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首页> 外文期刊>Journal of Environmental Management >Diesel fuel blending components from mixture of waste animal fat and light cycle oil from fluid catalytic cracking
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Diesel fuel blending components from mixture of waste animal fat and light cycle oil from fluid catalytic cracking

机译:来自废动物脂肪和流化催化裂化的轻循环油混合物的柴油混合成分

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Sustainable production of renewable fuels has become an imperative goal but also remains a huge challenge faced by the chemical industry. A variety of low-value, renewable sources of carbon such as wastes and by-products must be evaluated for their potential as feedstock to achieve this goal. Hydrogenation of blends comprising waste animal fat (= 70 wt%) and low-value fluid catalytic cracking light cycle oil (= 30 wt%), with a total aromatic content of 87.2 wt%, was studied on a commercial sulfided NiMo/Al2O3 catalyst. The fuel fraction in the diesel boiling range was separated by fractional distillation from the organic liquid product obtained from the catalytic conversion of the blend of 70 wt% waste animal fat and 30 wt% light cycle oil. Diesel fuel of the best quality was obtained under the following reaction conditions: T = 615-635 K, P = 6 MPa, LHSV = 1.0 h(-1), H-2/ feedstock ratio = 600 Nm(3)/m(3). The presence of fat in the feedstock was found to promote the conversion of light cycle oil to a paraffinic blending component for diesel fuel. Thus, a value-added alternative fuel with high biocontent can be obtained from low-value refinery stream and waste animal fat. The resultant disposal of waste animal fat, and the use of fuel containing less fossil carbon for combustion helps reduce the emission of pollutants.
机译:可持续生产可再生燃料已成为当务之急,但仍然是化学工业面临的巨大挑战。必须评估各种低价值的可再生碳源,例如废物和副产品,以实现其作为原料的潜力,以实现这一目标。在商业硫化的NiMo /上研究了包含废弃动物脂肪(<= 70 wt%)和低值流化催化裂化轻循环油(> = 30 wt%)的共混物的加氢反应,总芳烃含量为87.2 wt%。 Al2O3催化剂。通过分馏从柴油沸程范围内的燃料馏分中分离出有机液体产物,该有机液体产物是由催化转化70重量%的动物废脂肪和30重量%的轻循环油的混合物得到的。在以下反应条件下获得了最高质量的柴油燃料:T = 615-635 K,P = 6 MPa,LHSV = 1.0 h(-1),H-2 /原料比= 600 Nm(3)/ m( 3)。发现原料中存在脂肪促进了轻循环油向柴油燃料的链烷烃混合组分的转化。因此,可以从低价值的炼油厂流和废弃的动物脂肪中获得具有高生物含量的高附加值替代燃料。由此产生的废弃动物脂肪处置,以及使用含较少化石碳的燃料进行燃烧,有助于减少污染物的排放。

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