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城市污水处理厂中本地和强化藻类种群在营养物去除及生物质生产方面的意义。

Implications of nutrient removal and biomass production by native and augmented algal populations at a municipal wastewater treatment plant.

作者信息

Drexler Ivy L C, Bekaan Sascha, Eskandari Yasmin, Yeh Daniel H

机构信息

Department of Civil & Environmental Engineering, University of South Florida, 4202 E. Fowler Ave, ENB118, Tampa, FL 33620, USA E-mail:

Department of Chemical Engineering, Saxion University of Applied Sciences, P.O. Box 70.000, 7500 KB, Enschede, The Netherlands.

出版信息

Water Sci Technol. 2014;70(7):1152-60. doi: 10.2166/wst.2014.340.

Abstract

Algal monocultures (Chlorella sorokiniana and Botryococcus braunii) and algal communities native to clarifiers of a wastewater treatment plant were batch cultivated in (1) clarified effluent following a biochemical oxygen demand (BOD) removal reactor post-BOD removal clarified effluent (PBCE), (2) clarified effluent following a nitrification reactor post-nitrification clarified effluent (PNCE), and (3) a reference media (RM). After 12 days, all algal species achieved nitrogen removal between 68 and 82% in PBCE and 37 and 99% in PNCE, and phosphorus removal between 91 and 100% in PBCE and 60 and 100% in PNCE. The pH of the wastewater samples increased above 9.8 after cultivation of each species, which likely aided ammonia volatilization and phosphorus adsorption. Both monocultures grew readily with wastewater as a feedstock, but B. braunii experienced significant crowding from endemic fauna. In most cases, native algal species' nutrient removal efficiency was competitive with augmented algal monocultures, and in some cases achieved a higher biomass yield, demonstrating the potential to utilize native species for nutrient polishing and algal biomass production.

摘要

将小球藻(Chlorella sorokiniana)和布朗葡萄藻(Botryococcus braunii)等藻类单种培养物以及污水处理厂澄清池中的本地藻类群落,在以下三种环境中进行分批培养:(1)在生化需氧量(BOD)去除反应器之后的澄清出水,即去除BOD后的澄清出水(PBCE);(2)硝化反应器之后的澄清出水,即硝化后的澄清出水(PNCE);(3)一种参考培养基(RM)。12天后,所有藻类物种在PBCE中的氮去除率达到68%至82%,在PNCE中的氮去除率为37%至99%;在PBCE中的磷去除率为91%至100%,在PNCE中的磷去除率为60%至100%。每种藻类培养后,废水样本的pH值升高至9.8以上,这可能有助于氨的挥发和磷的吸附。两种单种培养物都能以废水为原料顺利生长,但布朗葡萄藻受到本地生物群的显著挤压。在大多数情况下,本地藻类物种的养分去除效率与强化的藻类单种培养物相当,在某些情况下生物量产量更高,这表明利用本地物种进行养分净化和藻类生物质生产具有潜力。

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