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Effects of Nonaerated Circulation Water Velocity on Nutrient Release from Aquaculture Pond Sediments

机译:非充气循环水流速对水产养殖池塘沉积物养分释放的影响

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Sustaining good water quality in aquaculture ponds is vital. Without an aerator, the dissolved oxygen in ponds comes primarily from mass transfer at the water-ambient atmosphere interface. As sediment can seriously affect water quality, this study used indoor experiments to examine the nutrient (nitrogen and phosphorus) release mechanisms and fluxes from sediment in aquaculture ponds with moving water but no aeration. The results showed that the ammonia nitrogen (NH 3 -N) concentration in the overlying water was inversely proportional to flow velocity and that a higher flow velocity tended to result in a lower concentration in the overlying water, a steeper vertical gradient of concentration within the bed sediments, and a faster release rate from the sediments. The sediment disturbed by flowing water released more nitrate nitrogen (NO 3 -N) and nitrite nitrogen (NO 2 -N) into the overlying water and NO 2 -N could become oxidized into NO 3 -N. In still water, NO 3 -N was released gradually and some anaerobic NO 3 -N was nitrified into NO 2 -N. Phosphorus release from the sediments was controlled by the adsorption–desorption balance, with the phosphorus concentration in the overlying water dropping gradually to a steady value from its initial maximum. The relationship between NH 3 -N release flux and flow rate is described by a cubic function.
机译:在水产养殖池塘中保持良好的水质至关重要。如果没有通气器,池塘中的溶解氧主要来自水-环境大气界面处的传质。由于沉积物会严重影响水质,因此该研究使用室内实验来研究在没有通气但没有通气的情况下水产养殖池塘中沉积物的养分(氮和磷)释放通量和通量。结果表明,上覆水中的氨氮(NH 3 -N)浓度与流速成反比,较高的流速往往导致上覆水中的浓度较低,且内层的浓度垂直梯度较陡。沉积物,并且从沉积物中释放的速度更快。受流动水干扰的沉积物将更多的硝酸盐氮(NO 3 -N)和亚硝酸盐氮(NO 2 -N)释放到上覆水中,NO 2 -N可能被氧化为NO 3 -N。在静止水中,NO 3 -N逐渐释放,一些厌氧的NO 3 -N被硝化为NO 2 -N。沉积物中的磷释放受吸附-解吸平衡控制,上覆水中的磷浓度从其初始最大值逐渐下降至稳定值。 NH 3 -N释放通量与流量之间的关系由三次函数描述。

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