全面和合乎道德地利用世界生物质资源综述

Garcia Fernandez
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引用次数: 0

摘要

在传统做法中,未经加工的生物质资源被运往生物精炼厂,在那里经过预加工成为原料,然后再转化为各种产品。由于能源作物、伐木残留物和农业残留物等各种形式的生物材料都是根据其生长周期和最佳收获时间段收获的,因此无法按时向生物精炼厂持续供应生物质。生物材料通常按需储存,然后运往生物精炼厂。目前的做法导致了物流、火灾和微生物导致的生物质降解以及因运送的生物质材料特性变化而导致的原料质量不稳定等各种挑战。这一点在以往的实践中已有所体现。上述因素导致生物炼油厂的原料成本增加、加工能力下降、产品产量减少。本研究介绍了一种新方法,以应对前面讨论过的生物质原料采购、保留和初步加工的传统方法所带来的挑战。这一策略包括三个基本要素:第一,在整个生物质储存过程中对其进行保存和准备;第二,纳入所有生物质成分,即使是那些通常被视为垃圾或杂质的成分;第三,优化每种成分的价值。这种新方法的实施包括在生物质生产源附近建立原料预处理库。
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A Review of Comprehensive and Ethical Utilization of the Worlds Biomass Resources
In conventional practice, unprocessed biomass resources are transported to biorefineries where they undergo preprocessing to become feedstock before undergoing conversion into various products. The constant supply of biomass to biorefinery cannot be achieved on a just-in-time basis due to the fact that various forms of biomaterials, such as energy crops, logging residue, and agricultural residue, are harvested based on their cycle of development and optimum harvesting timeframe. Biomaterials are typically stored and subsequently transported to biorefineries on an as-needed basis. The current approach has resulted in various challenges concerning logistics, biomass degradation caused by fire and microorganisms, and irregular quality of feedstock as a result of the changing characteristics of the delivered biomass materials. This has been observed through previous encounters. The aforementioned factors have resulted in elevated feedstock expenses, reduced processing capacity, and diminished product output for biorefineries. The present study introduces a novel approach to tackle the challenges associated with conventional methods of biomass feedstock procurement, retention, and preliminary processing, as discussed earlier. This strategy comprises three fundamental elements: firstly, the conservation and preparation of biomass throughout its storage; secondly, the incorporation of all biomass components, even those typically deemed as refuse or impurities; and thirdly, the optimization of the worth of each component. The implementation of this novel methodology involves the establishment of feedstock preprocessing depots in close proximity to the sources of biomass production
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