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首页> 外文期刊>Aquacultural Engineering: An International Journal >An evaluation of solid waste capture from recirculating aquaculture systems using a geotextile bag system with a flocculant-aid.
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An evaluation of solid waste capture from recirculating aquaculture systems using a geotextile bag system with a flocculant-aid.

机译:使用带絮凝剂的土工布袋系统评估循环水产养殖系统中的固体废物捕获量。

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摘要

Two separate geotextile bag systems were evaluated as a means for capturing and dewatering bio-solids in the effluent stream from recirculating aquaculture systems (RAS). Each geotextile bag system used a high molecular weight cationic polyacrylamide (PAM) polymer as a flocculant-aid. The two systems were operated under freshwater and brackish water conditions. A complete analysis including water quality and agronomic sludge analysis was conducted at the North Carolina State University Fish Barn - a large-scale, freshwater RAS demonstration and growout facility. An evaluation of water quality and performance of a similar geotextile bag system was also conducted at the Marine Aquaculture Research Center near Marshallberg, North Carolina, USA, under brackish conditions (15 PPT). Results indicated that performance of each of the systems was similar with TSS, COD, TN, and TP removal greater than 95%, 65%, 50%, and 38%, respectively, for both systems. Analysis of the sludge collected in the freshwater system after 70 days in a dewatering, inactive mode, showed a moisture content (MC) of 86%, or 14% dry matter (DM), indicating the system was effective at passively dewatering the bio-solids. Nutrient removal efficiency may be system specific based on the geotextile bag size and influent flow rate. Geotextile bag systems using flocculant-aids are an efficient means for capturing and dewatering waste solids from RAS effluents. Optimized geotextile bag system designs depend on flow rate, feed rate, and solids dewatering time, and fate of the treated effluent. This evaluation will aid in predicting the expected performance and determining the appropriate size of a geotextile bag system. The type of treatment required downstream from the geotextile bag system used for solids capture in a RAS wastewater treatment system will depend on the intended fate of the treated effluent.
机译:对两种独立的土工布袋系统进行了评估,以作为捕获和脱水循环水产养殖系统(RAS)废水中的生物固体的一种方法。每个土工布袋系统都使用高分子量阳离子聚丙烯酰胺(PAM)聚合物作为絮凝剂助剂。这两个系统在淡水和微咸水条件下运行。在北卡罗莱纳州立大学鱼谷仓进行了包括水质和农艺污泥分析在内的完整分析,这是大型的淡水RAS示范和养殖设施。在咸淡条件下,在美国北卡罗来纳州马歇尔贝格附近的海洋水产养殖研究中心也对水质和类似土工布袋系统的性能进行了评估(15 PPT)。结果表明,每个系统的性能相似,两个系统的TSS,COD,TN和TP去除率分别大于95%,65%,50%和38%。在以非活动脱水模式运行70天后,对淡水系统中收集的污泥的分析显示,其水分含量(MC)为86%,或干物质(DM)为14%,表明该系统可有效地对生物垃圾进行被动脱水。固体。根据土工布袋尺寸和进水流速,营养去除效率可能因系统而异。使用絮凝剂的土工布袋系统是从RAS废水中收集和脱水固体废物的有效方法。优化的土工布袋系统设计取决于流速,进料速度和固体脱水时间以及处理后废水的命运。该评估将有助于预测预期性能并确定土工布袋系统的合适尺寸。用于在RAS废水处理系统中捕获固体的土工布袋系统下游所需的处理类型将取决于处理后的废水的预期结局。

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