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Expanding the biomass resource: sustainable oil production via fast pyrolysis of low input high diversity biomass and the potential integration of thermochemical and biological conversion routes

机译:扩大生物质资源:通过低投入高多样性生物质的快速热解以及热化学和生物转化路线的潜在整合实现可持续的石油生产

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摘要

Waste biomass is generated during the conservation management of semi-natural habitats, and represents an unused resource and potential bioenergy feedstock that does not compete with food production. Thermogravimetric analysis was used to characterise a representative range of biomass generated during conservation management in Wales. Of the biomass types assessed, those dominated by rush (Juncus effuses) and bracken (Pteridium aquilinum) exhibited the highest and lowest volatile compositions respectively and were selected for bench scale conversion via fast pyrolysis. Each biomass type was ensiled and a sub-sample of silage was washed and pressed. Demineralization of conservation biomass through washing and pressing was associated with higher oil yields following fast pyrolysis. The oil yields were within the published range established for the dedicated energy crops miscanthus and willow. In order to examine the potential a multiple output energy system was developed with gross power production estimates following valorisation of the press fluid, char and oil. If used in multi fuel industrial burners the char and oil alone would displace 3.9 × 105 tonnes per year of No. 2 light oil using Welsh biomass from conservation management. Bioenergy and product development using these feedstocks could simultaneously support biodiversity management and displace fossil fuels, thereby reducing GHG emissions. Gross power generation predictions show good potential.
机译:废物生物量是在半自然栖息地的保护管理过程中产生的,代表着未使用的资源和潜在的生物能源原料,无法与粮食生产竞争。热重分析法用于表征威尔士保护管理过程中产生的代表性生物量范围。在所评估的生物质类型中,以速溶(Juncus effuses)和蕨菜(蕨菜(Pteridium aquilinum))为主的那些生物质分别表现出最高和最低的挥发性成分,并被选择用于通过快速热解进行实验规模转化。青贮每种生物质,并洗涤和压榨青贮料的子样品。快速热解后,通过洗涤和压榨使保护生物质脱盐与更高的油收率相关。石油产量在为专用能源作物桔和柳树确定的已公布范围内。为了检查潜力,在压榨流体,炭和油增值之后,开发了具有总发电量估计值的多输出能源系统。如果将其用于多燃料工业燃烧器,仅使用焦炭和石油,就可以利用保护管理中的威尔士生物质,每年替代3.9×10 5 吨2号轻油。使用这些原料的生物能源和产品开发可以同时支持生物多样性管理和替代化石燃料,从而减少温室气体排放。总发电量预测显示出良好的潜力。

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