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Assessing the implementation levels of oil palm waste conversion methods in Malaysia and the challenges of commercialisation: Towards sustainable energy production

机译:评估马来西亚油棕废物转化方法的实施水平及商业化挑战:对可持续能源生产

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摘要

The conversion of oil palm waste to valuable fuels via biological and thermochemical means has witnessed much interest from researchers. Increasing tonnes of palm waste resulting from about 400 palm oil mills across Malaysia necessitates a rethink towards its conversion to energy to curb soil and air pollution, underground water contamination, and pest habitats. Converting these palm wastes to fuel at a commercial scale is necessary to advance Malaysia's bioenergy. This will ensure cleaner production and sustainability by providing low carbon energy that could be used in industrial, transport, and residential sectors. However, what is the technology readiness levels of these conversion methods in Malaysia? Have they reached commercialisation? What hinders them from attaining it? This study conducted an intensive literature review on five conversion technologies broadly classified as thermochemical (combustion, gasification and pyrolysis) and biological (anaerobic digestion and fermentation) to identify the extent to which each process has been adopted. For each of the technologies, the following were established: (1) Studies conducted by researchers using different palm wastes; (2) Challenges faced; (3) Technology readiness level. The significant findings revealed that fermentation is still at a lab scale, gasification and anaerobic digestion have reached pilot-scale while combustion and pyrolysis have attained commercialisation. Significant commercialisation challenges include technical and economic issues, communal consciousness, and stakeholder gap. Current research gaps, recommendations, future outlooks, and the way forward were discussed, along with developing a framework that features the key barriers, enablers, and stakeholders responsible for commercialisation.
机译:通过生物和热化学手段将油棕废物转换为有价值的燃料,目睹了研究人员的利益。跨马来西亚跨越400棕榈油厂的棕榈泥增加了吨棕榈泥,需要重新思考其对遏制土壤和空气污染,地下水污染和害虫栖息地的能量。将这些手掌废物转换为商业规模的燃料是为了推进马来西亚的生物能源。这将通过提供可用于工业,运输和住宅领域的低碳能源来确保清洁生产和可持续性。但是,马来西亚这些转换方法的技术准备水平是多少?他们达到了商业化吗?阻碍他们达到什么?本研究对五种转换技术进行了强化文献综述,该技术综述广泛归类为热化学(燃烧,气化和热解)和生物学(厌氧消化和发酵),以确定所采用的每种过程的程度。对于每个技术,建立以下内容:(1)研究人员使用不同棕榈废物进行的研究; (2)面临的挑战; (3)技术准备水平。重要的发现显示,发酵仍处于实验室规模,气化和厌氧消化达到了试验规模,同时燃烧和热解实现了商业化。重大商业化挑战包括技术和经济问题,公共意识和利益相关方差距。讨论了当前研究差距,建议,未来的前景以及向前讨论的方式以及开发一个具有负责商业化的关键障碍,推动者和利益相关者的框架。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第8期|106179.1-106179.20|共20页
  • 作者单位

    Department of Mechanical Engineering Universiti Teknologi PETRONAS 32610 Sen Iskandar Perak Malaysia Department of Mechanical Engineering Bayero University Kano PMB 3011 Kano Kano State Nigeria;

    Department of Mechanical Engineering Universiti Teknologi PETRONAS 32610 Sen Iskandar Perak Malaysia;

    Department of Mechanical Engineering Universiti Teknologi PETRONAS 32610 Sen Iskandar Perak Malaysia;

    Department of Mechanical Engineering Akdeniz University Antalya Turkey;

    Division of Sustainable Development College of Science and Engineering Hamad Bin Khalifa University (HBKU) Qatar Foundation P.O. Box 5825 Doha Qatnr;

    Department of Mechanical Engineering Universiti Teknologi PETRONAS 32610 Sen Iskandar Perak Malaysia;

    Department of Mechanical Engineering Universiti Teknologi PETRONAS 32610 Sen Iskandar Perak Malaysia;

  • 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

    Oil palm waste; Malaysia; Gasification; Combustion; Pyrolysis; Commercialisation;

    机译:油棕榈垃圾;马来西亚;气化;燃烧;热解;商业化;

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