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Ecological solar absorber coating: A proposal for the use of residual biomass and recycled materials for energy conversion

机译:生态太阳能吸收涂层:用于使用残留生物质和再生材料的能量转换的提案

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摘要

This paper discusses the development of a coating made of solid waste and residual biomass and its application as ecological solar absorber coating. This absorbent solar coating is made with a binder that consists of essential grapefruit rind oil and expanded polystyrene, both obtained from waste materials, as well as forest biomass soot (FBS) processed by mechanical grinding and used as a functional photothermal material. This mixture produces a paint that can be applied to metallic substrates to form a solar energy-absorbing surface. The characterization and evaluation is shown in three steps: (a) Characterization of the materials using XRD, SEM, TEM, XPS, Raman spectroscopy and IR; (b) coating evaluation using AFM, optical characterization to measure solar absorption, TG to determine the operating temperature and laser flash analysis to determine thermal conductivity; and (c) a testing with thermosolar technology to determine the thermal parameters of solar cookers. It has been identified that the pseudo-amorphous carbon in FBS has solar energy absorption capacity due to the sp(2)-sp(3) bonds present in this kind of carbon, associated with the materials graphitic domain. Also, results show that the coating can be used with thermosolar technologies operating above 250 degrees C with a solar absorption index above 96%, and it has thermally-efficient properties. In addition, the coating, it shows better results with solar cookers than other coatings used with this technology, increasing cooking power, so it can potentially be employed with various thermosolar technologies due to the replicability of its materials, its low environmental impact and low economic cost.
机译:本文讨论了由固体废物和残余生物质制成的涂层的开发及其作为生态太阳能吸收涂层的应用。该吸收性太阳能涂层由粘合剂制成,该粘合剂由基本葡萄柚外皮油和膨胀聚苯乙烯组成,两者由废料获得,以及通过机械研磨处理的森林生物量烟灰(FBS)并用作功能性光热材料。该混合物产生可应用于金属基板的涂料以形成太阳能吸收表面。表征和评估分为三个步骤:(a)使用XRD,SEM,TEM,XPS,拉曼光谱和IR的材料表征材料; (b)涂层评价采用AFM,光学表征测量太阳能吸收,TG确定工作温度和激光闪光分析,以确定导热率; (c)用热水激素技术进行测试,以确定太阳能炊具的热参数。已经确定FBS中的伪无定形碳具有由于这种碳中存在的SP(2)-SP(3)键具有与材料石墨结构域相关的SP(2)-SP(3)键具有太阳能吸收能力。另外,结果表明,涂​​层可与高于250摄氏度以上的热辐射技术一起使用,太阳能吸收指数高于96%,其具有热效率。此外,涂层,它表现出比太阳炊具的更好的结果,而不是其他与该技术一起使用的涂层,增加烹饪功率,因此由于其材料的可复制性,其低环境影响和低经济,因此可能与各种热辐射技术一起使用。成本。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|238-248|共11页
  • 作者单位

    Univ Michoacana Inst Invest Metalurgia & Mat Ave Francisco J Mujica S-N Ciudad Univ Morelia 58030 Michoacan Mexico|Univ Intercultural Indigena Michoacan Posgrad Ingn Sostenibilidad Energet Carretera Patzcuaro Huecorio Km3 Patzcuaro 61614 Michoacan Mexico;

    Univ Intercultural Indigena Michoacan Posgrad Ingn Sostenibilidad Energet Carretera Patzcuaro Huecorio Km3 Patzcuaro 61614 Michoacan Mexico;

    Univ Michoacana Fac Ciencias Fis Matemat Ave Francisco J Mujica S-N Ciudad Univ Morelia 58030 Michoacan Mexico;

    Univ Michoacana Inst Invest Metalurgia & Mat Ave Francisco J Mujica S-N Ciudad Univ Morelia 58030 Michoacan Mexico;

    Univ Michoacana Inst Invest Metalurgia & Mat Ave Francisco J Mujica S-N Ciudad Univ Morelia 58030 Michoacan Mexico;

    Univ Guadalajara Ctr Univ Ciencias Exactas & Ingn Blvd Marcelino Garcia Barragan 1421 Guadalajara 44430 Jalisco Mexico;

    Univ Michoacana Inst Invest Metalurgia & Mat Ave Francisco J Mujica S-N Ciudad Univ Morelia 58030 Michoacan Mexico;

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

    Ecological coating; Solar absorber; Thermosolar technology;

    机译:生态涂层;太阳能吸收器;热辐射技术;

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