Author
Listed:
- Md. Yunus Miah
(Bangabandhu Sheikh Mujibur Rahman Agricultural University, Bangladesh)
- Nusrat Jahan Rubaida
(Bangabandhu Sheikh Mujibur Rahman Agricultural University, Bangladesh)
- Mohammed Zia Uddin Kamal
(Bangabandhu Sheikh Mujibur Rahman Agricultural University, Bangladesh)
- Md. Humayun Kabir
(Bangabandhu Sheikh Mujibur Rahman Agricultural University, Bangladesh)
- Mohammed Abdus Salam
(Noakhali Science and Technology University, Bangladesh)
- Toru Fujiwara
(University of Tokyo, Japan)
- Ming Kwang Wang
(National Taiwan University, Taiwan)
- Karl Imberger
(University of Melbourne, Australia)
Abstract
Evaluation on the effect of rhizobox technology in the rhizosphre soil of agricultural crops is necessary for sound and safe agriculture. This article confers the rhizobox technology-induced information about rhizosphere so far conducted since 1987s and on. Combined with its special features and construction technique, rhizobox-affected rhizosphere processes like pH changes, patterns of nutrient distribution, heavy metal movement and microbial activities are extensively analyzed. Finally, the established rhizobox model of 1987 encompassing its modified versions are detailed, followed by its potential application in rhizosphere studies of plant nutrition, soil chemistry, and soil biology for sustainable agriculture.
Suggested Citation
Md. Yunus Miah & Nusrat Jahan Rubaida & Mohammed Zia Uddin Kamal & Md. Humayun Kabir & Mohammed Abdus Salam & Toru Fujiwara & Ming Kwang Wang & Karl Imberger, 2024.
"Rhizobox Technology for Sustainable Agriculture–Acquired Implications,"
European Journal of Agriculture and Food Sciences, European Open Science, vol. 6(2), pages 39-45, March.
Handle:
RePEc:epw:ejfood:v:6:y:2024:i:2:id:20775
DOI: 10.24018/ejfood.2024.6.2.775
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