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The multi‐feedstock biorefinery – Assessing the compatibility of alternative feedstocks in a 2G wheat straw biorefinery process

机译:多原料生物遗料 - 评估2G小麦秸秆生物遗料工艺中替代原料的兼容性

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For second‐generation (2G) bioethanol refineries, the feedstock supply is one of the important parameters in terms of cost and consistency. Biorefineries are in most cases designed for a specific type of feedstock. For some biorefineries, the use of multiple feedstocks is an option, but how would such feedstocks perform when used in a process designed and optimized for a specific feedstock? There is no “one‐size‐fits‐all” processing package, due to variations in composition and structure of different feedstock types, but due to the size of commercial biorefineries, only minor adjustments of the processing parameters are practically feasible. In this study, 16 alternative feedstocks were characterized and compared to the benchmark feedstock wheat straw under identical processing conditions. The alternative feedstocks studied were as follows: barley straw, rye straw, grass straw, oat straw, Norway spruce sawdust, mixed softwood sawdust, oat wrap, biogas fiber, deep litter, washed deep litter, ryegrass fiber, lucerne fiber, ryegrass chaff, mixed grain chaff, rapeseed press cake, and beer production mash. These biomasses varied in carbohydrate content and accessibility after hydrothermal pretreatment. Applying a hydrothermal pretreatment under identical conditions, the subsequent enzymatic convertibility of these biomasses ranged from 0.5% to complete conversion based on their glucan content. Water retention value was determined and correlated with enzymatic convertibility, which provided a simple method for indirect measurement of biomass recalcitrance. Ethanol potentials were estimated based on carbohydrate release from enzymatic hydrolysis, and yeast toxicity test was performed on liquid fractions from hydrothermal pretreatment. Furthermore, a number of key processing indicators, including market price, logistics and availability, were taken into consideration based on a proposed full‐scale 2G ethanol plant in Denmark. The overall results show that while some feedstocks had inferior performance compared to wheat straw, identical or even superior performance was observed from barley, oat, and ryegrass feedstocks.
机译:对于第二代(2G)生物乙醇炼油厂,原料供应是成本和一致性方面的重要参数之一。生物寄生在大多数用于特定类型原料的情况下。对于一些生物档案,使用多种原料是一种选择,但是这种原料将如何在为特定原料设计和优化的过程中使用时执行?由于不同原料类型的组成和结构的变化,没有“单尺寸适合 - 所有”加工包,但由于商业生物档的尺寸,只有对处理参数的微小调整实际上是可行的。在该研究中,在相同的加工条件下表征了16种替代原料并与基准原料小麦秸秆相比。研究的替代原料如下:大麦秸秆,黑麦秸秆,草稻草,燕麦秸秆,挪威云杉锯末,混合软木锯末,燕麦纤维,沼泽纤维,深垃圾,水肺纤维,岩油纤维,黑麦粉,混合谷物谷壳,菜籽新闻蛋糕和啤酒生产醪。这些生物质在水热预处理后的碳水化合物含量和可用性变化。在相同条件下施加水热预处理,这些生物质的随后的酶促可转化性范围为0.5%,以基于其葡聚糖含量完成转化。测定水保持值并与酶促可转化性相关,这为生物质批量进行间接测量的简单方法提供了一种简单的方法。基于酶水解的碳水化合物释放估计乙醇电位,并对来自水热预处理的液体级分进行酵母毒性试验。此外,根据丹麦的拟议的2G乙醇植物,考虑了许多关键处理指标,包括市场价格,物流和可用性,包括拟议的2G乙醇植物。总体结果表明,虽然一些原料与小麦秸秆相比具有较差的性能,但从大麦,燕麦和黑麦草原料中观察到相同或甚至优越的性能。

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