首页> 外文期刊>Aquaculture >Proportional up scaling of African catfish (Clarias gariepinus Burchell, 1822) commercial recirculating aquaculture systems disproportionally affects nutrient dynamics
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Proportional up scaling of African catfish (Clarias gariepinus Burchell, 1822) commercial recirculating aquaculture systems disproportionally affects nutrient dynamics

机译:非洲鲶鱼的比例扩大(Clarias Gariepinus Burchell,1822)商业循环水产养殖系统对养分动力学产生了不成比例的影响

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摘要

This study reports nutrient dynamics during the "Run-in-", "Batch-" and "Staggered 1 - 3" production phases of African catfish (Clarias gariepinus Burchell, 1822) in commercial warm water recirculation aquaculture systems (RAS) under three different stocking densities, extensive (max 50 kg m(-3); 35 fish tank(-1)), semi-intensive (max 100 kg m(-3); 70 fish tank(-1)) and intensive (max 200 kg m(-3); 140 fish tank(-1)) at similar system volumes of 13.9, 15.1 and 16.9 m(3). The concentrations of the dissolved macronutrients Total Ammonia Nitrogen (TAN, as NH4+-N), nitrite (NO2--N), nitrate (NO3--N), Total Dissolved Nitrogen (TDN), Total Oxidized Nitrogen (TON), phosphorus (measured as ortho-phosphate) (P), potassium (K), calcium (Ca) and magnesium (Mg) were monitored with colorimetric analyses and budgeted for potential use for aquaponics. We found, that stocking density and RAS maintenance affected oxygen thresholds, subsequently affecting nutrient concentrations of NO3--N due to denitrification. K proportionally increased with feed input, while Ca, Mg and P reacted disproportionally, because of precipitation. Highest deviation was observed for TON, especially when oxygen levels dropped & 6 mg L-1. Maintenance intervals, feed ratios and resulting oxygen levels changed dissolved nutrient concentrations, with highest concentrations under intensive stocking density, medium feed input and oxygen & 6 mg L-1, and lowest under semi-intensive stocking density, high feed input and oxygen & 6 mg L-1. Calculated nutrient budgets under consideration of stocking density, feed input and water exchange rates demonstrated that the production conditions affected nutrient availability and output. The macronutrient ratios TDN, P, K, Ca and Mg as well as the physical and chemical parameters changed constantly under production conditions, due to daily adjusted feeding and RAS maintenance. This must be considered during process management, in stand-alone commercial catfish aquaculture as well as in integrated systems such as aquaponics.
机译:本研究报告了在三个不同的商业温水再循环水产养殖系统(RAS)的“relias-in-”,“批量 - ”和“交错1 - 3”生产阶段(Clarias gariepinus Burchell,1822)的“交错1 - 3”生产阶段放养密度,广泛(最多50公斤(-3); 35个鱼缸(-1)),半密集(最多100公斤M(-3); 70个鱼缸(-1))和密集(最多200公斤m(-3);在类似系统体积的140个鱼缸(-1)),13.9,15.1和16.9 m(3)。溶解的常规营养素总氨氮(TaN,As NH 4 + -N),亚硝酸盐(NO 2 -N),硝酸盐(NO 3 - N),总溶解氮(TDN),总氧化氮(TON),磷(测量以正交磷酸盐)(p),用比色分析监测(P),钾(K),钙(Ca)和镁(Mg),并预算潜在用于水产物。我们发现,阻碍密度和RAS维护影响氧阈值,随后由于反硝化而影响NO3 - N的营养浓度。 k随着饲料输入比例增加,而CA,Mg和P由于沉淀,不成比例地反应。对于吨,特别是当氧水平下降时,观察到最高偏差。 6毫克L-1。维护间隔,饲料比率和产生的氧气水平改变溶解营养浓度,在密集的放养密度,中饲进入和氧气和氧气下具有最高浓度; GT; 6毫克L-1,在半密集放养密度下最低,进料输入和氧气& 6毫克L-1。考虑放量密度,饲料输入和水交换率的计算营养预算证明了生产条件影响营养有利和产量。由于日常调节的饲养和RAS维护,Macronurient RatiO TDN,P,K,CA和Mg以及物理和化学参数在生产条件下变化不断变化。这必须在流程管理期间考虑,在独立商业鲶鱼水产养殖以及诸如Aquaponics等集成系统中。

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