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Towards Bio-Hybrid Energy Harvesting in the Real-World: Pushing the Boundaries of Technologies and Strategies Using Bio-Electrochemical and Bio-Mechanical Processes

机译:实现现实世界中的生物混合能量收获:使用生物电化学和生物机械工艺推动技术和策略的界限

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摘要

Sustainable, green energy harvesting has gained a considerable amount of attention over the last few decades and within its vast field of resources, bio-energy harvesters have become promising. These bio-energy harvesters appear in a wide variety and function either by directly generating energy with mechanisms similar to living organisms or indirectly by extracting energy from living organisms. Presently this new generation of energy harvesters is fueling various low-power electronic devices while being extensively researched for large-scale applications. In this review we concentrate on recent progresses of the three promising bio-energy harvesters: microbial fuel cells, enzyme-based fuel cells and biomechanical energy harvesters. All three of these technologies are already extensively being used in small-scale applications. While microbial fuel cells hold immense potential in industrial-scale energy production, both enzyme-based fuel cells and biomechanical energy harvesters show promises of becoming independent and natural power sources for wearable and implantable devices for many living organisms including humans. Herein, we summarize the basic principles of these bio-energy harvesting technologies, outline their recent advancements and estimate the near future research trends.
机译:可持续,绿色能源收获在过去的几十年中,在其巨大的资源领域,生物能源收割机已经有望。这些生物能量收割机通过直接产生能量,通过与生物体中的能量分开地或间接地产生具有类似的机制的能量,或者通过从生物体中提取能量的机制出现各种各样的功能。目前,这种新一代的能量收割机正在推动各种低功率电子设备,同时广泛研究大规模应用。在这篇综述中,我们专注于三个有前途的生物能量收割机的最新进展:微生物燃料电池,基于酶的燃料电池和生物力学能量收割机。这些技术中的所有三个都已经广泛用于小规模应用。虽然微生物燃料电池在工业规模能源生产中保持巨大潜力,但基于酶的燃料电池和生物力学能量收割机都表现出用于可穿戴和植入设备的独立和天然电源的承诺,其中许多生物体包括人类。在此,我们总结了这些生物能量收集技术的基本原则,概述了他们最近的进步并估计了不久的未来研究趋势。

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