无氧光合作用
生物燃料
光合作用
制氢
固氮酶
氢
生物制氢
代谢工程
化学
能量载体
环境科学
生化工程
光养
生物技术
生物
氮气
生物化学
固氮
有机化学
酶
工程类
作者
James B. McKinlay,Caroline S. Harwood
标识
DOI:10.1016/j.copbio.2010.02.012
摘要
Solar energy can be converted into chemical energy in the form of hydrogen gas using oxygenic and anoxygenic photosynthetic microbes. Laboratory-scale measurements suggest that photobiological hydrogen production rates could yield more energy than current crop-based biofuel productivities. Major challenges, such as inhibitory amounts of oxygen produced during oxygenic photosynthesis and inhibition of H(2)-producing nitrogenase by ammonia, are being overcome through genetic engineering. Further advances are expected as the metabolic and regulatory aspects behind photobiological hydrogen production are revealed. Genetic engineering, coculturing, and bioreactor designs making use of immobilized cells have the potential to increase conversion efficiencies of light energy to H(2) and to decrease the land area needed for photobiological H(2) production.
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