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Solar energy conversion efficiencies in photosynthesis: Minimizing the chlorophyll antennae to maximize efficiency

机译:光合作用中的太阳能转换效率:最小化叶绿素触角,以最大化效率

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摘要

The theoretical maxima of solar energy conversion efficiencies and productivities in oxygenic photosynthesis are evaluated. These are contrasted with actual measurements in a variety of photosynthetic organisms, including green microalgae, cyanobacteria, C4 and C3 plants. Minimizing, or truncating, the chlorophyll antenna size of the photosystems can improve photosynthetic solar energy conversion efficiency and productivity up to 3-fold. Generation of truncated light-harvesting chlorophyll antenna size (tla) strains, in all classes of photosynthetic organisms would help to alleviate excess absorption of sunlight and the ensuing wasteful dissipation of excitation energy, and to maximize solar-to-product energy conversion efficiency and photosynthetic productivity in high-density mass cultivations. The tla concept may find application in the commercial exploitation of microalgae and plants for the generation of biomass, biofuels, chemical feedstocks, as well as nutraceuticals and pharmaceuticals.
机译:评估了光合作用中太阳能转化效率和生产率的理论最大值。这些与各种光合生物的实际测量结果形成了对比,其中包括绿色微藻,蓝藻,C4和C3植物。最小化或截断光系统的叶绿素天线尺寸可以将光合太阳能转换效率和生产率提高三倍。在所有类型的光合生物中产生截短的集光叶绿素触角大小(tla)菌株,将有助于减轻太阳光的过度吸收和随之而来的激励能量的浪费,并最大程度地提高太阳能到产品的能量转换效率和光合作用高密度大规模种植的生产力。 Tla概念可能会在微藻类和植物的商业开发中用于生产生物质,生物燃料,化学原料以及保健食品和药物。

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