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A conceptual lignocellulosic 'feed+fuel' biorefinery and its application to the linked biofuel and cattle raising industfies in Brazil

机译:概念性木质纤维素“饲料+燃料”生物精炼厂及其在巴西相关生物燃料和养牛业中的应用

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It has been argued by some that the substitution of biofuels for gasoline could increase greenhouse gas (CHG) emissions, rather than reduce them. The increase is attributed to the indirect land use change effects of planting new grain and corn crops around the world to replace those progressively being devoted to ethanol production. In this paper, indirect effects are minimised by allowing land to be used for both food and fuel, rather than for one or the other. We present a sugarcane "feed+fuel' biorefinery, which produces bioethanol and yeast biomass, a source of single-cell protein (SCP), that can be used as a high-protein animal feed supplement. The yeast SCP can partially substitute for grass in the feed of cattle grazing on pasture and thereby potentially release land for increased sugarcane production, with minimal land use change effects. Applying the concept conservatively to the Brazilian ethanol and livestock industry our model demonstrates that it would be technically feasible to raise ethanol production threefold from the current level of 27 GL to over 92 GL. The extra ethanol would meet biofuel market mandates in the US without bringing any extra land into agricultural or pastoral use. The analysis demonstrates a viable way to increase biofuel and food production by linking two value chains as called for by industrial ecology studies.
机译:一些人认为,用生物燃料代替汽油可以增加而不是减少温室气体的排放。增长归因于在世界范围内种植新的谷物和玉米作物以替代逐渐用于乙醇生产的土地和谷物的间接土地利用变化效应。在本文中,通过允许土地既用于食物又用作燃料,而不是用于一种或另一种土地,可以最大程度地减少间接影响。我们介绍了一个甘蔗“饲料+燃料”生物精炼厂,该厂生产生物乙醇和酵母生物质(单细胞蛋白质(SCP)的来源),可用作高蛋白动物饲料补充剂。酵母SCP可以部分替代草在牧场上放牧的牲畜饲料中,从而有可能释放土地以增加甘蔗生产,对土地使用的影响最小。我们将模型保守地应用于巴西乙醇和畜牧业,我们的模型表明将乙醇产量提高三倍在技术上是可行的从目前的27 GL到92 GL以上。多余的乙醇将满足美国生物燃料市场的要求,而无需将任何额外的土地用于农业或牧业用途;分析表明,通过将两个价值联系起来,可以增加生物燃料和粮食产量工业生态学研究要求的链条。

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