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Wheat straw biorefinery for agricultural waste valorisation

机译:麦秸秆生物遗料用于农业废物储存

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摘要

This study justifies strategies for a new concept of agricultural waste management prior to biorefinery, based on comprehensive materials science investigations. Efficient pretreatments for the extraction, separation and fractionation of agricultural waste in conjunction with understanding of the details of its microstructure and properties can be essential for high-efficiency biorefinery. The information in this study will serve as a valuable and fundamental basis for researchers and industries in the sector of straw biomass biorefinery. In order to achieve the maximum efficiency possible in agricultural waste valorisation, it is crucial to understand that not all parts of the straw are equally valuable and can be treated in the same biorefinery process. In this study, the wheat straw stem, which is composed of nodes and internodes, has been shown to have distinct properties and characteristics. Separation of these anatomical parts before the biorefinery process presents a unique area for future research investment, as it can lead to higher performance of the intended product. For example, the node has higher extractives and ash content, which prove to be a diminishing factor for biocomposite or bioenergy production.
机译:本研究证明了在综合材料科学调查之前为生物遗产之前的农业废物管理新概念的战略证明了战略。高效预处理,农业废物的提取,分离和分馏,与其微观结构和性能细节的理解,对于高效生物遗料至关重要。本研究中的信息将作为秸秆生物法生物遗产部门的研究人员和行业作为宝贵和基础。为了实现农业废物储存中可能的最大效率,明显不明白,并非所有稻草的所有部分都同样有价值,并且可以在相同的生物填充过程中治疗。在该研究中,已经显示出由节点和节点组成的小麦秸秆茎具有不同的性质和特性。在生物灌注过程之前,这些解剖部位的分离呈现出未来研究投资的独特区域,因为它可以导致预期产品的性能更高。例如,该节点具有较高的提取物和灰分含量,这证明是生物复合材料或生物能源生产的递减因素。

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