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Determination of Quality Properties of Low-Grade Biodiesel and Its Heating Oil Blends

机译:低级生物柴油质量特性及其加热油共混物的测定

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摘要

This research work examined how biodiesel produced from frying oils affects the physicochemical properties of its mixtures with conventional heating oil. Through the characterization of biodiesel blends and heating oil, the purpose is to produce an improved heating oil that will meet the specifications of the existing legislation for heating oil, while positively contributing to reducing the production of pollutants. The percentage of biodiesel added to a conventional diesel fuel contributes to the reduction of the pollutants produced during combustion. The examined biodiesel is considered the residual product, which was produced at a factory in Cyprus, and was deemed unsuitable for export, because it does not meet the legal requirements. Using specific volumes of these mixtures, twelve parameters were determined in order to investigate the effect of the mixtures: kinematic viscosity, sulfur content, micro carbon residue (MCR), distillation curves, density, cloud point (CP), fatty acid methyl esters (FAMEs) content, heat of combustion, iodine value (IV), cetane index (CI) after distillation, oxidation stability, and cold filter plugging point (CFPP). A number of fuel properties including the kinematic viscosity, MCR, distillation temperature—up to 80% distillate—and density showed an increase as the percentage of FAMEs raised from 2.5 to 50%, while others showed a mixed behavior (e.g., IV, CP, CI, CFPP), and the rest an inverse trend (e.g., sulfur content, heat of combustion and oxidation stability). An efficient potential utilization of a residual domestic product is proposed, while the pollutants that accumulate on the urban atmospheres during the winter months, due to increased heating needs of homes and other public or private buildings, will be significantly reduced.
机译:本研究工作检测了如何用常规的加热油产生由炸液产生的生物柴油影响其混合物的物理化学性质。通过对生物柴油混合物和加热油的表征,目的是产生改进的加热油,将符合现有的加热油立法规范,同时积极促进降低污染物的产生。添加到常规柴油燃料中的生物柴油百分比有助于减少燃烧过程中产生的污染物。检查的生物柴油被认为是塞浦路斯工厂生产的残余产品,被认为不适合出口,因为它不符合法律要求。使用这些混合物的特异性体积,测定12个参数,以研究混合物的作用:运动粘度,硫含量,微碳残基(MCR),蒸馏曲线,密度,浊点(CP),脂肪酸甲酯(蒸馏,氧化稳定性和冷过滤器堵塞点(CFPP)后,燃烧燃烧,燃烧热,碘值(IV),十六烷指数(CI)。许多燃料性能,包括运动粘度,MCR,蒸馏温度高达80%馏出物和密度,随着从2.5〜50%的百分比升高,而其他因素显示出混合行为(例如,IV,CP ,CI,CFPP)和其余逆向趋势(例如,硫含量,燃烧热和氧化稳定性)。提出了有效的潜在利用剩余国内产品,而在冬季的城市环境中积累的污染物,由于房屋和其他公共建筑物的供暖需求增加,将大大减少。

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