[1] HEWITT A J.Spray optimization through application and liquid physical property variables-Ⅰ[J].Environmentalist, 2008, 28, 25-30.
[2] 邱白晶, 李佐鹏, 吴昊, 等.变量喷雾装置响应性能的试验研究[J].农业工程学报, 2007, 23 (11):148-152
[3] TIAN L, REID J F, HUMMELJW.Development of a precisions prayer for site-specific weed management[J].Transaction of the ASAE, 1999, 42 (4):893-900.
[4] 肖丽萍, 蔡金平, 刘木华, 等.不同生物农药的喷雾覆盖率与叶面沉积量的试验研究[J].农机化研究, 2018 (9):189-194.
[5] BUTLER ELLIS M C, MILLER P C H.The Silsoe spray drift model:a model of spray drift for the assessment of non-target exposures to pesticides[J].Biosyst Eng, 2010, 107:169-177.
[6] 邱白晶, 李佐鹏, 吴昊, 等.变量喷雾装置响应性能的试验研究[J].农业工程学报, 2007, 23 (11):148-152.
[7] 朱金文, 周国军, 曹亚波, 等.氟虫腈药液在水稻叶片上的沉积特性研究[J].农药学学报, 20091 (2):250-254.
[8] 杨希娃, 代美灵, 宋坚利, 等.雾滴大小、叶片表面特性与倾角对农药沉积量的影响[J].农业工程学报, 2012, 28 (3):70-73
[9] CHOWDHURY A B, JEPSON P C, HOWSE P E, et al.Leaf surfaces and the bioavailability of pesticide residue[J].Pest Manag Sci., 2001, 57:403-412.
[10] YOUNG B.W.Studies on the retention and deposit characteristics of pesticide sprays on folliage[C]//CIGR.Application Meeting, IXth CIGR Congress.EaStålancing:CIGR, 1979:1-4.
[11] HIL Z E, VERMEER A V P.Effect of formulation on spray drift:a case study for commercial imidacloprid products[J].Asp.Appl.Biol., 2012, 114:445-450.
[12] DOWNER R A, HALL F R, THOMPSON R S.Temperature effects on atomization by flat-fan nozzles:implications for drift management and evidence for surfactant concentration gradients[J].Atomization Spray, 1998 (8):241-254.
[13] QIN K, TANK H, WILSON S.Controlling droplet size distribution using oil emulsions in agricultural sprays[J].Atomization Spray, 2010, 20:227-239.
[14] ZHANG Y, TANG C P, Ke C Q, et al.Limonoids and triterpenoids from the stem bark of Melia toosendan[J].J Nat Prod, 2010, 73:664-668.
[15] ZHAO L, HUO CH, SHEN LR, et al.Chemical constituents of plants from the genus Melia[J].Chem Biodivers, 2010 (7):839-859.
[16] SHI Y L, LI M F.Biological effects of toosendanin, a triterpenoid extracted from Chinese traditional medicine.[J].Prog Neurobiol, 2007, 82:1-10.
[17] 徐德进, 徐广春, 许小龙, 等.基于沉积量和生物效果的甘蓝小菜蛾防治喷雾参数优化[J].植物保护学报, 2015, 42 (5):755-762.
[18] LIAO C, LIU X Q.Observation on the cephalic sensory organ of the oriental armyworm with scanning electron microscope and the antifeedant activities of toosendanin[J].J.S.China Agric Univ., 1986 (7):43-48.
[19] SHI Y L, WANG W P, LIAO C Y, et al.Effect of toosendanin on the sensory inputs of chemo-receptors in the armyworm larvae (Mythimne separata) [J].Acta Entomol Sin., 1986, 29:233-239.
[20] AMASON J T, PHILOGENEENE B J R., MORAND P.American Chemical Society Symposium Series[M].Washington DC:Research Gate, 1989:69-77.
[21] CHIU SF, ZHANG X.A critical review of toosendanin, a novel insecticide isolated from Melia toosendan Sied et Zucc (Meliaceae) [J].J.S China Agric Univ., 1987 (8):57-67.
[22] KOUL O, MULTANI JS, SINGH G, et al.Bioefficacy of toosendanin from Melia dubia (syn.Mazedarach) against gram pod-borer, Helicoverpa armigera[J].Curr Sci., 2002, 83:1387-1391.
[23] 徐敦明, 李飞, 冯俊涛, 等.几种植物源提制品对鱼的毒性与安全性评价[J].农药学学报, 2004, 6 (3):89-92.
[24] 张亚妮, 马志卿, 王海鹏, 等.植物源杀虫剂川楝素对环境生物安全性评价[J].环境科学学报, 2007, 27 (12):2038-2045.
[25] 张兴.几种川楝素提制品对菜青虫的生物活性[J].植物保护学报, 1989, 16 (3):205-210.
[26] 张兴, 王兴林, 冯俊涛, 等.植物性杀虫剂川楝素的开发研究[J].西北农业大学学报, 1993, 21 (4):1-5.