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Process Water Recirculation during Hydrothermal Carbonization of Waste Biomass: Current Knowledge and Challenges

机译:废物生物质水热碳化过程中的过程水再循环:当前的知识和挑战

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摘要

Hydrothermal carbonization (HTC) is considered as an efficient and constantly expanding eco-friendly methodology for thermochemical processing of high moisture waste biomass into solid biofuels and valuable carbonaceous materials. However, during HTC, a considerable amount of organics, initially present in the feedstock, are found in the process water (PW). PW recirculation is attracting an increasing interest in the hydrothermal process field as it offers the potential to increase the carbon recovery yield while increasing hydrochar energy density. PW recirculation can be considered as a viable method for the valorization and reuse of the HTC aqueous phase, both by reducing the amount of additional water used for the process and maximizing energy recovery from the HTC liquid residual fraction. In this work, the effects of PW recirculation, for different starting waste biomasses, on the properties of hydrochars and liquid phase products are reviewed. The mechanism of production and evolution of hydrochar during recirculation steps are discussed, highlighting the possible pathways which could enhance energy and carbon recovery. Challenges of PW recirculation are presented and research opportunities proposed, showing how PW recirculation could increase the economic viability of the process while contributing in mitigating environmental impacts.
机译:水热碳化(HTC)被认为是用于高水分废弃生物质的热化学加工成固体生物燃料和有价值的碳质材料的有效和不断扩大生态友好的方法。然而,HTC,相当量的有机物,最初存在于原料中,在该过程中水(PW)中找到。因为它提供了增加碳回收率,同时增加hydrochar能量密度的潜力PW再循环吸引水热工艺领域的兴趣越来越大。 PW再循环可以,无论是通过从液体HTC残余馏分减少的用于该方法的额外的水的量和最大化能量回收被认为是为HTC水相的物价稳定措施和重用一个可行的方法。在这项工作中,PW回流的影响,对于不同的起始废生物质,对hydrochars和液相产物的性质进行了综述。生产和hydrochar的进化过程中再循环步骤的机制进行了讨论,突出可能的途径,这可能加强能量和碳回收。 PW再循环的挑战提出和研究的机会提出,展示了PW再循环可以提高工艺的经济性,同时减轻对环境的影响作出贡献。

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