首页> 外文期刊>Review in aquaculture >Bioremediation potential, growth and biomass yield of the green seaweed, Ulvalactuca in an integrated marine aquaculture system at the Red Sea coast of Saudi Arabia at different stocking densities and effluent flow rates
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Bioremediation potential, growth and biomass yield of the green seaweed, Ulvalactuca in an integrated marine aquaculture system at the Red Sea coast of Saudi Arabia at different stocking densities and effluent flow rates

机译:不同放养密度和污水流速下沙特阿拉伯红海沿岸综合海洋水产养殖系统中绿藻Ulvalactuca的生物修复潜力,生长和生物量产量

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Growth, production and biofiltration rates of seaweed, Ulvalactuca were investigated at two stocking densities (3kg and 6kgm(-2)) and two effluent flow rates (5.4 and 10.8m(3)day(-1)) to optimize an integrated mariculture system at Saudi Red Sea coast. effluents from fish-rearing tank, stocked with 200kg fish (Oreochromisspilurus), fed to six seaweed tanks via sedimentation tank. Fish growth (weight gain 1.75g fish day(-1)), net production (NP, 10.16kgm(-3)) and survival (94.24%) were within acceptable limits. Ulva showed significantly higher (F=62.62, d.f. 3, 35; P<0.0001) specific growth rates at lower density compared with higher density and under high flow versus low flow (SGR=5.78% vs. 2.55% at lower flow and 10.60% vs. 6.26% at higher flow). Biomass yield of Ulva at low- and high-stocking densities (111.11 and 83.2g wet wt m(-2)day(-1), respectively) at low flow and (267.44 and 244.19g wet wt m(-2)day(-1), respectively) at high flow show that high flow rate and lower density favoured growth. Removal rates of total ammonia nitrogen (TAN) (0.26-0.31gm(-2)day(-1)) and phosphate phosphorus (0.32-0.41gm(-2)day(-1)) by U.lactuca were not significantly different (F=1.9, d.f. 3, 59; P=0.1394 for TAN and F=0.29, d.f. 3, 59; P=0.8324 for phosphates) at both the flow rates and stocking densities. Results show that the effluent flow rate has significant impact over the performance of the seaweed than stocking density.
机译:在两种放养密度(3kg和6kgm(-2))和两种出水流速(5.4和10.8m(3)day(-1))下研究了海藻Ulvalactuca的生长,生产和生物过滤速率,以优化集成海水养殖系统在沙特红海沿岸。养鱼池的废水中放有200千克鱼(Oreochromisspilurus),并通过沉淀池喂入六个海藻池。鱼类生长(增重1.75g鱼日(-1)),净产量(NP,10.16kgm(-3))和成活率(94.24%)均在可接受的范围内。在较高密度下和高流量下与低流量下相比,低密度下的Ulva表现出明显更高的(F = 62.62,df 3,35; P <0.0001)比生长速率(SGR = 5.78%,较低流量下为2.55%,而低流量下为10.60%流量较高时为6.26%)。低流量和高投放密度(分别为111.11和83.2g湿wt m(-2)day(-1))和低流量和(267.44和244.19g湿wt m(-2)day( -1)分别在高流量下显示出高流量和较低密度有利于生长。乳杆菌对总氨氮(TAN)(0.26-0.31gm(-2)day(-1))和磷酸盐磷(0.32-0.41gm(-2)day(-1))的去除率没有显着差异(在流速和放养密度下)(对于TAN,F = 1.9,df 3,59;对于TAN,P = 0.1394;对于磷酸盐,F = 0.29,df 3,59; P = 0.8324)结果表明,出水流速对海藻性能的影响比放养密度大。

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