Five reduced-risk insecticides were compared for their toxicities to male and female third instar larvae of diamondback moth (DBM), Plutella xylostella L. (Lepidoptera:Plutellidae) obtained from a laboratory colo...Five reduced-risk insecticides were compared for their toxicities to male and female third instar larvae of diamondback moth (DBM), Plutella xylostella L. (Lepidoptera:Plutellidae) obtained from a laboratory colony. Leaf-dip bioassays were used to assess larval mortality at different insecticides rates (ranging from 0.01 mg AI/L to 100 mg A1/L) and exposure times (24, 48 and 72 h after treatment). Toxicity of the insecticides generally increased with rate and exposure time. At 72 h after treatment, median lethal concentrations (LCs0s) of methoxyfenozide, spinosad, novaluron, indoxacarb and Bacillus thuringiensis (Bt) against the male third instar larvae of P, xylostella were 0.0524, 0.1117, 0.9149, 1.1939 and 4.4983 mg AI/L, respectively, and were 0.1008, 0.2583, 1.0649, 0.2850 and 5.3053 mg AI/L against female third instar larvae, respectively. At 0.1% of the approximate recommended field rates, methoxyfenozide (60%-75%) and spinosad (53%-57%) were the most toxic, while Bt (30%-45% mortality) was the least toxic to male and female P. xylostella larvae. Spinosad was the fastest acting and the only insecticide that caused significant larval mortality (17%) at 24 h after exposure. Significant sexual differences were recorded in the susceptibility of P. xylostella larvae to two of the insecticides: spinosad and indoxacarb. Male larvae were two-fold more susceptible to spinosad but 10-fold more tolerant to indoxacarb than female larvae.展开更多
Spiral Magnus is a unique wind turbine system that rotates with cylinders which have spiral-shaped fins coiled around them (instead of using the more common propeller-type blades). In the present study, three models...Spiral Magnus is a unique wind turbine system that rotates with cylinders which have spiral-shaped fins coiled around them (instead of using the more common propeller-type blades). In the present study, three models (cylinder with no fins, cylinder with straight fins and cylinder with spiral fins) were installed, and fluid force measurements were performed by a strain gauge force balance. A PIV (particle image velocimetry) system was used to better understand the flow fields around the cylinder. Considering the results of the experiment, it was confirmed that, the aerodynamic performance of the rotating cylinder can be improved by the fin. However, the straight fin makes the flow close to the cylinder surface ineffective. The rotary cylinder with the spiral fins was able to generate the greatest lift among three models, because the spiral fin effectively influences the vicinity of the cylinder surface.展开更多
文摘Five reduced-risk insecticides were compared for their toxicities to male and female third instar larvae of diamondback moth (DBM), Plutella xylostella L. (Lepidoptera:Plutellidae) obtained from a laboratory colony. Leaf-dip bioassays were used to assess larval mortality at different insecticides rates (ranging from 0.01 mg AI/L to 100 mg A1/L) and exposure times (24, 48 and 72 h after treatment). Toxicity of the insecticides generally increased with rate and exposure time. At 72 h after treatment, median lethal concentrations (LCs0s) of methoxyfenozide, spinosad, novaluron, indoxacarb and Bacillus thuringiensis (Bt) against the male third instar larvae of P, xylostella were 0.0524, 0.1117, 0.9149, 1.1939 and 4.4983 mg AI/L, respectively, and were 0.1008, 0.2583, 1.0649, 0.2850 and 5.3053 mg AI/L against female third instar larvae, respectively. At 0.1% of the approximate recommended field rates, methoxyfenozide (60%-75%) and spinosad (53%-57%) were the most toxic, while Bt (30%-45% mortality) was the least toxic to male and female P. xylostella larvae. Spinosad was the fastest acting and the only insecticide that caused significant larval mortality (17%) at 24 h after exposure. Significant sexual differences were recorded in the susceptibility of P. xylostella larvae to two of the insecticides: spinosad and indoxacarb. Male larvae were two-fold more susceptible to spinosad but 10-fold more tolerant to indoxacarb than female larvae.
文摘Spiral Magnus is a unique wind turbine system that rotates with cylinders which have spiral-shaped fins coiled around them (instead of using the more common propeller-type blades). In the present study, three models (cylinder with no fins, cylinder with straight fins and cylinder with spiral fins) were installed, and fluid force measurements were performed by a strain gauge force balance. A PIV (particle image velocimetry) system was used to better understand the flow fields around the cylinder. Considering the results of the experiment, it was confirmed that, the aerodynamic performance of the rotating cylinder can be improved by the fin. However, the straight fin makes the flow close to the cylinder surface ineffective. The rotary cylinder with the spiral fins was able to generate the greatest lift among three models, because the spiral fin effectively influences the vicinity of the cylinder surface.