绿洲农业科学与工程2025,Vol.10Issue(4):12-20,9.DOI:10.26941/j.cnki.2096-2177.2025.04.002
微质子能量置换技术处理棉种和滴灌带对棉花生长发育的影响
Effects of Micro-Proton Energy Replacement Technology Treatment of Cotton Seeds and Drip Irrigation Tapes on Cotton Growth and Development
摘要
Abstract
This study aims to clarify the optimal application mode of micro-proton energy conversion technology,providing a theoretical foundation for optimizing cotton cultivation management and achieving cost reduction and efficiency improvement.Using the cotton cultivar"Jinken 1678"as the experimental material,five treatment protocols were designed employing the"micro-proton energy conversion technology"provided by Xinjiang Kaibang Ecological Technology Co.,Ltd.A systematic analysis was conducted to evaluate its effects on cotton seedling emergence rate,growth stages,agronomic traits,root system development,dry matter accumulation,yield and fiber quality.The results show that,compared with the control group,the simultaneous treatment of seeds and drip irrigation tapes increased the emergence rate by 1.91%;promoted bud stage development;enhanced plant height by 0.47 cm and 0.49 cm at the seedling and flowering period stages respectively;improved leaf age and fruiting branch numbers during the bud and boll opening stages;increased yield by 1.71%;Elevated three fiber quality indices:upper half mean length,uniformity index and breaking strength.Although other treatments showed advantages in certain individual indicators,their overall effectiveness was inferior to the combined treatment of cotton seeds and drip irrigation tapes.The micro-proton energy conversion technology demonstrates a synergistic promotion of cotton growth,yield and fiber quality when applied to both seeds and drip irrigation tapes,establishing it as the preferred application mode for practical production.关键词
微质子能量置换/棉种/滴灌带/生长发育/影响Key words
micro-proton energy replacement/cotton seed/drip irrigation tape/growth and development/impact分类
农业科技引用本文复制引用
赵静,陈兵,刘太杰,李顺,徐明军,王琼..微质子能量置换技术处理棉种和滴灌带对棉花生长发育的影响[J].绿洲农业科学与工程,2025,10(4):12-20,9.基金项目
兵团科技创新工程—棉田信息智能采集与智慧管理创新团队(NCG202304) (NCG202304)
横向课题—微质子能量置换技术研究(2024659007000025) Xinjiang Production and Construction Corps Science and Technology Innovation Project-Innovation Team for Intelligent Collection and Smart Management of Cotton Field Information(NCG202304) (2024659007000025)
Horizontal Project-Research on Micro-Proton Energy Replacement Technology(2024659007000025) (2024659007000025)