项

  • 作者

    Bruton, Daniel J.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Sustainability.;Environmental Sciences.
  • 学位 M.S.
  • 年度 2014
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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