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Decomposition of high protein aquaculture feed under variable oxic conditions

机译:高蛋白水产饲料在不同的有氧条件下分解

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The microbial decomposition of nitrogen-rich organic matter in aquaculture ponds is affected by the oxic-anoxic conditions gradient at the soil-water interface as well as by resuspension practices. To investigate these interactions, the decomposition of a 49% protein fish feed was analyzed in 10 marine lab-scale systems with different exposures to aerobic and anaerobic conditions. The degree of coupling between oxic and anoxic conditions in the system had a strong effect on product accumulation and loss from the culture system. Pure oxic or anoxic conditions proved to be less favorable than mixed aerobic-anaerobic systems with respect to the metabolites accumulated in the system. Short 15-min resuspension events and a continuous alternation of oxic and anoxic conditions at 12-h time intervals proved to be the best options to minimize the accumulation of organic matter in the systems. The correct coupling of aerobic-anaerobic conditions in space and time is a key to maintain a good water quality condition for the cultured animals and also to improve the decomposition and recycling of organic matter, reducing the environmental impact from the effluents.
机译:水产养殖池塘中富氮有机物的微生物分解受到土壤-水界面处的有氧-缺氧条件梯度以及再悬浮做法的影响。为了研究这些相互作用,在10个海洋实验室规模的系统中分析了49%蛋白质鱼饲料的分解情况,这些系统在有氧和无氧条件下的暴露量不同。系统中有氧和无氧条件之间的耦合程度对培养系统中产物的积累和损失有很大的影响。对于系统中积累的代谢物,纯氧或缺氧条件被证明不如混合好氧-厌氧系统好。短短的15分钟重悬浮事件以及以12小时的时间间隔连续改变有氧和无氧条件是减少系统中有机物积累的最佳选择。有氧-无氧条件在时间和空间上的正确耦合是维持养殖动物良好水质条件并改善有机物的分解和循环利用,减少废水对环境影响的关键。

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