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Bio Based Batteries

机译:生物基电池

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摘要

The expanding use of electrical power generated from wind turbines and solar photovoltaic plants is enabled by the decreasing cost of electrical energy from sun and wind. With the advent of electrical energy from the intermittent solar and wind energy resources comes the requirement that electricity must be stored for use over time. The huge demand for materials for such storage systems will require a considerable energy input in extraction, processing and materials formulation, and new and sustainable electrochemical systems need to be developed. Storing electrical energy in bio based batteries is one of the options for handling the rapid expansion of renewable and variable electrical energy generated in wind turbines and in solar photovoltaic systems, from small to large. With projected needs for storage at 300 GWh for the coming decade, there are many niches for new technologies and possibilities. A supply line of materials for energy storage materials could be ultimately based on photosynthesis, in the form of materials derived from plants. Redox activity is possible in lignin, humic acid, and polyphenolic macromolecules, sometimes by electrochemical activation of redox groups.
机译:通过从太阳和风的电能降低降低,从风力涡轮机和太阳能光伏厂产生的电力扩展使用。随着来自间歇性太阳能和风能资源的电能的出现,要求将电力储存电力随着时间的推移。对这种存储系统的材料的巨大需求将需要在提取,加工和材料配方中进行相当大的能量输入,并且需要开发新的和可持续的电化学系统。在基于生物电池中存储电能是处理风力涡轮机和太阳能光伏系统中的可再生和可变电能快速扩展的选项之一,从小到大。随着未来十年的300 GWH储存的预计需求,有许多新技术和可能性的利基。用于储能材料的供应管线可以最终基于光合作用,以植物的材料的形式。氧化还原活性在木质素,腐殖酸和多酚醛大分子中可以进行,有时可以通过氧化还原基团的电化学活化。

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