期刊文献+

Characterizing downwind drift deposition of aerially applied glyphosate using RbCl as tracer 被引量:4

原文传递
导出
摘要 Rubidium chloride(RbCl)was used as a tracer tank-mixed with active ingredients to profile downwind deposition of aerially applied crop protection and production materials to characterize off-target drift,which helps improve spray efficiency and reduce environmental contamination.Mylar sheets were placed on a holder in the field at each sampling station to collect sprayed solution.RbCl tracer was used to assess downwind drift of nozzles mounted on the booms installed and controlled on both sides of an agricultural airplane.The experiment was conducted on a field covered by Bermuda grass(Cynodon dactylon).During the experiment,the airplane was planned to fly three passes with three replications at each of three different altitudes,3.7 m,4.9 m,and 6.1 m for total of 27 flight runs.The results indicated that sampling station location had a significant effect on RbCl concentration.However,application release altitude was not significant to the change of RbCl.Another practical application in the same aerial application system was used to assess crop injury from the off-target drift of aerially applied glyphosate.RbCl concentrations measured from Mylar sheets were correlated with visual injury,plant height,shoot dry weight,leaf chlorophyll content,and shikimate,which were measured from the leaves and plant samples collected.Overall,RbCl is an effective tracer for monitoring spray applications from agricultural aircraft and unmanned aerial vehicles to intensify agriculture output and minimize environmental impact.
出处 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第3期31-36,共6页 国际农业与生物工程学报(英文)
  • 相关文献

参考文献2

二级参考文献19

  • 1傅泽田,祁力钧,王俊红.精准施药技术研究进展与对策[J].农业机械学报,2007,38(1):189-192. 被引量:121
  • 2Lan Y, Hoffmann W C, Fritz B K,-et al. Spray drift mitigation with spary mix adjuvants[J]. Applied Engineering in Agriculture, 2007,24(1) :5 - 10.
  • 3Wolf R E, Gardisser D R, Loughin T M. Comparison of drift reducing/deposition aid tank mixes for fixed wing aerial applications [ J]. Journal of ASTM International,2005,2 ( 8 ) : 1 - 14.
  • 4Zhang Huihui, Lan Yubin, Lacey Ronald, et al. Ground-based spectral reflectance measurements for evaluating the efficacy of aerially-applied glyphosate treatments [ J ]. Biosystems Engineering, 2010, 107 ( 1 ) : 10 - 15.
  • 5Castro-Esau K L, Sanchez-Azofeifa G A, Rivard B. Comparison of spectral indices obtained using multiple spectroradiometers[ J]. Remote Sensing of Environment, 2006,103 ( 3 ) : 276 - 288.
  • 6Zhu Heping, Masoud Salyani, Robert D Fox. A portable scanning system for evaluation of spray deposit distribution [ J ]. Computers and Electronics in Agriculture, 2011,76( 1 ) :38 - 43.
  • 7Fox R D, Derksen R C, Cooper J A, et al. Visual and image system measurement of spray deposits using water sensitive paper [ J ]. Applied Engineering in Agriculture, 2003,19 ( 5 ) : 549 - 552.
  • 8Hoffmann W C, Hewitt A J. Comparison of three imaging systems for water-sensitive papers [ J]. Applied Engineering in Agricuhark, 2005, 21 (6): 961 -964.
  • 9Franz E. Spray coverage analysis using a hand-held scanner[ J]. Transactions of the ASAE, 1993, 36 (5) : 1271 -1278.
  • 10Salyani M, Serdynski J. Development of a sensor for spray deposition assessment[ J]. Transactions of the ASAE, 1990, 90:1464 - 1469.

共引文献37

同被引文献41

引证文献4

二级引证文献16

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部