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通过藻类养殖实现废物增值与化学品和材料可持续生产的整合。

Integration of Waste Valorization for Sustainable Production of Chemicals and Materials via Algal Cultivation.

机构信息

International Research Center for Marine Biosciences, Ministry of Science and Technology, Shanghai Ocean University, Shanghai, 201306, China.

Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources, Ministry of Education, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

Top Curr Chem (Cham). 2017 Nov 27;375(6):89. doi: 10.1007/s41061-017-0175-y.

Abstract

Managing waste is an increasing problem globally. Microalgae have the potential to help remove contaminants from a range of waste streams and convert them into useful biomass. This article presents a critical review of recent technological developments in the production of chemicals and other materials from microalgae grown using different types of waste. A range of novel approaches are examined for efficiently capturing CO in flue gas via photosynthetic microalgal cultivation. Strategies for using microalgae to assimilate nitrogen, organic carbon, phosphorus, and metal ions from wastewater are considered in relation to modes of production. Generally, more economical open cultivation systems such as raceway ponds are better suited for waste conversion than more expensive closed photobioreactor systems, which might have use for higher-value products. The effect of cultivation methods and the properties of the waste streams on the composition the microalgal biomass is discussed relative to its utilization. Possibilities include the production of biodiesel via lipid extraction, biocrude from hydrothermal liquefaction, and bioethanol or biogas from microbial conversion. Microalgal biomass produced from wastes may also find use in higher-value applications including protein feeds or for the production of bioactive compounds such as astaxanthin or omega-3 fatty acids. However, for some waste streams, further consideration of how to manage potential microbial and chemical contaminants is needed for food or health applications. The use of microalgae for waste valorization holds promise. Widespread implementation of the available technologies will likely follow from further improvements to reduce costs, as well as the increasing pressure to effectively manage waste.

摘要

全球范围内,废弃物管理是一个日益严峻的问题。微藻具有从多种废物流中去除污染物并将其转化为有用生物质的潜力。本文对利用不同类型废弃物培养微藻生产化学品和其他材料的最新技术进展进行了综述。本文考察了一系列通过光合微藻培养有效捕获烟道气中 CO2 的新颖方法。还考虑了利用微藻从废水中同化氮、有机碳、磷和金属离子的策略,这些策略与生产模式有关。通常,与更昂贵的封闭式光生物反应器系统相比,更经济的开放式培养系统(如养殖池)更适合废物转化,因为后者可能更适用于高附加值产品。本文还讨论了培养方法和废物流特性对微藻生物质组成的影响,以及其利用方式。这些可能性包括通过脂质提取生产生物柴油、通过水热液化生产生物原油,以及通过微生物转化生产生物乙醇或沼气。利用废物生产的微藻生物质也可能在高附加值应用中找到用途,包括蛋白质饲料或生产虾青素或欧米伽-3 脂肪酸等生物活性化合物。然而,对于某些废物流,还需要进一步考虑如何管理食品或健康应用中潜在的微生物和化学污染物。利用微藻进行废物增值具有广阔的前景。随着成本的进一步降低,以及有效管理废物的压力不断增加,这些技术的广泛应用将成为可能。

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