中国农业科学 ›› 2026, Vol. 59 ›› Issue (15): 3400-3411.doi: 10.3864/j.issn.0578-1752.2026.15.012

• 园艺 • 上一篇    下一篇

气动雾化喷雾对月季切花农药沉积效率及采后灰霉病防控效果的影响

李雷1(), 杨明珊2, 华蔚菡2, 刘昕2, 邵青2, 陈锐2, 王文生3, 高俊平1, 孙小明1()   

  1. 1 中国农业大学园艺学院, 北京 100193
    2 云南省花卉技术培训推广中心, 昆明 650228
    3 天津市农业科学院/国家农产品保鲜工程技术研究中心, 天津 300384
  • 收稿日期:2026-03-11 接受日期:2026-04-18 出版日期:2026-08-01 发布日期:2026-08-03
  • 通信作者:
    孙小明,E-mail:
  • 联系方式: 李雷,E-mail:lilei@cau.edu.cn。
  • 基金资助:
    国家自然科学基金(32441077); 云南省“兴滇英才支持计划”青年人才(柔性引进)专项(XDYC-QNRC-2023-0454)

Effects of Pneumatic Atomization Spraying on Pesticide Deposition Efficiency and Control Efficacy Against Postharvest Gray Mold in Cut Roses

LI Lei1(), YANG MingShan2, HUA WeiHan2, LIU Xin2, SHAO Qing2, CHEN Rui2, WANG WenSheng3, GAO JunPing1, SUN XiaoMing1()   

  1. 1 College of Horticulture, China Agricultural University, Beijing 100193
    2 Yunnan Flower Technology Training and Promotion Center, Kunming 650228
    3 Tianjin Academy of Agricultural Sciences/National Engineering and Technology Research Center for Preservation of Agricultural Products, Tianjin 300384
  • Received:2026-03-11 Accepted:2026-04-18 Published:2026-08-01 Online:2026-08-03

摘要:

【目的】针对月季切花采后灰霉病传统防控技术中农药浪费、交叉感染及工作效率低下等问题,探究并建立一种高效、低耗的化学防控技术。【方法】采用水敏纸法测定农药雾滴粒径与密度,优选最佳气动雾化喷雾参数。以‘蜜桃雪山’‘紫霞仙子’和‘艾莎’3个月季主栽品种为试材,采用诱惑红示踪法与水敏纸法,系统比较气动雾化喷雾(0.40 MPa)、液力式电动喷雾(0.25 MPa)、液力式手动喷雾(0.16 MPa)及传统蘸头4种施药方式对农药沉积分布参数与灰霉病防控效果的影响。构建沉积效率与防效两级多元线性回归模型,量化解析施药参数、沉积效率与防控效果的关联,探究不同处理防效差异的机理。【结果】(1)喷雾压力与标靶距离显著影响气动雾化喷雾雾滴特性,0.4 MPa压力、40 cm标靶距离下雾滴体积中径(VMD)最小、密度最高,为最优施药参数组合。(2)气动雾化喷雾产生的雾滴体积中径为87.7 μm,雾滴密度332.6个/cm2,均匀性(CV值8.85%)显著优于液力电动和液力手动喷雾。(3)气动雾化喷雾的农药沉积率达67.6%,为蘸头处理(76.0%)的89.0%,显著高于液力电动(33.7%)和液力手动喷雾(24.7%)。(4)采后96 h模拟冷链运输后,气动雾化喷雾处理‘蜜桃雪山’灰霉病发病率仅5.56%,防效82.18%,与蘸头处理无显著差异,但其用药量仅0.27 mL/枝,较蘸头处理(1.76 mL/枝)减少84.66%,防效显著优于传统液力喷雾方式;瓶插第8天,气动雾化喷雾处理切花存活率仍达60%—70%,与蘸头处理相当;构建雾滴参数-沉积效率(校正R2=0.964)、沉积效率-防效(校正R2=0.838)两级关联方程,证明气动雾化喷雾因雾滴密度高、沉积效果好,防效最优。(5)在‘紫霞仙子’和‘艾莎’上的验证试验表明,气动雾化喷雾对不同抗性品种的灰霉病防控效果稳定,与蘸头处理的防效差异不显著。【结论】气动雾化喷雾是一种兼具高效、减药、节本等优势的采后灰霉病防控技术,可为月季切花产业提质增效提供重要支撑。

关键词: 月季切花, 灰霉病, 气动雾化喷雾, 农药沉积率, 防治效果, 采后处理

Abstract:

【Objective】To address the problems of pesticide waste, cross-infection, and low efficiency associated with traditional postharvest gray mold control in cut roses, this study aims to explore and establish an efficient and low-pesticide-consumption chemical control technique.【Method】The droplet size and density of pesticide were determined using the water-sensitive paper method to optimize the operational parameters for pneumatic atomization spraying. Three main cut rose cultivars, ‘Peach Avalanche’ ‘Nightingale’ and ‘Jumilia’, were used as test materials to systematically compare four pesticide application methods. The treatments included: (1) pneumatic atomization spraying at 0.40 MPa, (2) hydraulic electric spraying at 0.25 MPa, (3) hydraulic manual spraying at 0.16 MPa, and (4) traditional flower head dipping. Their effects on pesticide deposition parameters and gray mold control efficacy were evaluated. Pesticide deposition parameters were determined using the allura red tracer method and the water-sensitive paper method. Two-level multiple linear regression models of deposition and control efficacy were constructed to quantitatively analyze the relationships among application parameters, deposition efficiency and control efficacy, and to explore the internal mechanism underlying the differences in control efficacy among different treatments.【Result】(1) Spray pressure and target distance significantly affected droplet characteristics during pneumatic atomization spraying. The volume median diameter (VMD) was the smallest and droplet density the highest at 0.4 MPa and 40 cm target distance, representing the optimal application parameter combination. (2) The droplet volume diameter produced by pneumatic atomization spraying was 87.7 μm, the droplet density was 332.6 droplets/cm2, and the uniformity (CV=8.85%) was significantly better than that of hydraulic electric spraying and hydraulic manual spraying. (3) The pesticide deposition rate of pneumatic atomization spraying reached 67.6%, which was equivalent to 89.0% of that of flower head dipping (76.0%). This value was significantly higher than that obtained with hydraulic electric spraying (33.7%) and hydraulic manual spraying (24.7%). (4) After 96 h of simulated postharvest cold-chain transportation, the gray mold incidence of ‘Peach Avalanche’ treated with pneumatic atomization spraying was only 5.56%, with a control efficacy of 82.18%, which did not differ significantly from that of traditional flower head dipping, but was significantly superior to that of conventional hydraulic spraying methods. Notably, the pesticide dosage per stem was merely 0.27 mL, representing an 84.66% reduction compared with that of flower head dipping (1.76 mL/stem). On the 8th day of vase life, the survival rate of cut flowers treated with pneumatic atomization spraying ranged from 60% to 70%, comparable to that of traditional flower head dipping. Two-level multiple linear regression models were constructed for droplet parameters-deposition efficiency (adjusted R2=0.964) and deposition efficiency- control efficacy (adjusted R2=0.838). The results confirmed that pneumatic atomization spraying, with its high droplet density and superior deposition performance, achieved optimal control efficacy. (5) Verification tests on ‘Nightingale’ and ‘Jumilia’ confirmed that pneumatic atomization spraying achieved stable control efficacy across cultivars with differing resistance levels, exhibiting no significant difference from traditional flower head dipping.【Conclusion】Pneumatic atomization spraying is a postharvest gray mold control technology with the advantages of high efficiency, pesticide use reduction and cost savings, which can provide important support for improving the quality and efficiency of the cut rose industry.

Key words: cut rose, gray mold, pneumatic atomization spraying, pesticide deposition rate, control efficacy, postharvest treatment