01825nam a22001577a 4500003000400000005001700004008004100021040000900062100002200071245008800093260005400181300006800235500122200303500008701525504005501612OSt20250321082456.0250321b |||||||| |||| 00| 0 eng d cNVSU aAnton, Felicio C. aEffects of hydraulic loading on a deep water culture aquaponics/cFelicio C. Anton  aBayombong:bNueva Vizcaya State University,c2020 axv, 62 leaves :billustrations (some colored), photos ;c28 cm. aThis study was conducted to determine the effects of hydraulic loading on deep-water culture design aquaponics particularly on Nitrogen level, Dissolved Oxygen, pH, Temperature, Plant Height, Plant Weight, Fish Length, Fish Weight and its economic analysis. The hydraulic loadings were set at 4.6 m/day, 7.0 m/day and 9.1 m/day as treatments. The experimental units were composed of 200 liters fish tank, 60 liters on both biofilters and sump, and 1 m² grow beds. The fishes reared were Nile Tilapia (Oreochromis Niloticus) and the plants were Green Ice Lettuce (Lactuca Sativa). Hydraulic loading of 9.1 m/day significantly decreases the levels of Ammonia, Nitrites and Nitrates to 0.23 mg/1, 0.30 mg/l and 5.74 mg/l respectively, which are lowest level observed from the treatments. Dissolved oxygen, pH, Temperature, Plant Height and Fish Length are not affected by the variation of hydraulic loadings. Average plant weight of 20.26 g/plant, the highest among the treatment, is measured at 4.6 m/day. Average fish weight of 192.73 g/fish, the highest recorded among the treatments, is measured from the 7.0 m/day. For the economic analysis, the 4.6 m/day showed the highest Return on Investment (ROI) of 18.54%. aThesis (Master of Science in Agricultural Engineering - Soil and Water Management) aIncludes appendices and bibliographical references