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首页> 外文期刊>Chemical Engineering and Processing >A study on developing aviation biofuel for the Tropics: Production process-Experimental and theoretical evaluation of their blends with fossil kerosene
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A study on developing aviation biofuel for the Tropics: Production process-Experimental and theoretical evaluation of their blends with fossil kerosene

机译:为热带地区开发航空生物燃料的研究:生产过程-其与化石煤油混合物的实验和理论评估

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In the present work, the production process of bio-jet paraffins is appropriately proposed according to the conditions of the socioeconomic situations, the current technologies of biofuel production and the available feedstock sources for the tropical countries. The blending process of bio-kerosene which is a mixture of bio-jet paraffins and fossil kerosene is also displayed. The two prototypes of bio-paraffins (Bio-Pi and Bio-JP2), which were manufactured in Indonesia following the proposed production process, are used for making bio-kerosenes in current study. The theoretical and experimental investigations have been carried out to evaluate and identify the critical properties of bio-kerosenes: distillations, freezing point, lower heating value, density, flash point and viscosity to ensure ASTM criteria of jet fuel. The results show it can be blended directly 5% volume of Bio-P1 or 10% volume of Bio-JP2 to commercial Jet A-1 for powering aviation gas turbine engines without redesigning fuel system or fuel supply infrastructure. The use of these bio-paraffins not only reduces CO2 lifecycle but also significantly decreases emissions of sulfur compounds (SO_x). With preliminary achievements of this work, it is no doubt about the feasibility of developing aviation alternative fuels according to the proposed production process for the tropical countries.
机译:在目前的工作中,根据社会经济状况,生物燃料生产的现有技术以及热带国家可获得的原料来源,适当地提出了生物喷射石蜡的生产方法。还展示了生物煤油的混合过程,该过程是生物喷射石蜡和化石煤油的混合物。按照建议的生产工艺在印度尼西亚生产的两个生物石蜡原型(Bio-Pi和Bio-JP2)被用于当前研究中的生物煤油制备。已经进行了理论和实验研究,以评估和确定生物煤油的关键特性:蒸馏,凝固点,较低的热值,密度,闪点和粘度,以确保航空燃料的ASTM标准。结果表明,可以将5%体积的Bio-P1或10%体积的Bio-JP2直接掺混到商用Jet A-1中,为航空燃气涡轮发动机提供动力,而无需重新设计燃料系统或燃料供应基础设施。这些生物石蜡的使用不仅减少了二氧化碳的生命周期,而且还大大减少了硫化合物(SO_x)的排放。有了这项工作的初步成果,毫无疑问,根据热带国家拟议的生产工艺开发航空代用燃料的可行性。

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