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The hydrogen gas bio-based economy and the production of renewable building block chemicals, food and energy

机译:基于氢气生物的经济性,生产可再生建筑块化学品,食品和能源

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摘要

The carrying capacity of the planet is being exceeded, and there is an urgent need to bring forward revolutionary approaches, particularly in terms of energy supply, carbon emissions and nitrogen inputs into the biosphere. Hydrogen gas, generated by means of renewable energy through water electrolysis, can be a platform molecule to drive the future bioeconomy and electrification in the 21st century. The potential to use hydrogen gas in microbial metabolic processes is highly versatile, and this opens a broad range of opportunities for novel biotechnological developments and applications. A first approach concerns the central role of hydrogen gas in the production of bio-based building block chemicals using the methane route, thus, bypassing the inherent low economic value of methane towards higher-value products. Second, hydrogen gas can serve as a key carbonneutral source to produce third-generation proteins, i.e. microbial protein for food applications, whilst simultaneously enabling carbon capture and nutrient recovery, directly at their point of emission. Combining both approaches to deal with the intermittent nature of renewable energy sources maximises the ability for efficient use of renewable resources.
机译:出现了地球的承载能力,迫切需要提高革命方法,特别是在能量供应,碳排放和氮气投入到生物圈方面。通过水电解通过可再生能量产生的氢气可以是平台分子,以推动21世纪的未来生物经济和电气化。使用微生物代谢过程中的氢气的可能性是高度通用的,这为新颖的生物技术发展和应用开辟了广泛的机会。第一种方法涉及氢气在使用甲烷路线生产生物基构建块化学品中的核心作用,从而绕过甲烷的固有低经济价值朝向高价值产品。其次,氢气可以用作主要的碳化源,以产生第三代蛋白,即食品应用的微生物蛋白,同时直接在其排放点处能够碳捕获和营养恢复。结合两种处理可再生能源间歇性的方法最大限度地提高了有效利用可再生资源的能力。

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