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微藻光生物反应器用于污染物处理的设计与应用的综述评价

A critical review on designs and applications of microalgae-based photobioreactors for pollutants treatment.

机构信息

Centre for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney, Sydney, NSW 2007, Australia.

Centre for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney, Sydney, NSW 2007, Australia.

出版信息

Sci Total Environ. 2019 Feb 15;651(Pt 1):1549-1568. doi: 10.1016/j.scitotenv.2018.09.282. Epub 2018 Sep 22.

Abstract

The development of the photobioreactors (PBs) is recently noticeable as cutting-edge technology while the correlation of PBs' engineered elements such as modellings, configurations, biomass yields, operating conditions and pollutants removal efficiency still remains complex and unclear. A systematic understanding of PBs is therefore essential. This critical review study is to: (1) describe the modelling approaches and differentiate the outcomes; (2) review and update the novel technical issues of PBs' types; (3) study microalgae growth and control determined by PBs types with comparison made; (4) progress and compare the efficiencies of contaminants removal given by PBs' types and (5) identify the future perspectives of PBs. It is found that Monod model's shortcoming in internal substrate utilization is well fixed by modified Droop model. The corroborated data also remarks an array of PBs' types consisting of flat plate, column, tubular, soft-frame and hybrid configuration in which soft-frame and hybrid are the latest versions with higher flexibility, performance and smaller foot-print. Flat plate PBs is observed with biomass yield being 5 to 20 times higher than other PBs types while soft-frame and membrane PBs can also remove pharmaceutical and personal care products (PPCPs) up to 100%. Looking at an opportunity for PBs in sustainable development, the flat plate PBs are applicable in PB-based architectures and infrastructures indicating an encouraging revenue-raising potential.

摘要

光生物反应器(PBs)的发展最近作为一项前沿技术引人注目,而 PBs 的工程元素(如建模、配置、生物量产量、操作条件和污染物去除效率)的相关性仍然复杂且不明确。因此,系统地了解 PBs 是至关重要的。本批判性综述研究旨在:(1)描述建模方法并区分结果;(2)综述和更新 PBs 类型的新型技术问题;(3)研究由 PBs 类型决定的微藻生长和控制,并进行比较;(4)研究 PBs 类型对污染物去除效率的进展和比较;(5)确定 PBs 的未来前景。结果发现,Monod 模型在内部基质利用方面的缺点被改进的 Droop 模型很好地修正了。佐证数据还指出了一系列 PBs 类型,包括平板、圆柱、管状、软框架和混合配置,其中软框架和混合配置是最新版本,具有更高的灵活性、性能和更小的占地面积。平板 PBs 的生物量产量比其他 PBs 类型高 5 到 20 倍,而软框架和膜 PBs 也可以去除高达 100%的药物和个人护理产品(PPCPs)。从 PBs 在可持续发展中的机会来看,平板 PBs 适用于基于 PBs 的架构和基础设施,显示出令人鼓舞的增收潜力。

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