Journal of
Medicinal Plants Research

  • Abbreviation: J. Med. Plants Res.
  • Language: English
  • ISSN: 1996-0875
  • DOI: 10.5897/JMPR
  • Start Year: 2007
  • Published Articles: 3834

Full Length Research Paper

Citrullus lanatus plant response to irrigation water magnetized in sandy soil

Djilani GHEMAM AMARA
  • Djilani GHEMAM AMARA
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
  • Google Scholar
Hacene LAOUEDJ
  • Hacene LAOUEDJ
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
  • Google Scholar
Ahmed Elkhalifa CHEMSA
  • Ahmed Elkhalifa CHEMSA
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
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Khaled KHERRAZ
  • Khaled KHERRAZ
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
  • Google Scholar
Said TOUATI
  • Said TOUATI
  • Laboratory of Biology, Environment and Health (LBEH), University of El Oued, 39000, Algeria.
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Zeïd ALIA
  • Zeïd ALIA
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
  • Google Scholar
TOUATIHAMAD larouaci
  • TOUATIHAMAD larouaci
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
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Ahmed IBED
  • Ahmed IBED
  • Department of Biology, Faculty of Nature and Life Sciences, University of El Oued, 39000, Algeria.
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Hamza BOUGRINAT
  • Hamza BOUGRINAT
  • company professional hydraulic (CPH) Water treatment product manager at CPH Hydraulique
  • Google Scholar


  •  Received: 21 November 2022
  •  Accepted: 31 March 2023
  •  Published: 31 May 2023

References

Acosta-Motos JR, Ortuño MF, Bernal-Vicente A, Diaz-Vivancos P, Sanchez-Blanco MJ, Hernandez JA (2017). Plant responses to salt stress: adaptive mechanisms. Agronomy 7(1):18.
Crossref

 

Alattar E, Alwasife K, Radwan E (2020). Effects of treated water with neodymium magnets (NdFeB) on growth characteristics of pepper (Capsicum annuum). AIMS Biophysics 7(4):267-290.‏
Crossref

 

Alattar E, Radwan E, Elwasife K (2022). Improvement in growth of plants under the effect of magnetized water. AIMS Biophysics 9(4):346-387.
Crossref

 

Alattar E, Elwasife K, Radwan E (2021). Effects of magnetic field treated water on some growth parameters of corn (Zea mays) plants. AIMS Biophysics 8(3):267-280.‏
Crossref

 

Alattar E, Radwan E (2020). Investigation of the effects of radio frequency water treatment on some characteristics of growth in pepper (Capsicum Annuum) plants. Advances in Bioscience and Biotechnology 11(2):22-48.
Crossref

 

Alattar EM, Elwasife KY, Radwan ES, Abuassi WA (2019). Influence of magnetized water on the growth of corn (Zea mays) seedlings. Romanian Journal of Biophysics 29(2):39-50.

 

Alavi SA, Ghehsareh AM, Soleymani A, Panahpour E, Mozafari M (2020). Pepermint (Mentha piperita L.) growth and biochemical properties affected by magnetized saline water. Ecotoxicology and Environmental Safety 201:110775.
Crossref

 

Ali AF, Alsaady MH, Salim HA (2019). Impact of bio fertilizer and magnetic irrigation water on growth and yield of melon Cucumis melo L. In IOP Conference Series: Earth and Environmental Science 388(1):1-11.
Crossref

 

Ali Y, Samaneh R, Kavakebian F (2014). Applications of magnetic water technology in farming and agriculture development: A review of recent advances. Current World Environment 9(3):695.
Crossref

 

Aliku O (2017). Desalination: A means of increasing irrigation water sources for sustainable crop production. In Desalination. Chapter 3:1-14. 
Crossref

 

Alkhatib R, Abdo N, Al-Eitan L, Kafesha R, Rousan A (2020). Impact of magnetically treated water on the growth and development of tobacco (Nicotiana tabacum var. Turkish). Physiology and Molecular Biology 26(5):1047-1054.‏
Crossref

 

Alwediyani H, Almasoudi A, Abdulrahman A, Kenkarr N, Alsaidi S, Khalofa H, amp Bjafar F (2015). The Change in Physical Properties of Magnetic Water. International Journal of Water Resources and Environmental Management 7(9):45-55.‏

 

Chibowski E, Szcze? A (2018). Magnetic water treatment-A review of the latest approaches. Chemosphere 203:54-67. 
Crossref

 

Dustgeer Z, Seleiman MF, Imran K, Chattha MU, Alhammad BA, Jalal RS, Refay Y, Hassan MU (2021). Glycine-betaine induced salinity tolerance in maize by regulating the physiological attributes, antioxidant defense system and ionic homeostasis. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 49(1):12248-12248.
Crossref

 

Duong HC, Chivas AR, Nelemans B, Duke M, Gray S, Cath TY, Nghiem LD (2015). Treatment of RO brine from CSG produced water by spiral-wound air gap membrane distillation-A pilot study. Dessalines 366:121-129.‏
Crossref

 

Eswar D, Karuppusamy R, Chellamuthu S (2021). Drivers of soil salinity and their correlation with climate change. Current Opinion in Environmental Sustainability 50:310-318
Crossref

 

Foster S, Pulido-Bosch A, Vallejos Á, Molina L, Llop A, MacDonald AM (2018). Impact of irrigated agriculture on groundwater-recharge salinity: a major sustainability concern in semi-arid regions. Hydrogeology Journal 26:2781-2791 
Crossref

 

Ghernaout D (2018). Magnetic field generation in the water treatment perspectives: An overview. International Journal of Advances in Applied Sciences 5:193-203.
Crossref

 

Hachicha M, Kahlaoui B, Khamassi N, Misle E, Jouzdan O (2018). Effect of electromagnetic treatment of saline water on soil and crops. Journal of the Saudi Society of Agricultural Sciences 17(2):154-162.
Crossref

 

Hamdy AE, Khalifa SM, Abdeen SA (2015). Effect of magnetic water on yield and fruit quality of some mandarin varieties. Annals of Agricultural Sciences 53:657-666.
Crossref

 

Hamza JN (2019). Investigation on using magnetic water technology for leaching high saline-sodic soils. Environmental Monitoring and Assessment 191(8):1-11.‏
Crossref

 

Hassani AS, Hadi ZL, Rasheed KA (2015). Experimental study of the interaction of magnetic fields with flowing water. International Journal of Basic and Applied Science 3(3):1-8.

 

Jumman A, van Heerden PS, van Antwerpen R, van Rensburg LD, Adendorff M, Radzilani T, Searle A (2022). The knowledge levels, perceptions, and practices of irrigation farmers in the context of soil salinity management in the South African sugarcane industry. Irrigation and Drainage 71(2):381-393.‏
Crossref

 

Khaled K, Djilani GA, Atef C, Azedinne C (2019). Morphological, Anatomical and Environmental Characteristics and the Geographical Distribution of Matricaria pubscenes (composées) from Algeria. World 8(1):76-80.‏

 

Lam Y, Winch PJ, Nizame FA, Broaddus-Shea ET, Harun M, Dostogir G, Surkan PJ (2022). Salinity and food security in southwest coastal Bangladesh: impacts on household food production and strategies for adaptation. Food Security14(1):229-248
Crossref

 

Liu X, Zhu H, Wang L, Bi S, Zhang Z, Meng S, Zhang Y, Wang H, Song C, Ma F (2019). The effects of magnetic treatment on nitrogen absorption and distribution in seedlings of Populus× euramericana 'Neva'under NaCl stress. Scientific Reports 9(1):1-14.‏ 
Crossref

 

Majeed A, Muhammad Z (2019). Salinity: a major agricultural problem-causes, impacts on crop productivity and management strategies. In Plant abiotic stress tolerance Agronomic molecular and biotechnological approaches 83-99.‏
Crossref

 

Makulski W (2019). Multinuclear magnetic resonance study of sodium salts in water solutions. Magnetochemistry 5(4):68.‏
Crossref

 

Mghaiouini R, Elmlouky A, Salah M, Al-Antary TM, Monkade M, El Bouari A, Ghidan AY (2020). Effect of electromagnetic fields on the pH of water under kinetic conditions. Fresenius Environmental Bulletin 29:7922-7933.‏

 

Mohamed AS, Sherif AE (2020). Effect of magnetic saline irrigation water and soil amendments on growth and productivity of Kalamata olive cultivar. Egyptian Journal of Agricultural Research 98(2):302-326.
Crossref

 

Mostafa H (2020). Influence of magnetised irrigation water on the fertigation process and potato productivity. Research in Agricultural Engineering 66(2):43-51.
Crossref

 

Quist-Jensen CA, Macedonio F, Drioli E (2015). Membrane technology for water production in agriculture: Desalination and wastewater reuse. Dessalines 364:17-32.‏
Crossref

 

Shahin MM, Mashhour AMA, Abd-Elhady ESE (2016). Effect of magnetized irrigation water and seeds on some water properties, growth parameter and yield productivity of cucumber plants. Current Science International 5(2):152-164.

 

Shimada K (2019). Effect of magnetic field and aggregation on electrical characteristics of magnetically responsive suspensions for novel hybrid liquid capacitor. Magnetochemistry 5(2):38.‏
Crossref

 

Shiragave DD, Ramteke AA, Patil SD (2015). Plant responses to vehicular pollution: specific effect on photosynthetic pigments of plants at divider of NH-4 highway Nipani Area, Karnataka State, India. Central European Journal of Experimental Biology 4(2):1-4.

 

Shi K, Lu T, Zheng W, Zhang X, Zhangzhong L (2022). A Review of the Category, Mechanism, and Controlling Methods of Chemical Clogging in Drip Irrigation System. Agriculture 12(2):202.‏
Crossref

 

Wang Y, Wei H, Li Z (2018). Effect of magnetic field on the physical properties of water. Results in Physics 8:262-267.
Crossref

 

Zhou B, Yan L, Chen X, Ye S, Peng Y, Liang C (2021). Effect of magnetic water irrigation on the improvement of salinized soil and cotton growth in Xinjiang. Agricultural Water Management 248:106784.‏
Crossref

 

Zörb C, Geilfus CM, Dietz K J (2019). Salinity and crop yield. Plant Biology 21:31-38.‏
Crossref

 

Zúñiga O, Benavides JA, Ospina-Salazar DI, Jiménez CO, Gutiérrez MA (2016). Magnetic treatment of irrigation water and seeds in agriculture. ING Competitors 18(2):217-232.
Crossref