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61.
印楝素及印楝杀虫剂的安全性评价研究进展   总被引:2,自引:0,他引:2  
目前开发的新农药必须具有安全性高、残留低、与环境相容的无公害的农药,从一些植物材料中分离出杀虫活性物质来防治害虫具有较长的历史和优势,从印楝中可以分离出多种对害虫具有活性的化合物如印楝素及等可以有效地控制多种害虫。自印楝素被分离鉴定以来,其广谱而独特的生物活性受到人们的广泛关注,印楝素具有良好的杀虫、拒食、驱虫、昆虫生长调节作用等多种生物活性,在农药、日化等领域都有广泛的应用;由印楝素制备的印楝杀虫制剂对害虫的广谱作用、无残留,可减缓害虫的抗药性,是用于蔬菜、果树、茶叶等作物的理想农药,已成为一种近乎完美的植物源杀虫剂。针对日益严重的农药残留及热点关注的环境安全性等问题,系统总结了印楝素及印楝杀虫剂对人、动物等的毒性及环境安全性评价,将有利于全面评价印楝杀虫剂的安全性及有效地指导印楝杀虫剂开发、生产及推广应用。  相似文献   
62.
The effects of cigarette smoking on smokers and the environment were investigated by analyzing some cigarette brands available to Nigerian smokers for the presence of some of the widely used organochlorine (OC) pesticides and heavy metals. OC pesticide residues were extracted from tobacco smoke, separated and identified using column chromatographic and thin layer chromatographic techniques respectively, while ashed and unashed commercial cigarettes were analyzed for heavy metals – Cr, Mn, Ni, Pb, Zn, Cd, Cu, and Co using atomic absorption spectrometry. TLC data indicated that dieldrin and p,p′-DDD were present in some of the cigarette brands. The results of heavy metal analysis showed that the levels of some toxic heavy metals and pollution index were higher in unashed cigarettes than corresponding ashes. Evidence suggests that significant amounts of these toxic metals are inhaled by the smoker and/or released into the environment in the process of cigarette smoking, thus confirming that cigarette smoking is harmful to the environment and human health.  相似文献   
63.
Total release foggers or “bug bombs” are products designed to fill an area such as a home or workplace with insecticide. Because of their method of action, unintentional exposures may occur. Cases for this retrospective study were all fogger exposures reported to Texas poison centers during 2000–2009. The distribution of cases was identified for various demographic and clinical factors. There were 2855 fogger exposures. Among the patients 56.0% were females and 69.5% were 20 years or older. Considering the exposure circumstances 95.6% were unintentional and 62.2% occurred through inhalation. The management site was 75.2% on site. The medical outcomes were no effect (11.8%), minor effect (25.1%), moderate effect (7.4%), major effect (0.1%), not followed (no effects expected) (3.5%), not followed (minimal effects expected) (39.3%), not followed (potentially toxic) (4.9%), and effects probably unrelated to exposure (7.7%). The most frequently reported clinical effects were cough (25.4%), vomiting (13.3%), nausea (9.2%), dyspnea (8.7%), throat irritation (7.9%), and headache (5.6%). The public needs to be educated about the potential hazard of exposures to foggers. However, most fogger exposures reported to poison centers are not likely to be seriously toxic and can be managed at home.  相似文献   
64.
拟除虫菊酯类杀虫剂的酶促降解   总被引:20,自引:0,他引:20  
测定了降解菌Alcaligenes sp.YF 11粗酶液对拟除虫菊酯杀虫剂的降解性能,粗酶液降解杀灭菊酯、甲氰菊酯、氯氯菊酯、溴氰菊酯氯菊酯、三氟氯氰菊酯的最适pH分别为8.0、8.5、8.0、8.0、9.0、7.5;米氏常数分别为41.4、136.8、65.4、222.8、5.2、8.67nmol/ml;最适温度为32.5℃,该粗酶液在pH5.0-10.5均具有降解活性。  相似文献   
65.
A chlorbenzuron, diflubenzuron, and hexaflumuron-degrading bacterium strain M6, was isolated from the activated sludge of an insecticide factory. The strain was identified as Achromobacter sp. according to an analysis on the 16S rRNA gene sequences, morphological, and physiological characteristics. Strain M6 could degrade more than 91% of 100 mg/L chlorbenzuron, diflubenzuron, and hexaflumuron within 48 hours, which could act as the sole carbon source. Strain M6 showed more chlorbenzuron degradation at a temperature range between 25 and 40 ℃ and a pH range between 6.0 and 8.0. The optimal temperature and the initial pH of medium for chlorbenzuron degradation by strain M6 were 30 ℃ and 7.0, respectively; the maximum chlorbenzuron tolerated concentration of strain M6 was as high as 400 mg/L. Strain M6 hydrolyzed 4-acetaminophenol into a purple-red product. Moreover, an approximately 1.4 kb DNA fragment, which could be expressed into an amidase to degrade amide pesticides, was amplified from the genomic DNA of strain M6. The results preliminarily proved that 3 benzoylurea insecticides could be degraded because of strain M6 hydrolyzing their amide bonds. This study obtained a highly efficient degrading strain and provided new resources and valuable information on benzoylurea insecticide degradation. © 2018 Science Press. All rights reserved.  相似文献   
66.
Abstract

This study investigated the toxicity of various concentrations of technical resmethrin and Scourge® on adult and larval Palaemonetes pugio, a common grass shrimp species. Two types of tests were conducted for each of the resmethrin formulations using adult and larval grass shrimp life stages, a 96-h static renewal aqueous test without sediment, and a 24-h static nonrenewal aqueous test with sediment. For resmethrin, the 96-h aqueous LC50 value for adult shrimp was 0.53 μg/L (95% confidence interval (CI): 0.46–0.60 μg/L), and for larval shrimp was 0.35 μg/L (95% CI: 0.28–0.42 μg/L). In the presence of sediment, technical resmethrin produced a 24-h LC50 value for adult shrimp of 5.44 μg/L (95% CI: 4.52–6.55 μg/L), and for larval shrimp of 2.15 μg/L (95% CI: 1.35–3.43 μg/L). For Scourge®, the 96-h aqueous LC50 for adult shrimp was 2.08 μg/L (95% CI: 1.70–2.54 μg/L), and for larval shrimp was 0.36 μg/L (95% CI: 0.24–0.55 μg/L). The 24-h sediment test yielded an LC50 value of 16.12 μg/L (95% CI: 14.79–17.57 μg/L) for adult shrimp, and 14.16 μg/L (95% CI: 12.21–16.43 μg/L) for larvae. Adjusted LC50 values to reflect the 18% resmethrin concentration in Scourge® are 0.37 μg/L (adult), 0.07 μg/L (larvae) for the 96-h aqueous test, and 2.90 μg/L (adult), 2.6 μg/L (larvae) for the 24-h sediment test. Larval grass shrimp were more sensitive to technical resmethrin and Scourge® than the adult life stage. The results also demonstrate that synergized resmethrin is more toxic to P. pugio than the nonsynergized form, and that the presence of sediment decreases the toxicity of both resmethrin and Scourge®  相似文献   
67.
Abstract

The photocatalytic oxidation of propoxur, a nitrogen‐containing pesticide, has been investigated using aqueous TiO2 suspensions as catalyst in this study. The operating variables considered in the study were initial pH, temperature, [H2O2] and TiO2 loading. Results showed that 1 g/l of TiO2 was the optimum dosage for oxidizing propoxur in this system. Hydrogen peroxide can increase the oxidation rate with increasing its initial concentration. There was no obvious difference in the rate of propoxur oxidation at the initial pH of 4, 6 and 9, and the final pHs of reaction solutions were around 5.5. However, propoxur degraded slower at initial pH 2, and the pH did not vary during the period of photocatalytic reaction. The photocatalytic oxidation of propoxur using TiO2 suspensions as the photocatalyst was reaction‐controlled as indicated by the activation energy.  相似文献   
68.
Deltamethrin [(S)-cyano-3-phenoxybenzyl-cis-(1R,3R)-2,2-dimethyl) cyclo–propane carboxylate),1] labelled at gem-dimethyl groups of the cyclopropane ring was applied on two Egyptian soils at a level of 10 mg/kg soil for a laboratory incubation experiment under aerobic and anaerobic conditions. A steady decrease of soil extractable14C-residues, accompanied by a corresponding increase of non- extractable bound 14C-residues was observed over a 90-day incubation period. The percentage of evolved 14CO2 increased with time under aerobic and anaerobic conditions in both soils. The effect of deltamethrin on soil microorganisms as well as the counter effect of microorganisms on the insecticide was also investigated. As the incubation period increased, the inhibitory effect of the insecticide on the microorganisms decreased and the evolution of carbon dioxide depended on the applied dose. The nature of soil methanol soluble residues was determined by chromatographic analysis which revealed the presence of the parent insecticide as the main product in addition to four metabolites: 3-(2′,2′-dibromovinyl)-2,2-dimethylcyclopropane carboxylic acid (II); 3-phenoxybenzaldehyde (III); 3-phenoxybenzoic acid (IV); 3-phenoxybenzyl alcohol (V).  相似文献   
69.
Publications reporting techniques and applications of thin layer chromatography (planar chromatography) for the separation, detection, qualitative, and quantitative determination, and preparative isolation of pesticides and their metabolites are reviewed for the period from November 1, 2012 to November 1, 2014. Analyses are described for a variety of sample types and pesticide classes. In addition to references on residue analysis, studies such as pesticide structure – retention relationships, identification and characterization of natural and synthesized pesticides, metabolism, bioactivity, degradation, soil mobility, and lipophilicity are covered.  相似文献   
70.
The main objective of this work was to investigate the kinetic characteristics of acid and alkaline phosphatases isolated from different sources and to study the effects of the herbicide atrazine and insecticide methomyl on the activity and kinetic properties of the enzymes. Acid phosphatase (ACP) was isolated from the tomato plant (Solanum lycopersicum L. var. lycopersicum); alkaline phosphatase (ALP) was isolated from two sources, including mature earthworms (Aporrectodea caliginosa) and larvae of the Egyptian cotton leafworm (Spodoptera littoralis). The specific activities of the enzymes were 33.31, 5.56 and 0.72 mmol substrate hydrolyzed per minute per milligram protein for plant ACP, earthworms ALP and cotton leafworm ALP, respectively. The inhibition kinetics indicated that atrazine and methomyl caused competitive–non-competitive inhibition of the enzymes. The relationships between estimates of Km and Vmax calculated from the Michaelis–Menten equation have been explored. The extent of the inhibition was different, as estimated by the values of the inhibition constant Ki that were found to be 3.34 × 10?3, 1.12 × 10?2 and 1.07 × 10?2 mM for plant ACP, earthworms ALP and cotton leafworm ALP, respectively, with methomyl. In the case of atrazine, Ki were found to be 8.99 × 10?3, 3.55 × 10?2 and 1.36 × 10?2 mM for plant ACP, earthworms ALP and cotton leafworm ALP, respectively.  相似文献   
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