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Ethyl biodiesels derived from non-edible oils within the biorefinery concept - Pilot scale production engine emissions

机译:源自生物精炼概念中非食用油的乙基生物柴油-中试规模生产和发动机排放

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摘要

Procedures and operating conditions optimized in laboratory scale for the production of ethyl biodiesels from non-edible vegetable oils (NEVOs) were successfully transferred at pilot scale, with implementation of separation and purification stages. The three NEVOs candidates are Balanites aegyptiaca (BA), Azadirachta indica (AI), and Jatropha curcas (JC), converted into BAEEs, AIEEs and JCEEs respectively via homogeneous catalysis. Quality specifications of the produced biofuels were used to explain pollutant emissions and engine performance observed via a power generator. Under the same conditions, blends of petrodiesel with crude BA or JC oil (50 wt.%) were also investigated. The selected overall methodology “feedstock-conversion-engine” led to the proposal of a sustainable alternative fuel. The candidate NEVO is BA oil to which the proposed alkali route should lead to a low cost biodiesel production process thanks to easy operating conditions, associated with a two-stage procedure (glycerol recycling) and a dry-purification method (rice husk ashes). Glycerol addition should be carried out at ambient temperature to play positively at phenomena occurring in the reacting medium (chemical kinetics, chemical equilibrium, phase equilibrium). Tests on power generator demonstrated that BAEEs led to cleaner combustion than petrodiesel, particularly for the most harmful emissions (light carbonyls and ultrafine particulate matter).
机译:在实验室规模内优化的,用于从非食用植物油(NEVOs)生产乙基生物柴油的程序和操作条件已成功以试验规模转移,并实施了分离和纯化步骤。三种NEVO候选物分别为Balanites aegyptiaca(BA),Azadirachta indica(AI)和Jatropha curcas(JC),并通过均相催化分别转化为BAEE,AIEE和JCEE。生产的生物燃料的质量规格用于解释污染物排放和通过发电机观察到的发动机性能。在相同条件下,还研究了石油柴油与粗制BA或JC油(50 wt%)的共混物。选定的总体方法“原料转化引擎”导致了可持续替代燃料的提议。候选NEVO是BA油,由于操作条件简单,拟议的碱路线应将其引入低成本的生物柴油生产工艺中,该工艺具有两步操作(甘油循环利用)和干法提纯(稻壳灰)。甘油的添加应在环境温度下进行,以积极作用于反应介质中发生的现象(化学动力学,化学平衡,相平衡)。在发电机上进行的测试表明,BAEEs产生的燃烧比石油柴油更清洁,特别是对于最有害的排放物(轻质羰基化合物和超细颗粒物)而言。

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