首页> 外文期刊>North American Journal of Aquaculture >Winter pond fertilization can increase phytoplankton density in aquaculture ponds.
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Winter pond fertilization can increase phytoplankton density in aquaculture ponds.

机译:冬季池塘施肥可以增加水产养殖池塘的浮游植物密度。

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Effective winter fertilization would be beneficial under certain production systems in the southeastern USA. Maintaining a phytoplankton bloom during the winter has the potential to shade macrophytes, discourage filamentous algae, and provide natural foraging opportunities for fish during warmer days; this would be advantageous. An additional benefit of a winter bloom would be to produce turbidity, thereby possibly reducing bird predation. The objective of this study was to determine if winter fertilization could increase phytoplankton to greater biomass than in nonfertilized control ponds. Six ponds served as controls and six ponds received an initial dose of nitrogen at 20 kg/ha and phosphorus at 2 kg/ha in mid-November. Over the following five weeks, treatment ponds received one-half the initial dose once per week, and then continued to receive the half dose once per month in January, February, and March. Fertilization led to increases in total ammonia nitrogen, nitrite, and nitrate. The water temperature ranged from a low of 5 degrees C to a high of 16.8 degrees C (mean of 10.2 degrees C) over the entire study. Even though water temperatures were low and light intensity is less in winter, fertilization caused a significant increase in chlorophyll a over the study. The increase in total algal biomass was not due to an increase in any specific algal group, but rather a general biomass increase in most algal groups. Cryptophyta tended to be the most common phytoplankton division throughout the study. Although this fertilization protocol increased algal biomass, there were no differences in zooplankton abundance between fertilized and nonfertilized ponds. In contrast to the currently held belief that winter fertilization is ineffective, this study shows that winter fertilization can increase algal blooms. Therefore, future studies should determine if blooms created from winter fertilization can increase growth of planktivorous fish, shade macrophytes, discourage filamentous algae, or produce turbidity which could reduce bird predation.
机译:在美国东南部的某些生产系统下,有效的冬季施肥将是有益的。在冬季保持浮游植物的开花有可能遮盖大型植物,阻止丝状藻类,并在温暖的天气为鱼类提供自然的觅食机会;这将是有利的。冬季开花的另一个好处是会产生浑浊,从而可能减少鸟类的捕食。这项研究的目的是确定冬季施肥是否可以使浮游植物增加到比未施肥的对照池塘更大的生物量。 11月中旬,有六个池塘作为对照,六个池塘的氮素初始剂量为20千克/公顷,磷素为2千克/公顷。在接下来的五周内,治疗池每周接受一次初始剂量的一半,然后在1月,2月和3月继续每月接受一次半剂量。施肥导致总氨氮,亚硝酸盐和硝酸盐的增加。在整个研究过程中,水温范围从低5摄氏度到高16.8摄氏度(平均10.2摄氏度)。尽管冬季水温较低且冬季的光照强度较小,但施肥仍使叶绿素a显着增加。总藻类生物量的增加不是由于任何特定藻类组的增加,而是大多数藻类组中总体生物量的增加。在整个研究中,隐藻往往是最常见的浮游植物分裂。尽管这种施肥方案增加了藻类生物量,但在施肥和未施肥的池塘之间,浮游动物的丰度没有差异。与当前认为冬季施肥无效的信念相反,这项研究表明冬季施肥可以增加藻华。因此,未来的研究应确定冬季施肥产生的水华是否可以增加鳞状鱼类,荫生植物的生长,阻止丝状藻类的生长或产生可减少鸟类捕食的浊度。

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