Tietze N S, Shaffer K R, Hester P G
John A. Mulrennan, Sr., Research Laboratory, Florida Agricultural and Mechanical University, Panama City 32405, USA.
J Am Mosq Control Assoc. 1996 Jun;12(2 Pt 1):251-4.
Decline of naled residue on filter paper was studied after exposure to ultra-low volume droplets in a settling chamber. Naled-treated filter papers were stored under 3 treatment scenarios: 1) in a dark environmental chamber at an average relative humidity (RH) of 46.9% and temperature of 24 degrees C, 2) in a dark environmental chamber at an average RH of 87.7% and temperature of 24 degrees C, and, 3) in direct sunlight in the field. Decline of naled followed first order kinetics in all cases; consequently, half-life of naled under each treatment was determined from the slope of each line. Half-life (+/- 1 SD) of naled was 8.17 +/- 1.24, 4.81 +/- 1.18, and 1.37 +/- 0.24 h, for treatment scenarios 1, 2, and 3, respectively. In each test, a significant (P < 0.05) decline in naled residue occurred between initial assessment and 4 h postapplication. The half-life of each treatment scenario was significantly (P < 0.05) different from that of the other 2 scenarios, indicating that both humidity and sunlight affect naled degradation rates.
在沉降室内将纳乃得暴露于超低容量液滴后,研究了滤纸上纳乃得残留量的下降情况。经过纳乃得处理的滤纸在3种处理场景下储存:1)在平均相对湿度(RH)为46.9%、温度为24摄氏度的黑暗环境箱中;2)在平均RH为87.7%、温度为24摄氏度的黑暗环境箱中;3)在田间直射阳光下。在所有情况下,纳乃得的下降均符合一级动力学;因此,根据每条线的斜率确定了每种处理下纳乃得的半衰期。对于处理场景1、2和3,纳乃得的半衰期(±1标准差)分别为8.17±1.24、4.81±1.18和1.37±0.24小时。在每次测试中,在初始评估和施药后4小时之间,纳乃得残留量均出现显著(P<0.05)下降。每种处理场景的半衰期与其他两种场景的半衰期均存在显著(P<0.05)差异,表明湿度和阳光都会影响纳乃得的降解速率。