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Impact of Biodiesel Blends on Fuel System Component Durability

机译:生物柴油混合对燃料系统耐用性的影响

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An ultra-low sulfur diesel (ULSD) fuel was blended with three different biodiesel samples at 5 and 20 volume percent. The biodiesel fuels were derived from rapeseed and soybean oils, and in addition, a highly oxidized biodiesel was prepared from the soy biodiesel by oxidation under controlled conditions. A set of five elastomers commonly used in automotive fuel systems were examined before and after immersion in the six test blends and base fuel at 60°C for 1000 hours. The elastomers were evaluated for hardness, tensile strength, volume change and compression. Injector wear tests were also conducted on the base petrodiesel fuel and the biodiesel blends using a 500-hour test method developed for this study. Bosch VE (in-line) rotary pumps were evaluated for wear after testing for 500 hours on the base fuel, B5 and B20 test fuels. Additionally, a test procedure was developed to accelerate wear on common rail pumps over 500 hours. This procedure was used to evaluate Bosch pumps from tests conducted on the base fuel, B5, and B20 fuels. B5 blends, even with highly oxidized biodiesel, appeared compatible with the materials and components tested. B20 blends from non-oxidized biodiesel also appeared to be compatible with these materials and components. Test results for B20 prepared from highly oxidized biodiesel suggest the potential for significant problems with oxidized fuels, highlighting the need to prevent biodiesel oxidation. However, due to a lack of real-world field oxidized biodiesel samples for comparison, verifying the severity of the oxidization level of the biodiesel used in this study is not possible. There is some potential that the highly oxidized biodiesel sample used in the study represents an extreme condition that consumers may not encounter in the field; therefore, additional work is needed.
机译:将超低硫柴油(ULSD)燃料与三种不同的生物柴油样品混合在5%和20体积%。生物柴油燃料来自菜籽油和大豆油,另外,通过在受控条件下通过氧化从大豆生物柴油制备高度氧化的生物柴油。在60℃下在60℃下浸入六个测试混合物和碱燃料之前和之后,检查一组常用于汽车燃料系统中的五种弹性体。评估弹性体的硬度,拉伸强度,体积变化和压缩。在碱型叶片燃料和生物柴油混合物中也进行喷射器磨损试验使用为本研究开发的500小时测试方法。在基础燃料,B5和B20试验燃料上测试500小时后,评估博世ve(在线)旋转泵。此外,开发了一种测试程序,以在500小时内加速普通轨道泵的磨损。该过程用于评估从基础燃料,B5和B20燃料上进行的测试的博斯克泵。 B5混合物,即使具有高度氧化的生物柴油,也与测试的材料和组分相容。非氧化生物柴油的B20共混物也似乎与这些材料和组分相容。由高氧化的生物柴油制备的B20的测试结果表明,氧化燃料的显着问题的可能性,突出了预防生物柴油氧化的需要。然而,由于缺乏真实世界的氧化生物柴油样品进行比较,验证本研究中使用的生物柴油的氧化水平的严重程度是不可能的。研究中使用的高度氧化生物柴油样品有一些潜力代表了消费者在现场不遇到的极端条件;因此,需要额外的工作。

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