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首页> 外文期刊>Aquaculture >Effect of C/N ratio levels and stocking density of Labeo victorianus on pond environmental quality using maize flour as a carbon source.
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Effect of C/N ratio levels and stocking density of Labeo victorianus on pond environmental quality using maize flour as a carbon source.

机译:以玉米粉为碳源的太白唇烟的碳氮比水平和放养密度对池塘环境质量的影响。

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The main obstacle in developing intensive fish culture is waste management which is detrimental to the environment. To mitigate environmental impacts associated with effluent discharge, measures should be put in place to avoid deterioration of the pond environment. The addition of carbon materials into culture facilities while manipulating the levels of carbon and nitrogen ratios is one of the best strategies of controlling ammonia and nitrite in ponds. This study was carried out in 18 hapas suspended in six, 150 m2 earthen ponds to investigate the effects of C/N ratios (10 and 20) and stocking density (10, 15 and 25 fish m-2) on water quality, sediment quality and growth of Labeo victorianus. All treatments were carried out in triplicate during a time period of 72 days. A locally formulated and prepared feed containing 30% crude protein with a C/N ratio of 10 was applied. Maize flour was used as the carbohydrate source for manipulating C/N ratio and applied to the water column separately from the feed. Increasing C/N ratio from 10 to 20 reduced (P<0.001) the total ammonia nitrogen (TAN), nitrite-nitrogen (NO2-N) and nitrate-nitrogen (NO3-N) in the water column and total nitrogen in the sediment (P<0.001). It also raised sediment pH, organic matter and total phosphorus (P<0.001). The lowest protein efficiency ratio (PER), specific growth rate (SGR) and the highest food conversion ratio for the feed were recorded with a C/N ratio of 10 (P<0.05). Based on highest growth, survival, production and net benefits, C/N ratio of 20 and a stocking density of 25 fish m-2 are optimal. Therefore, carbohydrate addition in L. victorianus culture is a promising option for sustainable aquaculture.
机译:发展集约化鱼类养殖的主要障碍是对环境有害的废物管理。为了减轻与废水排放有关的环境影响,应采取措施避免池塘环境恶化。向养殖设施中添加碳材料,同时控制碳氮比的水平是控制池塘中氨和亚硝酸盐的最佳策略之一。这项研究是在悬浮于六个150 m 2 土池中的18个哈帕鱼中进行的,以研究C / N比(10和20)和放养密度(10、15和25条鱼m < (sup> -2 )来评价维多利亚腊肠的水质,沉积物质量和生长。所有治疗均一式三份地进行,为期72天。使用含有30%粗蛋白且C / N比为10的本地配制和制备的饲料。玉米粉用作控制C / N比的碳水化合物来源,并与饲料分开施用到水柱上。将C / N比从10增加到20可减少(P <0.001)总氨氮(TAN),亚硝酸盐氮(NO 2 -N)和硝酸盐氮(NO 3 < / sub> -N)和沉积物中的总氮(P <0.001)。它还提高了沉积物的pH,有机质和总磷(P <0.001)。饲料的最低蛋白质效率比(PER),比生长率(SGR)和最高食物转化率记录为C / N为10(P <0.05)。基于最高的生长,生存,生产和净收益,C / N比为20,放养密度为25条鱼m -2 是最佳的。因此,在维多利亚乳酸菌培养物中添加碳水化合物是可持续水产养殖的有前途的选择。

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