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Sustainable saline microalgae co-cultivation for biofuel production: A critical review

机译:可持续盐水微藻共培养用于生物燃料生产:关键评论

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Microalgae have gained increased attention as a viable, eco-friendly and alternative source of green bioenergy. To compete in the fuel market, saline microalgae cultivation for biofuel production would need to be economically sustainable and co-cultivation of saline microalgae using only saline water and recycled nutrient can potentially be the best solution to reduce the excessive use and prompt downsizing of natural resources like fresh water and fertilizers. This review provides a critical analysis on the selection of potential biofuel producing marine, halotolerant and halophilic microalgae. Here we proposed a microalgae co-cultivation strategy from seawater salinity (35ppt) to salt saturation (300ppt) with biofuel as the main output. We focused that adaptation of a co-cultivation strategy could reduce 95%, 74% and 51% of the overall nutrient waste compared to the monoculture of marine, halotolerant and halophilic microalgae. This paper also highlights a cultivation strategy using both mono and mixed culture over the period of increased saline condition and compares mass industrial scale biofuel production from microalgae in three sites in Western Australia.
机译:作为一种可行的,生态友好的绿色生物能源的替代来源,微藻类已引起越来越多的关注。为了在燃料市场上竞争,用于生物燃料生产的盐水微藻种植必须在经济上可持续,并且仅使用盐水和循环养分共培养盐水微藻可能是减少过度使用和迅速缩小自然资源规模的最佳解决方案。像淡水和肥料。这篇评论提供了关于潜在生物燃料生产海洋,卤化钾和嗜盐微藻的选择的关键分析。在这里,我们提出了以生物燃料为主要产出的从海水盐度(35ppt)到盐饱和度(300ppt)的微藻共培养策略。我们着重指出,与海洋,卤代耐盐和嗜盐微藻的单一培养相比,采用共同培养策略可以减少95%,74%和51%的总营养浪费。本文还重点介绍了在盐分增加的时期内采用单培养和混合培养的栽培策略,并比较了西澳大利亚州三个地点的微藻大规模工业规模生物燃料生产。

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