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Use of fish species from different trophic levels to control algae and water quality: An enclosure experiment in eutrophic area of Xiaojiang River

机译:利用不同营养级别的鱼类来控制藻类和水质:小江富营养化地区的封闭试验

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摘要

The effects of stocking both filter-feeding fish and piscivorous fish were compared to the effects of stocking only filter-feeding fish for suppressing algal blooms and improving water quality in the impoundment area of Xiaojiang River where catfish were dominant. Using only filter-feeding fish for algal suppression and water quality control was more effective in the short-term, but use of both filter-feeding fish and piscivorous fish was better in the long-term. Obvious suppression of phytoplankton biomass (PB) only occurred during the first 14 days regardless of the fish stocked. Adding fish to the enclosure clearly alters phytoplankton community structure and introducing piscivorous fish to an enclosure stocked with filter-feeding fish changed the relative densities of dominant algae species. While stocking filter-feeding fish decreased total nitrogen concentration by removing phytoplankton, it did not effectively decrease total phosphorus and Chlorophyll a concentrations. Introducing piscivorous fish to the enclosure weakened the relationship between nutrients and phytoplankton. Results indicate that stocking only filter-feeding fish to improve water quality and suppress phytoplankton in an impoundment area is insufficient and other technologies and means should be applied simultaneously.
机译:将放养滤食性鱼类和食鱼性鱼类的效果与仅放养滤食性鱼类的抑制for水和改善improving鱼占主导地位的小江蓄水区水质的效果进行了比较。短期内仅使用滤食性鱼类抑制藻类和水质控制更为有效,但长期使用滤食性鱼类和带食性鱼类则更好。无论是否放养鱼类,浮游植物生物量(PB)的抑制作用仅在头14天内发生。将鱼添加到围栏中显然会改变浮游植物的群落结构,将食鱼鱼引入装有滤食性鱼类的围栏中会改变优势藻类的相对密度。放养以滤食为食的鱼可通过去除浮游植物来降低总氮浓度,但不能有效降低总磷和叶绿素a的浓度。将带食性鱼类引入围栏,削弱了养分与浮游植物之间的关系。结果表明,仅放养滤食性鱼类以改善水质并抑制蓄水区浮游植物是不够的,应同时应用其他技术和手段。

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