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Nitrogen in bio-oil produced from hydrothermal liquefaction of biomass: A review

机译:生物液化生物液化产生的生物油中的氮:综述

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摘要

Hydrothermal liquefaction (HTL) of biomass, especially that of high moisture such as microalgae, macroalgae, sludge, manure, and food waste, for the production of bio-oil has been widely concerned worldwide. However, the contents of nitrogen (N) in these biomasses are commonly high, and 20-40% of the N in the raw biomasses would distribute into bio-oil during the HTL process, resulting in a high content of N in bio-oil, sometimes up to 10 wt%. The combustion of N-rich bio-oil will probably induce massive emission of nitrogen oxides. The transformation behavior of N has not yet been fully understood, and the denitrogenation is a critical issue during bio-oil production and upgrading. This review comprehensively summarized the effects of the type, composition, and pretreatment of biomass and HTL processing parameters, such as temperature, residence time, solid loading, reaction solvent, extraction solvent/procedure, and catalyst, on the N content of bio-oil. The N conversion mechanisms in the HTL process were also clarified. Research gaps were identified, and future research directions were finally proposed to achieve the production of bio-oil with low N content.
机译:生物质的水热液化(HTL),特别是高水分,如微藻,大草原,污泥,粪肥和食品废物,在全球范围内广泛关注。然而,这些生物质中的氮气(N)的含量通常是高的,并且在原料生物量中的20-40%的N会在HTL过程中分布到生物油中,在生物油中产生高含量的n含量,有时高达10%wt%。富氮生物油的燃烧可能会诱导氮氧化物大量排放。尚未完全理解N的转化行为,脱氮是生物油生产和升级期间的关键问题。本综述全面地总结了生物量和HTL加工参数的类型,组合物和预处理的影响,例如温度,停留时间,固体加载,反应溶剂,提取溶剂/程序和催化剂,在生物油的N含量上。 HTL过程中的N转换机制也澄清。确定了研究差距,最后提出了未来的研究方向,以实现生物油的产生低N含量。

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