SCHEDULING A SMART HYDROPONIC SYSTEM TO RAISE WATER USE EFFICIENCY

Document Type : Original Article

Authors

1 Researcher, Irrigation and Drainage Eng. Dept., Ag. Eng. Res. Inst., (ARC), Giza, Egypt.

2 Researcher, Ag. Mechanization Operations Systems Dept., Ag. Eng. Res. Inst., (ARC), Giza, Egypt.

Abstract

The presented study aims to create smart hydroponics scheduling to raise water use efficiency of the cucumber crop in a greenhouse by setting up and building a smart Wi-Fi controller unit based on the limited moisture sensing level in the growth media (sand). The water retention materials was added to the growth media (sand) like, composite and perlite compared to sand only as a control. The experimental study was carried out at Tractors and Farm Machinery Research and Test Station, Alexandria Governorate. The results showed that using composite and perlite materials led to increase the moisture content for growth media compared with sand only. The lowest water consumption (Wt) was 115 L/m2 by using composite treatment, while the highest Wt was 211 L/m2 with sand-only treatment. The highest cucumber yield (Y) was 19.7 kg/m2 by using the perlite, while the lowest Y was 12.7 kg/m2 with sand only. The highest water use efficiency (WUE) was 167 kg/m3 by using the treatment of composite, while the lowest WUE was 60 kg/m3 with sand-only treatment. In contrast, WUE increased by (177, 158 %) by using composite and perlite materials with sand as growth media compared with sand only. According to the obtained results, applying a smart scheduling system recommend based on the Wi-Fi technique with composite to improve water retention in the sandy media. Thus, this led to save water in the hydroponics and raising yield and WUE.

Keywords

Main Subjects


Abd-elhakim, A. I. (2019). Soil conditioner effect on soil wetting patterns under pulsed drip irrigation system. Misr Journal of Agricultural Engineering, 36(2): 473-492.‏
Abioye, E. A.; Abidin, M. S. Z., Mahmud, M. S. A., Buyamin, S., Ishak, M. H. I., Abd Rahman, M. K. I., and Ramli, M. S. A. (2020). A review on monitoring and advanced control strategies for precision irrigation. Computers and Electronics in Agriculture, 173, 105441.‏
Acuña, R. A.; Bonachela, S., Magán, J. J., Marfà, O., Hernández, J. H., and Cáceres, R. (2013). Reuse of rockwool slabs and perlite grow-bags in a low-cost greenhouse: Substrates physical properties and crop production. Scientia Horticulturae, 160, 139-147.‏
Ali, A. F. A. (2011). Study of Conditioning Effect of Hydrogels on Some Physical and Chemical Properties of Sandy Soil and Some Physiological Aspects in Cultivated Plants. A Thesis PhD, Bottany department, Facullty of Science, Sohag University.
Al-Jabari, M.; Ghyadah, R. A., and Alokely, R. (2019). Recovery of hydrogel from baby diaper wastes and its application for enhancing soil irrigation management. Journal of environmental management, 239, 255-261.‏
Andry, H.; Yamamoto, T., Irie, T., Moritani, S., Inoue, M., and Fujiyama, H. (2009). Water retention, hydraulic conductivity of hydrophilic polymers in sandy soil as affected by temperature and water quality. Journal of Hydrology, 373(1-2): 177-183.‏
Cassel, D. K.; and Nielsen, D. R. (1986). Field capacity and available water capacity. Methods of soil analysis: Part 1 Physical and mineralogical methods, 5, 901-926.‏
Chemicals, H. (2014). Nutritional recommendations for cucumber in open field's tunnels and greenhouses. Haifa Chemicals ltd.‏
Gallardo, M.; Thompson, R. B., and Fernández, M. D. (2013). Water requirements and irrigation management in Mediterranean greenhouses: the case of the southeast coast of Spain. Good Agricultural Practices for Greenhouse Vegetable Crops; Plant Production and Protection Paper, 217, 109-136.‏
Grewal, H. S.; Maheshwari, B., and Parks, S. E. (2011). Water and nutrient use efficiency of a low-cost hydroponic greenhouse for a cucumber crop: An Australian case study. Agricultural Water Management, 98(5): 841-846.‏
Hassan, A. A. (2012). The Origins of Protected Agriculture. 1st Ed, Arab House for Publishing and Distribution. Cairo, Egypt.
Incrocci, L.; Thompson, R. B., Fernandez-Fernandez, M. D., De Pascale, S., Pardossi, A., Stanghellini, C., and Gallardo, M. (2020). Irrigation management of European greenhouse vegetable crops. Agricultural Water Management, 242, 106393.‏
Ismail, S. M. (2002). Design and management of field irrigation systems. 1st Ed. Munshat elmaearif. Alex., Egypt. (In Arabic).
Ismail, S. M. (2009). Planning and Design of Irrigation Systems. Bostan elmarafa library, Alex., Egypt. (In Arabic).
James, L. G. (1988). Principles of farm irrigation systems design. John Wiley and Sons Limited.
Khalil, M. A. I. (1998). Water relations and irrigation systems. Munshat elmaearif. Alex., Egypt. (In Arabic).
Maghchiche, A.; Haouam, A., and Immirzi, B. (2010). Use of polymers and biopolymers for water retaining and soil stabilization in arid and semiarid regions. Journal of Taibah University for science, 4, 9-16.
Pascale, S. D.; Rouphael, Y., Pardossi, A., Gallardo, M., & Thompson, R. B. (2017). Recent advances in water and nutrient management of soil-grown crops in Mediterranean greenhouses. Acta Horticulturae, (1170), 31-44.‏
Rodríguez, D.; Reca, J., Martínez, J., Lao, M. T., and Urrestarazu, M. (2014). Effect of controlling the leaching fraction on the fertigation and production of a tomato crop under soilless culture. Scientia Horticulturae, 179, 153-157.‏
Seethalakshmi, E.; Shunmugam, M., Pavaiyarkarasi, R., and Joseph, S. (2021). An automated irrigation system for optimized greenhouse using IoT. Materials Today: Proceedings.‏
Sihombing, P.; Karina, N. A., Tarigan, J. T., and Syarif, M. I. (2018). Automated hydroponics nutrition plants systems using arduino uno microcontroller based on android. In Journal of Physics: Conference Series (Vol. 978, No. 1, p. 012014). IOP Publishing.‏
Thompson, R. B.; and Gallardo, M. (2003). Use of soil sensors for irrigation scheduling. Improvement of water use efficiency in protected crops. Advanced specialization course. Direccion General de Investigacion y Formacion Agraria de la Junta de Andalucia, HortiMed, FIAPA, Cajamar, 375-402.‏
Yang, L.; Yang, Y., Chen, Z., Guo, C., and Li, S. (2014). Influence of super absorbent polymer on soil water retention, seed germination and plant survivals for rocky slopes eco-engineering. Ecological Engineering, 62, 27-32.
Zaki, H. Z.; A. M. Altony and Taha, A. M. (2010). Cultivation of tomatoes and beans under low plastic tunnels. Technical Bulletin No. 5, Agriculture Research Center, Ministry of Agriculture. Egypt. (In Arabic).
Zin El-Abedin, T. K.; Mattar, M. A., and Alazba, A. A. (2015). Soil wetting pattern from subsurface drip irrigation as affected by application of a polyacrylamide layer. Irrigation and Drainage, 64(5): 609-618.