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微藻生物制氢的现状与挑战。

State of the art and challenges of biohydrogen from microalgae.

机构信息

Puritek Research Institute, Puritek Co. Ltd., Nanjing, China.

Research Centre for Energy Technology and Strategy, National Cheng Kung University, Tainan 701, Taiwan; Department of Chemical Engineering, National Cheng Kung University, Tainan 701, Taiwan.

出版信息

Bioresour Technol. 2019 Oct;289:121747. doi: 10.1016/j.biortech.2019.121747. Epub 2019 Jul 2.

Abstract

Biohydrogen from microalgae has attracted extensive attention owing to its promising features of abundance, renewable and self sustainability. Unlike other well-established biofuels like biodiesel and bioethanol, biohydrogen from microalgae is still in the preliminary stage of development. Criticisms in microalgal biohydrogen centered on its practicality and sustainability. Various laboratory- and pilot-scale microalgal systems have been developed, and some research initiatives have exhibited potential for commercial application. This work provides a review of the state of the art of biohydrogen from microalgae. Discussions include metabolic pathways of light-driven transformation and dark fermentation, reactor schemes and system designs encompassing reactor configurations and light manipulation. Challenges, knowledge gaps and the future directions in metabolic limitations, economic and energy assessments, and molecular engineering are also delineated. Current scientific and engineering challenges of microalgal biohydrogen need to be addressed for technology leapfrog or breakthrough.

摘要

由于微藻生物氢气具有丰富、可再生和自我可持续的特点,因此引起了广泛关注。与其他成熟的生物燃料(如生物柴油和生物乙醇)不同,微藻生物氢气仍处于发展的初步阶段。对微藻生物氢气的批评主要集中在其实用性和可持续性上。已经开发了各种实验室和中试规模的微藻系统,并且一些研究计划已经显示出了商业应用的潜力。这项工作综述了微藻生物氢气的最新技术进展。讨论包括光驱动转化和暗发酵的代谢途径、涵盖反应器配置和光操纵的反应器方案和系统设计。还阐述了在代谢限制、经济和能源评估以及分子工程方面的挑战、知识差距和未来方向。需要解决微藻生物氢气的当前科学和工程挑战,以实现技术飞跃或突破。

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