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首页> 外文期刊>Chemical engineering journal >Biofuel Production Using Thermochemical Conversion of Heavy Metal-Contaminated Biomass (HMCB) Harvested from Phytoextraction Process
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Biofuel Production Using Thermochemical Conversion of Heavy Metal-Contaminated Biomass (HMCB) Harvested from Phytoextraction Process

机译:生物燃料生产使用从植物萃取过程中收获的重金属污染生物质(HMCB)的热化学转化

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Over the past few decades, bioenergy production from heavy metal-contaminated biomasses (HMCBs) has been drawing increasing attention from scientists in diverse disciplines and countries owing to their potential roles in addressing both energy crisis and environmental challenges. In this review, bioenergy recovery from HMCBs, i.e. contaminated plants and energy crops, using thermochemical processes (pyrolysis, gasification, combustion, and liquefaction) has been scrutinized. Furthermore, the necessity of the implementation of practical strategies towards sustainable phytoextraction and metal-free biofuels production has been critically discussed. To meet this aim, the paper firstly delivers the fundamental concepts regarding the remediation of the brownfields using phytoremediation approach, and then, reviews recent literature on sustainable phytoextraction of heavy metals from polluted soils. Thereafter, to find out the possibility of the cost-efficient production of metal-free biofuels from HMCBs using thermochemical methods, the impacts of various influential factors, such as the type of feedstock and metals contents, the reactor type and operating conditions, and the role of probable pre-/post-treatment on the fate of heavy metals and the quality of products, have also been discussed. Finally, based on relevant empirical results and techno-economic assessment (TEA) studies, the present paper sheds light on pyrolysis as the most promising thermochemical technique for large-scale electricity and heat recovery from HMCBs.
机译:在过去的几十年里,来自重金属受污染的生物量(HMCB)的生物能源生产一直在借鉴各种学科和国家的科学家,由于他们的潜在作用,在解决能源危机和环境挑战方面的潜在作用。在本文中,使用热化学方法(热解,气化,燃烧和液化),从HMCBS,即污染的植物和能量作物中恢复生物能量恢复。此外,已经严重讨论了实现可持续植物申请和无金属生物燃料生产的实际策略的必要性。为满足这一目标,本文首先提供了有关使用植物化方法修复棕色地区的根本概念,然后评论最近关于污染土壤的重金属的可持续植物申请的文献。此后,找出使用热化学方法,各种影响因素的影响,诸如原料和金属含量,反应堆类型和操作条件的类型的影响,从HMCB的无金属生物燃料生产的可能性。还讨论了可能的重金属和产品的命运后的角色和产品的质量。最后,基于相关的经验结果和技术经济评估(茶)研究,本文阐明了热解的光解作为最有希望的大规模电力和从HMCB的热量回收的热化学技术。

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