000 02842nab a2200289 a 4500
003 ENAL
008 220929s2022 ua mr ss ||| eng d
040 _aEAL
_cEAL
041 _aeng
_bara
090 _aART MUJSSAE V13 No8 1
100 1 _aEl-Saeidy, E. A.
_934318
240 1 0 _aMansoura university journal of soil sciences and agricultural engineering, 2022 v. 13 (8)
_h[electronic resources].
245 1 0 _aStudy the effect of some engineering factors on the performance of an integrated aquaponic unit
_h[electronic resources]
246 1 5 _aدراسة تأثير بعض العوامل الهندسية علي أداء وحدة أكوابونيك متكامله
300 _a253 - 263 p.
504 _aIncludes references.
520 _aAquaponic system is one of the modern systems that have been used to make the most of the water, in addition to integrating the agriculture of plants and fish together in one production system. It is an innovative, sustainable technology and environmentally friendly. The main objectives of this study are to evaluate the growth performance of Nile tilapia under the aquaponic system for a period of 42 days and to examine the effect of system type (aquaponic and hydroponic systems) and water flow rate of (0.5, 1.5 and 2.5 L/min) on the growth performance of lettuce plants grown in deep water culture technique (DWC) and nutrient film technique (NFT). The obtained results for fish indicated that fish weight, fish length and feed conversion ratio (FCR) were increased during the experimental periods. The results obtained for lettuce plants indicated that root length of the lettuce gradually increased with increasing water flow rates and growth period. the root growth rate was higher in aquaponic system than in hydroponic system. The nutrients consumption rate, water use efficiency and lettuce yield were increased with an increase in the water flow rate from 0.5 to 1.5 L/min and a decrease in the water flow rate from 1.5 to 2.5 L/min. The former parameters were higher in the hydroponic system than in the aquaponic system except for the rate of sodium consumption. The hydraulic loading rate was increased with increasing the water flow rate while the nutrient uptake time decreased with increasing the water flow rate. Keywords: Aquaponic system, Hydroponic system, Water flow rate, Deep water culture technique, Nutrient film technique.
546 _aSummary in Arabic.
650 0 _aHydroponics
_922860
650 0 _aAquaponics
_932247
650 0 _aHydrology
700 1 _aElgeziry, A. A.
_934400
700 1 _aEissa, A. H. A.
773 0 _tMansoura University Journal of Soil Sciences and Agirucultural Engineering.
_g2022.v.13(8)
_x2090-3685
_7nnas
_wu183500
856 4 0 _uhttp://nile.enal.sci.eg/EALE/2022/MUJSSAE/1322/8/253.pdf
_zFull Text Article.
942 _cAR
_2alc
999 _c68298
_d68298