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首页> 外文期刊>Journal of Applied Phycology >Integrated multi-trophic farming system between the green seaweed Ulva lactuca, mussel, and fish: a production and bioremediation solution
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Integrated multi-trophic farming system between the green seaweed Ulva lactuca, mussel, and fish: a production and bioremediation solution

机译:绿色海藻Ulva Lactuca,贻贝和鱼类之间的集成多营养养殖系统:生产和生物修复解决方案

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摘要

Practices of aquaculture production may generate potential pollutants that cause environmental pressure. In this context, a recommendation to mitigate the environmental impacts caused by aquaculture waste would be using and recycling such nutrients, considered as pollutants, in an eco-efficient way, with approaches such as the integrated multi-trophic aquaculture (IMTA). This system integrates the culturing of organisms with different and complementary ecosystem functions. This study aimed to investigate the ecosystem capacity of Ulva lactuca in wastewater bioremediation in an IMTA system with mussel and fish effluents. For such, three systems were set up: (1) algae cultivated with seawater, (2) algae with effluent from fish, and (3) algae with effluent from fish and mussels. Ulva lactuca proved to be a suitable species for the IMTA system with high growth and easy handling in cultivation. Algal growth rate, nutrient uptake (N and P) and O-2 production increased significantly as the succession of trophic levels increased, demonstrating the high ecosystem capacity of U. lactuca for wastewater bioremediation as well as the use and recycling of eutrophication agents for biomass production. The highest absorption/removal of dissolved nitrogen occurred in the form of NH4+, a N form with the greatest metabolic advantage for photosynthetic assimilation, but toxic in high concentrations. The present IMTA system showed a balance between inputs and outputs, denoting sustainable and efficient characteristics of several ecosystem goods and services.
机译:水产养殖生产的实践可能产生导致环境压力的潜在污染物。在这方面,提出减轻水产养殖废物造成的环境影响的建议将使用并以生态有效的方式使用和循环为污染物的营养成分,其中综合多途径水产养殖(IMTA)等方法。该系统与不同和互补的生态系统功能融合了对生物的培养。本研究旨在探讨贻贝和鱼类流出物中IMTA系统废水生物修复中ULVA Lactuca的生态系统能力。对于这样,建立了三种系统:(1)用海水培养的藻类,(2)藻类,来自鱼的流出物,(3)藻类来自鱼类和贻贝的流出物。 Ulva Lactuca被证明是IMTA系统的合适物种,具有高增长和培养方便。随着营养水平的连续增加,藻类生长速率,营养摄取(N和P)和O-2产生显着增加,展示了U.Lactuca对废水生物化的高生态系统能力以及用于生物质的富营养化剂的使用和再循环生产。溶解氮的最高吸收/除去以NH 4 +的形式发生,具有最大的代谢优势,用于光合作用同化,但高浓度有毒。本IMTA系统在输入和输出之间显示了平衡,表示若干生态系统和服务的可持续和有效特征。

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