Morphology and Environmentally Persistent Free Radicals on Biochars: A Review

Bornes C. Mosonik
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Abstract

This paper examines the morphology and environmentally persistent free radicals on biochars. It is true that the increase in population has led to exponential increase in demand for energy leading to gradual depletion of fossil fuel reserves. Therefore arises the need to search for alternative renewable clean and sustainable energy resource. Biomass derived fuels offers the best alternative to fossil fuel. Pyrolysis is one of the techniques used to produce biofuel from biomass. Thermal decomposition of biomass in limited supply of oxygen leads to emissions of complex matrices that affect biofuel utilization and stability. The major by-products from biomass pyrolysis include liquid oil, biochar and gases depending on operating conditions such as temperature, particle size, heating rate and reactor configuration. Biochars generated tend to find its use majorly in industry, agriculture and cleaning of industrial waste. Nonetheless biochars may contain organic compounds such as furans, aldehydes, polyaromatic hydrocarbons (PAHS) and environmentally persistent free radicals which are of toxic, carcinogenic, cause oxidative stress and mutagenic. This review therefore focuses on the characteristics of biochar in terms of morphology and the nature of persistent free radicals embedded on the surface of the biochar. It is notable that the information on optimum conditions for production of biochars free of persistent free radicals is scanty if any.
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生物炭的形态与环境持久性自由基研究进展
本文研究了生物炭的形态和环境持久性自由基。的确,人口增长导致能源需求呈指数级增长,导致化石燃料储备逐渐枯竭。因此,需要寻找可替代、可再生、清洁和可持续的能源。生物质衍生燃料是化石燃料的最佳替代品。热解是用于从生物质中生产生物燃料的技术之一。在有限的氧气供应下,生物质的热分解导致复杂基质的排放,影响生物燃料的利用和稳定性。生物质热解的主要副产物包括液体油、生物炭和气体,这取决于操作条件,如温度、颗粒大小、加热速率和反应器配置。产生的生物炭往往主要用于工业、农业和工业废物的清洁。然而,生物炭可能含有有机化合物,如呋喃、醛类、多芳烃(PAHS)和环境持久性自由基,这些化合物具有毒性、致癌性、引起氧化应激和致突变性。因此,本文综述了生物炭的形态特征和生物炭表面附着自由基的性质。值得注意的是,关于生产无持久性自由基生物炭的最佳条件的信息很少。
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