Abstract
AbstractOveruse of fertilizer is detrimental to the sustainability of crop production from an economic and environmental perspective. While rice side-deep fertilization technology can significantly improve fertilizer utilization efficiency, improve crop yield and reduce environmental pollution caused by improper use of fertilizer compared with conventional fertilization methods. Therefore, side-deep fertilization technology has an important role in the sustainable development of agriculture. This article describes fertilizer selection, side-deep fertilization devices and the effects of side-deep fertilization technology on rice plants and soil. We summarize the types and characteristics of side-deep fertilizers and their ratios and modes. The basic principles and characteristics of the key components of mechanical fertilization devices are described in detail, including fertilizer discharging devices (rotating disc type, outer groove wheel type, screw type), fertilizer conveying devices (pneumatic, mechanical forced type) and sensors. The effects and mechanisms of side-deep fertilization on rice growth, yield, quality, fertilizer utilization efficiency and soil microorganisms are summarized. Finally, based on current research on side-deep fertilization, future directions are identified to aid the development of this promising technology.
Funder
China's National Key R & D Plan-Research and demonstration on combination of agricultural machinery and agronomy of rice unmanned production model
Publisher
Cambridge University Press (CUP)
Subject
Agronomy and Crop Science,Food Science
Reference151 articles.
1. Formulation of and cultural approach to super-high yielding in japonica hybrid rice;Zhang;Hybrid Rice,2010
2. Urea deep placement reduces yield-scaled greenhouse gas (CH4 and N2O) and NO emissions from a ground cover rice production system
3. Nitrogen managements of late japonica rice in double-cropping rice area;Ke;Journal of Plant Nutrition and Fertilizer,2014
4. May smart technologies reduce the environmental impact of nitrogen fertilization? A case study for paddy rice
5. Mechanized transplanting with side deep fertilization increases yield and nitrogen use efficiency of rice in eastern China;Zhu;Scientific Reports,2019b
Cited by
10 articles.
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