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首页> 外文期刊>Biomass & bioenergy >I. Technical assessment for first generation green biorefinery (GBR) using mass and energy balances: Scenarios for an Irish GBR blueprint
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I. Technical assessment for first generation green biorefinery (GBR) using mass and energy balances: Scenarios for an Irish GBR blueprint

机译:I.使用质量和能量平衡对第一代绿色生物精炼厂(GBR)进行技术评估:爱尔兰GBR蓝图的方案

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摘要

"Green biorefinery" (GBR) could be an alternative option for using grassland biomass. GBR involves applying technology to chemically and physically fractionate (split) biomass such as grass and grass silage into marketable products. From the grass fibre fraction insulation materials can be produced. From the grass juice fraction, proteinaceous products for animal feed and lactic acid (LA) for plastic production (polylactic acid - PLA) can be produced. This paper is the first part in the analysis to develop a blueprint for a first generation Irish GBR system. The focus of this paper is on the technical aspects of developing three GBR system models and subsequent scenario analyses. The three GBR system models were a combination of feedstock system and biorefinery technology; Grass/silage-basic technology (GS), Silage-basic technology (S) and Silage-High Tech (AT). The models, which were integrated mass and energy balances, were then assessed at the three different input volumes, to generate nine scenarios. The scenarios which required further economic analysis in a companion paper to determine their overall feasibility (technical and economic) in the development of blueprint for a first generation Irish GBR system were identified. From the technical analysis outlined in this paper six scenarios were identified which require further economic analysis. These were scenarios generated for the GS, S and AT GBR systems, at two input volume rates.
机译:“绿色生物精炼厂”(GBR)可能是使用草地生物质的替代选择。 GBR涉及将技术应用于将草和青贮饲料等生物质进行化学和物理分馏(分裂)成可销售的产品。由草纤维部分可以生产绝缘材料。从草汁馏分中,可以生产用于动物饲料的蛋白质产品和用于塑料生产的乳酸(LA)(聚乳酸-PLA)。本文是为第一代爱尔兰GBR系统制定蓝图的分析的第一部分。本文的重点是开发三种GBR系统模型和后续方案分析的技术方面。三种GBR系统模型是原料系统和生物精炼技术的结合。草/青贮基础技术(GS),青贮基础技术(S)和青贮高科技(AT)。然后,在三个不同的输入量下评估了集成了质量和能量平衡的模型,以生成九种情况。确定了需要在随附文件中进行进一步经济分析以确定其在开发第一代爱尔兰GBR系统蓝图时的总体可行性(技术和经济)的方案。从本文概述的技术分析中,确定了六个需要进一步进行经济分析的方案。这些是为GS,S和AT GBR系统生成的方案,输入速率为两个输入。

著录项

  • 来源
    《Biomass & bioenergy》 |2011年第11期|p.4712-4723|共12页
  • 作者单位

    Teagasc, Johnstown Castle, Wexford, Ireland,Wageningen University and Research Centre, 6708 PB Wageningen, The Netherlands;

    Teagasc, Johnstown Castle, Wexford, Ireland;

    Wageningen University and Research Centre, Wageningen, The Netherlands;

    Wageningen University and Research Centre, Wageningen, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    green biorefinery; biogas; grasslands; silage; technical scenarios; biomass;

    机译:绿色生物精炼厂;沼气草原青贮饲料技术方案;生物质;

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