Elephant Grass (Pennisetum purpureum): A Bioenergy Resource Overview

Biomass Pub Date : 2024-07-01 DOI:10.3390/biomass4030034
Lovisa Panduleni Johannes, Tran Thi Ngoc Minh, T.D. Xuan
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Abstract

Elephant grass (EG), or Pennisetum purpureum, is gaining attention as a robust renewable biomass source for energy production amidst growing global energy demands and the push for alternatives to fossil fuels. This review paper explores the status of EG as a sustainable bioenergy resource, integrating various studies to present a comprehensive analysis of its potential in renewable energy markets. Methods employed include assessing the efficiency and yield of biomass conversion methods such as pretreatment for bioethanol production, biomethane yields, direct combustion, and pyrolysis. The analysis also encompasses a technoeconomic evaluation of the economic viability and scalability of using EG for energy production, along with an examination of its environmental impacts, focusing on its water and carbon footprint. Results demonstrate that EG has considerable potential for sustainable energy practices due to its high biomass production and ecological benefits such as carbon sequestration. Despite challenges in cost competitiveness with traditional energy sources, specific applications like small-scale combined heat and power (CHP) systems and charcoal production show economic promise. Conclusively, EG presents a viable option for biomass energy, potentially playing a pivotal role in the biomass sector as the energy landscape shifts towards more sustainable solutions; although, technological and economic barriers need further addressing.
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象草(Pennisetum purpureum):生物能源资源概述
随着全球能源需求的不断增长以及对化石燃料替代品的大力推广,象草(Pennisetum purpureum)作为一种用于能源生产的强大的可再生生物质能源正日益受到关注。这篇综述论文探讨了 EG 作为可持续生物能源资源的现状,整合了各种研究,对其在可再生能源市场中的潜力进行了全面分析。采用的方法包括评估生物质转化方法的效率和产量,如生物乙醇生产的预处理、生物甲烷产量、直接燃烧和热解。分析还包括对使用 EG 生产能源的经济可行性和可扩展性的技术经济评估,以及对其环境影响的研究,重点是其水足迹和碳足迹。研究结果表明,由于具有高生物质产量和碳封存等生态效益,EG 在可持续能源实践中具有相当大的潜力。尽管与传统能源相比在成本竞争力方面存在挑战,但小规模热电联产(CHP)系统和木炭生产等具体应用显示出经济前景。总之,无害环境技术为生物质能源提供了一个可行的选择,随着能源格局向更可持续的解决方案转变,它有可能在生物质能源领域发挥关键作用;不过,还需要进一步解决技术和经济障碍。
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