Arid
DOI10.3390/atmos15060722
Enhancing Tomato Production by Using Non-Conventional Water Resources within Integrated Sprinkler Irrigation Systems in Arid Regions
Abdelraouf, Ramadan Eid; Abdou, Mamdouh A. A.; Bakr, Ahmed; Hamza, Ahmed E.; Rashad, Younes M.; Abd-ElGawad, Ahmed M.; Hafez, Mohamed; Ragab, R.
通讯作者Abdelraouf, RE
来源期刊ATMOSPHERE
EISSN2073-4433
出版年2024
卷号15期号:6
英文摘要This research evaluated the importance of establishing an integrated sprinkler irrigation design connected to fish farm ponds in order to achieve environmental and financial benefits. To achieve the aim of the study, two field experiments were conducted at a private farm in the Nubaria area of Beheira Governorate during the 2022 and 2023 seasons to quantify all the benefits from using fish water effluent (FWE) in irrigation. The obtained results indicated that the effluent could represent a good source of irrigation and bio-fertilization. The yield of tomato was higher when using FWE for irrigation compared with using groundwater for irrigation (IW). This was due to the additional amounts of dissolved bio-nitrogen along with other nutrients present in the FWE. The proportion of dissolved nitrogen added by using FWE was 22.3 kg nitrogen per hectare in 2022 and 24.6 kg nitrogen per hectare in 2023, in addition to some other major elements such as phosphorus and potassium, which are also among the main nutrients needed by crops. It has also been noticed that the fertility of the sandy soil increased with the use of FWE for irrigation. One of the most important results was the possibility of reducing the addition of nitrogen mineral fertilizers by 25%, thus saving on N fertilizers when growing tomato. In addition to the vitality of the FWE and its macro- and microelements, algae, microorganisms, and other organic materials, the use of this type of water as an alternative source for irrigation, along with the reduction in the amount of added mineral fertilizers, will reduce the degree of groundwater contamination with mineral fertilizers and increase the income of farmers. It was also observed that the air temperature decreased during the growing season when compared with the temperature of uncultivated surrounding areas.
英文关键词integrated designs fish water effluent sprinkler irrigation system N fertigation technology fish farms
类型Article
语种英语
开放获取类型gold
收录类别SCI-E
WOS记录号WOS:001254575900001
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/402977
推荐引用方式
GB/T 7714
Abdelraouf, Ramadan Eid,Abdou, Mamdouh A. A.,Bakr, Ahmed,et al. Enhancing Tomato Production by Using Non-Conventional Water Resources within Integrated Sprinkler Irrigation Systems in Arid Regions[J],2024,15(6).
APA Abdelraouf, Ramadan Eid.,Abdou, Mamdouh A. A..,Bakr, Ahmed.,Hamza, Ahmed E..,Rashad, Younes M..,...&Ragab, R..(2024).Enhancing Tomato Production by Using Non-Conventional Water Resources within Integrated Sprinkler Irrigation Systems in Arid Regions.ATMOSPHERE,15(6).
MLA Abdelraouf, Ramadan Eid,et al."Enhancing Tomato Production by Using Non-Conventional Water Resources within Integrated Sprinkler Irrigation Systems in Arid Regions".ATMOSPHERE 15.6(2024).
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