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Valorization of swine manure biochar as a catalyst for transesterifying waste cooking oil into biodiesel

机译:猪粪肥Biochar作为酯酯化炉油酯的催化剂进入生物柴油

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As demand of proteins from meats has significantly increased with economy growth, the population of livestock proliferates. Thus, heavy amount of livestock byproducts released from livestock industries will become more problematic if they are handled in an unsatisfactory manner. In this study, swine manure (SM) waste was directly valorized to be used as a reaction catalyst for biodiesel production. Pyrolysis was adapted to produce swine manure biochars at 500 (SMB@500) and 650 degrees C (SMB@650), and the materials were used for conversion of waste cooking oil into biodiesels (i.e., fatty acid methyl esters: FAMEs). The properties of SMBs and resulting pyrolytic gases (i.e., H-2, CO, and C1-2 hydrocarbons (HCs)) and liquids during pyrolysis were also characterized. SMBs used in this study included a large quantity of metallic contents that significantly contributed to the rapid reaction for biodiesel production. In detail, SMB@500 and SMB@650 showed higher than 96% of FAME yield at 305 and 210 degrees C of reaction temperature, while non-catalytic reaction using SiO2 showed similar FAME yield at 330 degrees C. Thus, this work offers a sustainable way to recycle organic and inorganic materials in livestock manures for energy (biodiesel, pyrolytic oil, H-2, and C1-2 HCs) production. (C) 2020 Elsevier Ltd. All rights reserved.
机译:随着来自肉类的蛋白质的需求随着经济增长而显着增加,牲畜的群体增殖群体。因此,如果以不令人满意的方式处理,从牲畜行业释放的大量牲畜副产物将变得更加有问题。在该研究中,猪粪(SM)废物直接算成用于生物柴油生产的反应催化剂。热解被500(SMB @ 500)和650℃(SMB @ 650)产生猪粪生物脉冲,并且该材料用于将废料烹饪油转化为生物柴油(即,脂肪酸甲酯:FAME)。还表征了SMB的性质和产生的热解气体(即,H-2,CO和C1-2烃(HCS))和液体。本研究中使用的SMB包括大量金属含量,可显着导致生物柴油生产的快速反应。详细地,SMB @ 500和SMB @ 650显示出在305和210℃的反应温度下的96%的增物产量,而使用SiO 2的非催化反应显示出330摄氏度的类似的名称产率。因此,这项工作提供了一种可持续途径回收牲畜饲养饲养饲养件(生物柴油,热解油,H-2和C1-2 HCS)的生产。 (c)2020 elestvier有限公司保留所有权利。

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