首页> 外文会议>SAE/KSAE International Powertrains, Fuels and Lubricants Meeting >Estimation of Elemental Composition of Diesel Fuel Containing Biodiesel
【24h】

Estimation of Elemental Composition of Diesel Fuel Containing Biodiesel

机译:含生物柴油柴油燃料元素组成的估计

获取原文

摘要

Carbon, hydrogen and oxygen are major elements in vehicle fuels. Knowledge of fuels elemental composition is helpful in addressing its performance characteristics. Carbon, hydrogen and oxygen composition is an important parameter in engine calibration affecting vehicle performance, emissions and fuel economy. Biodiesel, a fuel comprised of mono-alkyl esters of long-chain fatty acids also known as Fatty Acid Methyl Esters(FAME), derived from vegetable oils or animal fats, has become an important commercial marketplace automotive fuel in the United States (US) and around the world over last few years. FAME biodiesels have many chemical and physical property differences compared to conventional petroleum based diesel fuels. Also, the properties of biodiesel vary based on the feedstock chosen for biodiesel production. One of the key differences between petroleum diesel fuels and biodiesel is the oxygen content. Typical oxygen content in pure biodiesel (B100) is about 11 weight % while conventional ultra-low sulfur petroleum diesel fuel has negligible oxygen content. High oxygen content of biodiesel impacts its characteristics compared to petroleum diesel. A previous paper (SAE2013-01-1139) discussed the change in energy content of diesel fuel containing biodiesel primarily due to its high oxygen content and the estimation of net heating values from common fuel properties. This paper is a continuation of the previous study and will discuss the estimation of elemental composition of biodiesel blended diesel fuels from common fuel properties. While the carbon, hydrogen, and nitrogen contents can be measured by combustion of the fuel in a tube and then quantifying the combustion products as described in ASTM D5291 or E191, the test is time-consuming and expensive. The repeatability of the method is also marginally satisfactory. It is generally satisfactory and more convenient to estimate the elemental composition from other commonly-measured fuel properties. Several standardized empirical methods have been developed in the past for estimating the hydrogen content of hydrocarbon fuels. However, the addition of oxygenated biodiesel fuel to diesel has become very common in many countries, and most of the estimation methods developed for hydrocarbon fuels do not provide accurate results for biodiesel blends, especially blends containing more than about 5 volume-percent biodiesel. This paper summarizes compositional data from recently collected retail samples from US market place, as well as laboratory blends containing different concentrations of biodiesels made from various types of biodiesels representing the most common feedstock. The compositional data obtained by different standardized test methods is compared and discussed. New empirical methods and equations are proposed for diesel containing biodiesel blends.
机译:碳,氢,氧是在车用燃料的主要元素。燃料元素组成的知识是解决它的性能特点有帮助。碳,氢,氧组成是在发动机校准影响车辆性能,排放和燃料经济性的重要参数。生物柴油,由长链脂肪酸也被称为脂肪酸甲酯(FAME),从植物油或动物脂肪的单烷基酯的燃料,已成为在美国(US)的重要商业市场的汽车燃料与世界各地近几年各地。 FAME生物柴油有许多化学和相对于传统的石油基柴油的物理性能的差异。此外,生物柴油的性质有所不同根据选择用于生产生物柴油的原料。之一的石油柴油燃料和生物柴油的主要区别是氧含量。在纯生物柴油(B100)典型的氧含量是约11重量%,而传统的超低硫石油柴油燃料具有可忽略的氧气含量。相比于石油柴油的生物柴油影响其特性的高氧含量。先前的纸(SAE2013-01-1139)由于其高氧含量和从公共燃料特性净热值的估计所讨论的在包含生物柴油的主要柴油燃料的能量含量的变化。本文是以前的研究的继续,将讨论共同的燃料性能的生物柴油的混合柴油的元素组成的估计。而碳,氢,和氮含量可通过燃料的燃烧在一个管进行测定,然后定量燃烧产物如ASTM D5291或E191所描述的,试验是费时且昂贵的。该方法的可重复性也是稍微令人满意的。它通常是令人满意的,并估计来自其他共同测量的燃料性质的元素组成更方便。几个标准化经验方法在过去已经开发了用于估计烃类燃料中的氢含量。然而,除了含氧生物柴油燃料柴油的许多国家已经变得非常普遍,而且大部分为碳氢化合物燃料开发的估计方法不提供柴油混合物准确的结果,特别是含有超过约5体积%的生物柴油混合物。本文总结了从美国市场最近收集的零售样品含有不同浓度的不同类型代表了最常见的生物柴油原料制成的生物柴油的成分数据,以及实验室混合物。通过不同的标准化试验方法得到的组成数据进行比较和讨论。新的经验方法和公式都提出了含柴油生物柴油混合物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号