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水培系统中微藻的共培养。

Co-cultivation of microalgae in aquaponic systems.

机构信息

Distinguished Guest Professor, Nanchang University and Professor and Director, Center for Biorefining, and Department of Bioproducts and Biosystems Engineering, University of Minnesota, 1390 Eckles Ave., St. Paul, MN 55108, USA.

Distinguished Guest Professor, Nanchang University and Professor and Director, Center for Biorefining, and Department of Bioproducts and Biosystems Engineering, University of Minnesota, 1390 Eckles Ave., St. Paul, MN 55108, USA.

出版信息

Bioresour Technol. 2017 Dec;245(Pt A):27-34. doi: 10.1016/j.biortech.2017.08.151. Epub 2017 Aug 25.

Abstract

Aquaponics is a sustainable system for the future farming. In aquaponic systems, the nutrient-rich wastewater generated by the fish provides nutrients needed for vegetable growth. In the present study, the role of microalgae of Chlorella sp. in the floating-raft aquaponic system was evaluated for ammonia control. The yields of algal biomass, vegetable, and removal of the key nutrients from the systems were monitored during the operation of the aquaponic systems. When the systems were in full operation, the algae production was about 4.15±0.19g/m·day (dry basis) which is considered low because the growth conditions are primarily tailored to fish and vegetable production. However, it was found that algae had a positive effect on balancing pH drop caused by nitrifying bacteria, and the ammonia could be controlled by algae since algae prefer for ammonia nitrogen over nitrate nitrogen. The algae are more efficient for overall nitrogen removal than vegetables.

摘要

水培是未来农业的可持续系统。在水培系统中,鱼类产生的富营养废水为蔬菜生长提供所需的养分。在本研究中,评估了小球藻属微藻在浮筏水培系统中对氨氮控制的作用。在水培系统运行期间,监测了藻类生物量、蔬菜产量和系统中关键养分的去除情况。当系统完全运行时,藻类的产量约为 4.15±0.19g/m·天(干重),这被认为是低的,因为生长条件主要是为鱼类和蔬菜生产定制的。然而,研究发现,藻类对平衡硝化细菌引起的 pH 值下降有积极的影响,并且藻类可以控制氨氮,因为藻类更喜欢氨氮而不是硝酸盐氮。藻类对总氮的去除效率比蔬菜高。

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