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Harvesting and pre-treatment of microalgae cultivated in wastewater for biodiesel production: A review

机译:生物柴油生产废水中培养的微藻的收获和预处理:综述

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摘要

Cultivation of microalgae using wastewater has received considerable attention around the globe as a platform to remove inorganic nutrients from the wastewater and producing microalgae biomass for biodiesel production. This can be done by converting freely available nutrients from the wastewater (particularly nitrogen, N and phosphorus, P) into microalgae biomass with concomitant carbon dioxide (CO2) sequestration via photosynthesis process. In fact, microalgae biodiesel could help to reduce greenhouse gas (GHG) emissions to the atmosphere through the replacement of fossil diesel as it is made from renewable resources. Despite the various benefits to produce microalgae biodiesel, a number of technical hurdles such as complex processes, requirement of high energy input during cultivation and dewatering (harvesting steps) need to be addressed for commercialization purpose. Besides, additional pre-treatment step is necessary to disrupt the microalgae cell wall to enhance lipid extraction efficiency. Hence, this paper is aims to reveal in-depth analysis and discussions on the process of microalgae-based wastewater treatment as well as microalgae cells disruption technology for lipid extraction. The paper also includes several new directions for technological improvements to improve commercialization potential of microalgae biodiesel.
机译:作为废水从平台去除无机营养物并生产用于生物柴油生产的微藻生物质的平台,使用废水的微藻培养已经受到了全球的广泛关注。这可以通过将来自废水(尤其是氮,氮和磷,磷)的自由利用的养分转化为微藻生物质来实现,同时通过光合作用将二氧化碳(CO2)隔离。实际上,微藻生物柴油可以通过替代化石柴油来帮助减少向大气排放的温室气体(GHG),因为化石柴油是由可再生资源制成的。尽管生产微藻生物柴油具有多种好处,但出于商业化目的,仍需要解决许多技术障碍,例如复杂的工艺,在种植和脱水(收获步骤)过程中需要大量能量输入。此外,需要额外的预处理步骤来破坏微藻细胞壁以提高脂质提取效率。因此,本文旨在揭示对基于微藻类的废水处理过程以及用于提取脂质的微藻类细胞破碎技术的深入分析和讨论。本文还包括技术改进的新方向,以提高微藻生物柴油的商业化潜力。

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