在解耦 FLOCponics 系统中加强天气泥鳅(Misgurnus anguillicaudatus)和莴苣(Lactuca sativa)的室内培养

Fishes Pub Date : 2024-04-23 DOI:10.3390/fishes9050150
Junseong Park, Ju-ae Hwang, Jongryeol Choe, Donggil Lee, Hyeongsu Kim
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摘要

由于鱼菜共生(AP)能够最大限度地减少污水排放,最大限度地提高养鱼业的饲料效率,人们对它的兴趣与日俱增。然而,由于集约化养殖的局限性和作物生长所需的养分(如 NO3)的缺乏,鱼菜共生需要使用人工养分。因此,需要采用新方法来开发 AP 密集养殖方法。有人推荐了一种基于生物絮团技术(BFT)的 AP 系统,称为 FLOCponics(FP)。在此,我们分析了风化泥鳅(Misgurnus anguillicaudatus)在 FP 系统、BFT 系统和直流系统(FTS)中的生产率,以及这些系统对 Caipira 莴苣(Lactuca sativa)生长的影响。为了比较作物产量,安装了一个水培(HP)床。M. anguillicaudatus 的生长率显示出显著差异,在 FP 系统中为 51.1 ± 3.69%,其次是 BFT 系统中的 24.0 ± 4.16%和 FTS 系统中的 -14.3 ± 1.4%。其存活率在 FP 系统中(91.1 ± 2.64%)优于 BFT 系统(82.1 ± 10.98%)或 FTS 系统(66.8 ± 2.75%)(p < 0.05)。在实验期间,每个小区的总氨氮和 NO2-N 浓度都趋于稳定。但是,在 BFT 系统中,NO3--N 浓度持续上升,而在 FP 系统中,NO3--N 浓度下降并保持不变。Caipira 莴苣的芽重在 FP 系统中为 163.6 ± 8.65 克,在 HP 系统中为 149.6 ± 9.05 克。总之,FP 系统可以提供大量的营养物质,提高鱼类和作物在 FP 系统中的生长性能。
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Enhancing Indoor Culture of Weather Loach (Misgurnus anguillicaudatus) and Caipira Lettuce (Lactuca sativa) in a Decoupled FLOCponics System
Interest in aquaponics (AP) is increasing due to its ability to minimize sewage and maximize feed efficiency in fish farming. However, owing to limitations of intensive cultures and a lack of nutrients such as NO3 for growing crops, AP requires the use of artificial nutrients. Therefore, novel approaches are required to develop AP-intensive culturing methods. An AP system based on biofloc technology (BFT) called FLOCponics (FP) has been recommended. Here, the productivity of the weather loach (Misgurnus anguillicaudatus) in the FP system, BFT system, and flow-through systems (FTSs), as well as these systems’ effect on Caipira lettuce (Lactuca sativa) growth, was analyzed. To compare crop productivity, a hydroponic (HP) bed was installed. The growth rate of M. anguillicaudatus showed significant differences, at 51.1 ± 3.69% in the FP system, followed by 24.0 ± 4.16% in the BFT system and −14.3 ± 1.4% in the FTS. Its survival rates were better in the FP system (91.1 ± 2.64%) than in the BFT system (82.1 ± 10.98%) or the FTS (66.8 ± 2.75%) (p < 0.05). Total ammonia nitrogen and NO2−-N concentrations were stabilized in every plot during the experimental period. However, the NO3−-N concentration continuously increased in the BFT system but decreased in the FP system and was maintained. The shoot weight of the Caipira lettuce was 163.6 ± 8.65 g in the FP system and 149.6 ± 9.05 g in the HP system. In conclusion, FP system can provide a large amount of nutrients and improve the growth performance of both fish and crops in the FP system.
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