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Production of liquid hydrocarbons from rice crop wastes mixtures by co-pyrolysis and co-hydropyrolysis

机译:通过共热解和共氢热解从稻米作物废料混合物中生产液态烃

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摘要

The aim of this work was the valorisation of rice crop wastes mixtures by pyrolysis to produce liquids to be used as bio-fuels or as raw bio-materials. The effect of waste mixtures composition on liquids yield and composition was studied. Rice husk (RH) and straw (RS) were pyrolysed with polyethylene (PE), the main plastic used in rice production process. Polypropylene (PP) and polystyrene (PS) were also studied, due to their presence in great amounts in solid wastes. The rise of rice husk amount in PE blends led to a decrease in the conversion of co-pyrolysis (pyrolysis of blends of biomass rice and plastic wastes) and to a reduction of liquid yields. Thus, the blend with 20% (w/w) of rice wastes was selected for further studies. No great changes were observed in the results when husk was replaced by straw, which is advantageous for the pyrolysis process. However, the same was not observed for the type of plastic waste. PS decreased total conversion and the formation of gases and liquids and increased aromatic compounds content in liquids. Some tests were done using hydrogen (hydropyrolysis) instead of nitrogen (pyrolysis) with the aim of improving liquids quality due to the presence of hydrogen in the reaction medium. Different pathways were analysed: (I) co-pyrolysis; (II) co-hydropyrolysis; (III) co-pyrolysis followed by hydropyrolysis and (IV) hydropyrolysis of co-pyrolysis liquids. Co-pyrolysis followed by hydropyrolysis was not favourable for further solids conversion and led to a great increase of gases. Co-hydropyrolysis led to the highest conversion, as both gas and total liquid yields increased. (c) 2016 Published by Elsevier Ltd.
机译:这项工作的目的是通过热解对稻谷作物废料混合物进行增值,以生产出用作生物燃料或生物原料的液体。研究了废物混合物组成对液体收率和组成的影响。稻壳(RH)和稻草(RS)用聚乙烯(PE)进行热解,聚乙烯是稻米生产过程中使用的主要塑料。还对聚丙烯(PP)和聚苯乙烯(PS)进行了研究,因为它们在固体废物中大量存在。 PE混合物中稻壳的增加导致共热解(生物质大米与塑料废物的混合物的热解)转化率降低,液体产量降低。因此,选择了含20%(w / w)的稻米废物的混合物以进行进一步研究。当用稻草代替稻壳时,结果没有观察到很大的变化,这对于热解过程是有利的。但是,对于塑料废物的类型却没有观察到同样的情况。 PS降低了总转化率以及气体和液体的形成,并增加了液体中芳族化合物的含量。一些测试是使用氢气(加氢热解)而不是氮气(热解)进行的,目的是由于反应介质中存在氢而提高液体质量。分析了不同的途径:(I)共热解; (II)共氢热解; (III)共热解,然后加氢热解,以及(IV)共热解液体加氢热解。共热解然后加氢热解不利于进一步的固体转化,并导致气体大量增加。随着气体和总液体产率的增加,共氢热解导致最高的转化率。 (c)2016由爱思唯尔有限公司出版。

著录项

  • 来源
    《Fuel》 |2016年第15期|153-163|共11页
  • 作者单位

    LNEG, Estr Paco do Lumiar 22, P-1649038 Lisbon, Portugal;

    LNEG, Estr Paco do Lumiar 22, P-1649038 Lisbon, Portugal;

    LNEG, Estr Paco do Lumiar 22, P-1649038 Lisbon, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Co-pyrolysis; Co-hydropyrolysis; Rice husk and straw; PE; PP; PS;

    机译:共热解;共热解;稻壳和稻草;PE;PP;PS;

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