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废水培养的蓝藻生产聚合物:现状、挑战和未来展望。

Production of polymers by cyanobacteria grown in wastewater: Current status, challenges and future perspectives.

机构信息

GEMMA - Environmental Engineering and Microbiology Research Group, Department of Hydraulic, Maritime and Environmental Engineering, Universitat Politècnica de Catalunya -BarcelonaTech, c/Jordi Girona 1-3, Building D1, E-08034, Barcelona, Spain.

GEMMA - Environmental Engineering and Microbiology Research Group, Department of Hydraulic, Maritime and Environmental Engineering, Universitat Politècnica de Catalunya -BarcelonaTech, c/Jordi Girona 1-3, Building D1, E-08034, Barcelona, Spain.

出版信息

N Biotechnol. 2020 Mar 25;55:46-57. doi: 10.1016/j.nbt.2019.09.001. Epub 2019 Sep 18.

Abstract

Cyanobacteria are prokaryotic oxygenic phototrophs receiving attention in a wide variety of technological applications such as food and feed supplements and production of valuable polymers. Among these, carbohydrates (e.g. glycogen) and polyhydroxyalkanoates (PHAs) are of increasing interest due to their potential as a biofuel substrate and bioplastics, respectively. However, biofuels and bioplastics from cyanobacteria have seen many years of effort towards commercialization with only limited success. Their main limitation for polymer production is the high cost of the nutrient source; wastewater, as an inexpensive and widely available alternative, may overcome this bottleneck. Though cyanobacteria have demonstrated a capacity to treat wastewater effluents, their cultivation in such a variable environment involves certain challenges of which the chief one is linked to contamination by other species, especially green algae. This would represent a serious drawback during cyanobacterial biomass production and affect further PHA and carbohydrate production. The present study reviews the potential of cyanobacteria to grow in wastewater effluents from different sources. Conditions favoring them in mixed-culture reactors are described, focusing on nutritional and operational aspects. Current advances and future prospects in PHA and carbohydrate production are explored and discussed.

摘要

蓝藻是原核产氧光合自养生物,在食品和饲料补充剂以及有价值聚合物的生产等多种技术应用中受到关注。在这些应用中,由于它们分别作为生物燃料底物和生物塑料的潜力,碳水化合物(例如糖原)和聚羟基链烷酸酯(PHA)越来越受到关注。然而,蓝藻生物燃料和生物塑料的商业化已经进行了多年,但只取得了有限的成功。它们用于聚合物生产的主要限制因素是营养源的高成本;废水作为一种廉价且广泛可用的替代物,可能会克服这一瓶颈。尽管蓝藻已被证明具有处理废水的能力,但在这种多变的环境中培养它们涉及到一些挑战,其中主要的挑战与其他物种(尤其是绿藻)的污染有关。在蓝藻生物质生产过程中,这将是一个严重的缺陷,并会影响进一步的 PHA 和碳水化合物生产。本研究综述了蓝藻在不同来源的废水废水中生长的潜力。描述了有利于它们在混合培养反应器中生长的条件,重点关注营养和操作方面。探讨和讨论了 PHA 和碳水化合物生产的当前进展和未来前景。

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