Growth, Productivity and Nutrient Uptake Rates of Ulva lactuca and Devaleraea mollis Co-Cultured with Atractoscion nobilis in a Land-Based Seawater Flow-Through Cascade IMTA System

被引:1
作者
Huo, Yuanzi [1 ]
Elliott, Matthew S. [1 ]
Drawbridge, Mark [1 ]
机构
[1] Hubbs SeaWorld Res Inst, San Diego, CA 92109 USA
关键词
biofilter; nutrient dynamics; eutrophication; bioremediation; mariculture; DULSE PALMARIA-MOLLIS; TROPHIC AQUACULTURE SYSTEM; PACIFIC DULSE; ENHANCED PRODUCTION; RED ABALONE; NITRITE EXPOSURE; BIOMASS YIELD; BIOFILTER; SEAWEED; CULTURE;
D O I
10.3390/fishes9100417
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
To advance environmentally friendly technologies in the aquaculture of Atractoscion nobilis, and simultaneously to diversify seafood production, a 79-day trial was conducted to assess the performance of Ulva lactuca and Devaleraea mollis cultured in the effluent from A. nobilis in a land-based integrated multi-trophic aquaculture (IMTA) system in southern California, USA. Water quality and performance of macroalgae were measured weekly. The impacted factors on the growth of macroalgae and nutrient uptake rate of macroalgae were assessed. The specific growth rate of juvenile A. nobilis was 0.47-0.52%/d. Total ammonia nitrogen in effluents of A. nobilis tanks ranged from 0.03 to 0.19 mg/L. Ulva lactuca and D. mollis achieved an average productivity of 24.53 and 14.40 g dry weight (DW)/m2/d. The average nitrogen content was 3.48 and 4.89% DW, and accordingly, the average nitrogen uptake rate was 0.88 and 0.71 g/m2/d, respectively. Temperature and nutrient concentration were key factors impacting macroalgae growth, and light intensity also impacted the growth of D. mollis. The high protein content of U. lactuca and D. mollis would make them good for use as human or animal food, or for use in other industries. Research on the interaction effects between seawater exchange rates and aeration rates on the performance and nutrient uptake rates of macroalgae will be conducted in future studies.
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页数:16
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