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Effects of Environmental Factors and Nutrient Availability on the Biochemical Composition of Algae for Biofuels Production: A Review

机译:环境因素和养分利用率对藻类生物燃料生产中生物化学成分的影响

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摘要

Due to significant lipid and carbohydrate production as well as other useful properties such as high production of useful biomolecular substrates (e.g., lipids) and the ability to grow using non-potable water sources, algae are being explored as a potential high-yield feedstock for biofuels production. In both natural and engineered systems, algae can be exposed to a variety of environmental conditions that affect growth rate and cellular composition. With respect to the latter, the amount of carbon fixed in lipids and carbohydrates (e.g., starch) is highly influenced by environmental factors and nutrient availability. Understanding synergistic interactions between multiple environmental variables and nutritional factors is required to develop sustainable high productivity bioalgae systems, which are essential for commercial biofuel production. This article reviews the effects of environmental factors (i.e., temperature, light and pH) and nutrient availability (e.g., carbon, nitrogen, phosphorus, potassium, and trace metals) as well as cross-interactions on the biochemical composition of algae with a special focus on carbon fixation and partitioning of carbon from a biofuels perspective.
机译:由于大量的脂质和碳水化合物生产以及其他有用的特性(例如,大量生产有用的生物分子底物(例如,脂质)以及使用非饮用水来源的生长能力),藻类正在作为一种潜在的高产原料进行开发生物燃料生产。在天然和工程系统中,藻类都可能暴露于各种影响生长速率和细胞组成的环境条件下。关于后者,固定在脂质和碳水化合物(例如淀粉)中的碳量受环境因素和养分利用率的很大影响。开发可持续的高生产率生物藻类系统需要了解多个环境变量和营养因素之间的协同相互作用,这对于商业生物燃料生产至关重要。本文回顾了环境因素(即温度,光照和pH)和养分利用率(例如碳,氮,磷,钾和微量金属)的影响以及交叉相互作用对藻类生化成分的影响,并提出了一种特殊的方法。从生物燃料的角度着眼于碳的固定和碳的分配。

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