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A 322,000 kilometer (200,000 mile) over the road test with HySEE biodiesel in a heavy-duty truck

机译:在一辆重型卡车的Hysee Biodiesel公路测试中,322,000公里(20万英里)

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In July 1997, the Pacific Northwest and Alaska Regional Bioenergy Program, in cooperation with several industrial and institutional partners initiated a long-haul 322,000 km (200,000 mile) operational demonstration using a biodiesel and diesel fuel blend in a 324 kW (435 HP), Caterpillar 3406E Engine, and a Kenworth Class 8 heavy-duty truck. This project was designed to: develop definitive biodiesel performance information, collect emissions data for both regulated and non-regulated compounds including mutagenic activity, and collect heavy-duty operational engine performance and durability information. To assess long-term engine durability and wear; including injector, valve and port deposit formations; the engine was dismantled for inspection and evaluation at the conclusion of the demonstration. The fuel used was a 50% blend of biodiesel produced from used cooking oil (hydrogenated soy ethyl ester) and 50% 2-D petroleum diesel. The demonstration vehicle traveled 326,235 km (202,160 miles) in actual commercial operation averaging 5.27 miles/gallon. The biodiesel feedstocks used were ethanol and used hydrogenated soy oil produced as a by-product during the manufacture of French fries by the J.R. Simplot Company. The used French fry oil produced a biodiesel referred to as HySEE. Total glycerol of the fuel averaged 0.402% and yield as a mass percent of raw oil averaged 85.4%. At the conclusion of the operational demonstration, Caterpillar conducted an extensive engine inspection and analysis. Suffice it to say, "Nearly all aspects of this test passed evaluation with flying colors." The only exceptions were transient emissions - significant increases in PM and related reductions in NO{sub}X were observed. The emission changes were attributed to a decrease in injection pressure and a delayed or retarded fuel injection event. These changes were not attributed to the biodiesel fuel. Wear measurement testing results expressed in miles suggest that this engine could be expected to exceed a vehicle mileage of 1.6 million km (1,000,000 operational miles.) A second identical engine was performance and emissions tested at the Caterpillar Technical Center, Peoria, Illinois. The test engine was conditioned and tested to meet the requirements of Clean Air Act Section 211(b). As part of the testing, personnel from the Department of Environmental Toxicology, University of California, Davis collected samples for chemical analysis and bioassay studies of toxic (non-regulated) emission compounds. The section 211(b) testing included neat HySEE Biodiesel, neat REE (Rapeseed Ethyl Ester), 50:50 blend of HySEE, and Phillips 211b reference diesel (2-D). The engine performance and emissions testing results, using a 1997 Caterpillar 3406E engine are shown. Samples of both particle-phase and vapor-phase emissions were collected for determination of PAHs, Nitro-PAHs and mutagenicity. For the particle phase, the HySEE fuel emissions rate for PAHs such as pyrene, benz(a)anthracene, chrysene, the emission rate was considerably lower than the PAH emission rate for diesel fuel. The emission rate for the vapor- phase PAHs from the HySEE fuel was lower than for the 50:50 blend and 100% diesel fuel samples. For example, the emission rates for phenanthrene were about 29.08, 47.4, and 76.3μg/bhp-hr for the HySEE, 50:50 blend, and diesel fuel hot start cycles, respectively.
机译:1997年7月,与若干工业和机构合作伙伴合作,太平洋西北和阿拉斯加地区生物能源计划在324千瓦(435马力)中,使用生物柴油和柴油燃料混合起到长途322,000公里(20万英里)的操作示范。 Caterpillar 3406e发动机,以及8级重型卡车。该项目旨在:制定明确的生物柴油业绩信息,收集包括诱变活动的受管制和非调节化合物的排放数据,并收集重型运营发动机性能和耐用信息。评估长期发动机耐用性和磨损;包括注射器,阀门和端口沉积物形成;发动机在演示结束时拆除检查和评估。所用的燃料是由用过的食用油(氢化大豆乙酯)和50%2-D石油柴油生产的生物柴油的50%混合物。示范车在实际商业运营中均为326,235公里(202,160英里)平均5.27英里/加仑。使用的生物柴油原料是乙醇,并在J.R. Simparot公司制造炸薯条期间使用作为副产品的氢化大豆油。使用的炸薯条油制作了一个被称为Hysee的生物柴油。燃料的总甘油平均为0.402%,产率为原油的质量百分比平均为85.4%。在操作演示结束时,Caterpillar进行了广泛的发动机检查和分析。就此而言,“这次测试几乎所有方面都通过飞行的颜色进行了评估。”唯一的例外是瞬态排放 - 未观察到下午的显着增加,并且没有观察到NO {sub} x中的相关减少。排放变化归因于注射压力的减少和延迟或延迟的燃料喷射事件。这些变化不会归因于生物柴油燃料。磨损测量测试结果以数英里表示的结果表明,该发动机可以超过110万公里(1,000,000只运营英里)的车辆里程。第二个相同的发动机是在Caterpillar技术中心,伊利诺伊州皮科利亚经过测试的性能和排放。测试发动机被调节并测试,以满足清洁空气动力部分211(B)的要求。作为测试的一部分,来自加利福尼亚大学环境毒理学系的人员,戴维斯收集了用于化学分析和生物测定的毒性(非调节)发射化合物的样品。第211(B)测试包括纯净的Hysee生物柴油,整齐的REE(菜籽乙酯),50:50混合物的Hysee和Phillips 211b参考柴油(2-D)。示出了使用1997 Caterpillar 3406E发动机的发动机性能和排放测试结果。收集颗粒相和气相排放的样品,用于测定PAHS,硝基-PAH和致突变性。对于粒子阶段,PAHS的Hyse燃料排放率如芘,苯子(A)蒽,排放率,发射率大于柴油燃料的PAH发射率。来自Hyse燃料的气相PAHs的排放率低于50:50混合物和100%柴油燃料样品。例如,菲的排放率为Hyse,50:50混合物和柴油燃料热开始循环分别为约29.08,47.4和76.3μg/ bhp-hr。

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