首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >The replacement of maize (Zea mays L.) by cup plant (Silphium perfoliatum L.) as biogas substrate and its implications for the energy and material flows of a large biogas plant
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The replacement of maize (Zea mays L.) by cup plant (Silphium perfoliatum L.) as biogas substrate and its implications for the energy and material flows of a large biogas plant

机译:用杯植物(硅氏孔二酯L.)作为沼气基质的玉米(Zea Mays L.)及其对大沼气植物的能量和材料流动的影响

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Excessive cultivation of maize (Zea mays L.) as a biogas substrate has fired debate about potential land-use change effects of bioenergy cropping systems. Cup plant ( Silphium perfoliatum L.) is a perennial biogas crop that provides more environmental services than maize. This study investigated (i) how to replace maize with cup plant as a biogas substrate in a large-scale biogas plant located in southwest Germany, and (ii) how to optimize the energy and material cycles of such a biogas plant given the new feedstock. The biogas plant produces 1000 m(3) biogas per hour with plans for it to be combined with a large dairy farm (1000 dairy units). It was found that the substitution of maize with cup plant as a biogas substrate results in a methane yield reduction of 10% to 20% due to lower biomass yields. However, there exists a strong potential to increase both biomass yields and biogas substrate quality of cup plant by optimizing establishment procedures and better genotypes. Furthermore, cup plant provides food and shelter for open land animals, including birds and insects, and could hence be a suitable alternative to maize for large biogas plants, being more environmentally beneficial. Extracting proteins from cup-plant biomass could also help replace soy with locally produced protein for feeding cattle. Hydrothermal carbonization is a promising tool for closing nutrient cycles and for extracting phosphate from digestate, but more research is needed before it can be put into practice. (c) 2020 The Authors. Biofuels, Bioproducts and Biorefining published by Society of Chemical Industry and John Wiley & Sons, Ltd.
机译:玉米(Zea Mays L.)的过度培养作为沼气基质对生物能量种植系统的潜在土地使用变化效应进行了争论。杯植物(硅仔植物L.)是一种多年生沼气作物,提供比玉米更多的环保服务。本研究调查(i)如何在位于德国西南部的大型沼气厂中用杯子饲料用杯植物替换玉米底物,以及(ii)如何优化这种沼气厂的能量和材料循环给出新的原料。沼气植物每小时生产1000米(3)沼泽,计划与大型奶牛场(1000个乳制品单位)相结合。结果发现,由于较低的生物质产率,玉米用杯植物作为沼气基材的甲烷产量降低10%至20%。然而,通过优化建立程序和更好的基因型来增加杯工厂的生物量产量和沼气基质质量的强大潜力。此外,杯工厂为开放的土地动物提供食物和住所,包括鸟类和昆虫,因此可能是对大型沼气植物的玉米合适的替代品,更加环保。从杯植物生物质中提取蛋白质也可能有助于用局部产生的蛋白质替换大豆以供牛。水热碳化是用于关闭营养循环和从消化中提取磷酸盐的有前途的工具,但在实践中需要更多的研究。 (c)2020作者。由化学工业社会发表的生物燃料,生物源和生物化,约翰瓦里和儿子有限公司发表

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