Agricultural and Biosystems Engineering Department, Faculty of Agriculture, Benha University, P.O. Box 13736, Moshtohor, Toukh, Kalubia, Egypt.
Basic and Applied Science Department, College of Engineering and Technology, Arab Academy for Science and Technology and Maritime Transport (AASTMT), P.O. Box 2033, Cairo, Egypt.
Sci Rep. 2023 Oct 16;13(1):17505. doi: 10.1038/s41598-023-44707-1.
Aquaponics is the combined culture of fish and plants in recirculating aquaculture systems, considered to be an innovative, eco-friendly and sustainable technology. The effect of the hydraulic loading rate (HLR) on the performance of fish and plants in the aquapoinc system was the main aim of this study. Four hydraulic loading rates were applied, 1.2, 1.8, 2.4 and 3.0 m day under stocking density tilapia fish of 5 kg m and lettuce population of 25 plant m for a period of January to March, 2023. Water parameters, plant and fish parameters were determined. The most important results revealed that the highest plant nutrients removal was at HLR of 2.4 m day. The highest value of water parameters were found at the HLR of 2.4 m day. Root length increased with increasing HLR. Fresh and dry shoot and root weight values were higher at 2.4 m day compared to other treatments under study. Meanwhile, fish growth parameter showed higher values at the HLR of 3.0 m day compared to other treatments. The highest values of weight gain, feed growth rate, specific growth rate and feed conversion ratio were 81.72 g, 1.36 g day, 1.88% day and 1.20 g feed g fish, respectively, for all treatments under study.
水培是在循环水产养殖系统中养殖鱼类和植物的综合方法,被认为是一种创新、环保和可持续的技术。本研究的主要目的是研究水力负荷率(HLR)对水培系统中鱼类和植物性能的影响。在 2023 年 1 月至 3 月期间,在每立方米 5 公斤罗非鱼的放养密度和每平方米 25 株生菜的基础上,分别应用 1.2、1.8、2.4 和 3.0 m·天的四个水力负荷率。测定了水参数、植物和鱼类参数。最重要的结果表明,在 HLR 为 2.4 m·天时,植物养分去除率最高。在 HLR 为 2.4 m·天时,水参数的最高值。根长随 HLR 的增加而增加。与其他处理相比,在 2.4 m·天时,鲜重和干重的茎和根的重量值更高。同时,鱼类生长参数在 HLR 为 3.0 m·天时显示出更高的值。在所有研究处理中,增重、饲料增长率、特定增长率和饲料转化率的最高值分别为 81.72 g、1.36 g·天、1.88%·天和 1.20 g 饲料·g 鱼。