Pond cascades as a tool for ecological aquaculture allowing natural zooplankton succession, nutrient retention, and multiple stocking–harvesting cycles

IF 3.6 2区 农林科学 Q2 AGRICULTURAL ENGINEERING
Lenka Kajgrová , Oldřich Pecha , Koushik Roy , Jaromír Dvořák , Marek Let , Jan Potužák , Jaroslav Vrba , Martin Bláha
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Abstract

Fishpond cascades represent interconnected artificial ecosystems with multifaceted ecological and economic potential. This study investigated the fishpond cascade integrated into an agricultural landscape in South Bohemia (Czechia), employed for advanced fry production without any manuring and feeding. Four interconnected fishponds (area 1–3 ha, 1 m mean depth, batch release–refilling of water) were studied over one growing season. Results demonstrated effective nutrient recycling and removal through the cascade, showcasing its self-purification ability. Both total phosphorus and total nitrogen concentrations in the last pond of the cascade averaged at 55 % and 61 % of those in the first pond, respectively. Zooplankton communities displayed seasonal succession patterns with the dominance of microcrustaceans (mainly Daphnia spp.), influencing the early diets of predatory fish. The multiple stocking–multiple harvesting strategy (MSMH) was employed to maximize fish production. Albeit naturally low survival rates (3–16 %) of advanced fish fry in ponds, the ecological and economic benefits of MSMH in the pond cascade system were evident. The study indicated that pond cascade systems can be environment-friendly and economically efficient for advanced fry production, contributing to landscape sustainability, water quality, and cultural heritage. The study encourages, where appropriate local conditions allow, the establishment of pond cascade systems as an ecological engineering concept bridging aquaculture and sustainable landscape development, as well as contributing to bioremediation and other ecosystem services.

将池塘级联作为生态水产养殖的工具,允许浮游动物自然演替、营养保留和多次放养-捕捞循环
鱼塘级联是相互连接的人工生态系统,具有多方面的生态和经济潜力。本研究调查了融入南波西米亚(捷克)农业景观的鱼塘级联,该级联用于高级鱼苗生产,无需任何肥料和饲料。在一个生长季节内,对四个相互连接的鱼塘(面积 1-3 公顷,平均水深 1 米,分批放水-再注水)进行了研究。结果表明,级联能有效回收和去除养分,展示了其自净能力。级联最后一个池塘的总磷和总氮平均浓度分别为第一个池塘的 55% 和 61%。浮游动物群落呈现出季节性演替模式,以微型甲壳类(主要是水蚤)为主,影响了掠食性鱼类的早期食性。为了最大限度地提高鱼类产量,采用了多次放养、多次捕捞的策略(MSMH)。尽管鱼苗在池塘中的存活率自然较低(3-16%),但在池塘梯级系统中,MSMH 的生态和经济效益显而易见。该研究表明,池塘级联系统可以以环境友好和经济高效的方式生产高级鱼苗,为景观可持续性、水质和文化遗产做出贡献。该研究鼓励在当地条件允许的情况下,建立池塘级联系统,作为连接水产养殖和可持续景观发展的生态工程概念,并促进生物修复和其他生态系统服务。
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来源期刊
Aquacultural Engineering
Aquacultural Engineering 农林科学-农业工程
CiteScore
8.60
自引率
10.00%
发文量
63
审稿时长
>24 weeks
期刊介绍: Aquacultural Engineering is concerned with the design and development of effective aquacultural systems for marine and freshwater facilities. The journal aims to apply the knowledge gained from basic research which potentially can be translated into commercial operations. Problems of scale-up and application of research data involve many parameters, both physical and biological, making it difficult to anticipate the interaction between the unit processes and the cultured animals. Aquacultural Engineering aims to develop this bioengineering interface for aquaculture and welcomes contributions in the following areas: – Engineering and design of aquaculture facilities – Engineering-based research studies – Construction experience and techniques – In-service experience, commissioning, operation – Materials selection and their uses – Quantification of biological data and constraints
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