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Impact of vegetation type and pre-processing on product yields and properties following hydrothermal conversion of conservation biomass

机译:植被类型的影响及预加工对保护生物质水热转化后产物产量及性能

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Changes in agricultural practices and land abandonment across less favoured areas have led to an increase in land management for nature conservation. Substantial areas of vegetation are cut annually for habitat management, but the conservation biomass generated is generally discarded. Samples of two types of conservation biomass harvested from marginal sites dominated by rushes (Juncus spp) or bracken (Pteridium aquilinum) were washed and pressed to generate fluid and fibrous process streams using the Integrated Generation of Solid Fuel and Biogas from Biomass (IFBB) process. Previous work established the fluid from the IFBB process could be anaerobically digested to generate enough energy for the washing and pressing stages. The current study focussed on the fibrous process stream, subjecting material to hydrothermal conversion and investigated the extent to which i) vegetation type, ii) the impact of pre-treatment by hot water washing and pressing (partial demineralisation) and iii) hydrothermal conversion route (hydrothermal carbonisation or hydrothermal liquefaction) affected the yields, relative proportions, and characteristics of products generated. Feedstock source had substantially more effect on product chemistry than product yields. The most effective process route for combustion fuel production was based on hydrothermal carbonisation of pre-processed feedstock. However, if bio-oil production was to be the priority product in a biorefinery, then biomass pre-processing would not be required.
机译:农业实践和土地遗弃的变化在不那么青睐地区导致自然保护土地管理增加。每年为栖息地管理减少大量植被,但生成的生物质通常被丢弃。从由Rushes(Juncus SPP)或Bracken(Pteridium Aquilinum)主导的边缘部位收获的两种保护生物质的样本并用生物质(IFBB)工艺使用综合产生固体燃料和沼气(IFBB)工艺产生流体和纤维工艺流。 。以前的工作建立了来自IFBB过程的流体可以是厌氧物质消化以产生足够的能量,用于洗涤和压阶段。目前研究侧重于纤维过程流,进行材料对水热转化,并研究了I)植被类型的程度,ii)热水洗涤和压(部分脱矿化)和III的预处理的冲击水热转化途径(水热碳化或水热液化)影响产量,相对比例和产生的产品的特性。原料源对产品化学的影响大于产物产量。燃烧燃料生产最有效的工艺路线是基于预加工原料的水热碳化。但是,如果生物油生产是生物遗料中的优先产品,则不会要求生物量预处理。

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