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871.
Seong Gu Hwang Fumio Matsumura Hiromi Sasagawa 《Journal of environmental science and health. Part. B》2013,48(1):115-123
Abstract Most modern pesticides are expensive. Application of excessive dosage rates is likely to cause undesirable biological side‐effects and is economically wasteful. Non‐uniform distribution of the spray cloud, or application at the wrong time, may result in failure to control the pest. It is the responsibility of the field operator to acquire sufficient knowledge and skill to ensure proper use of the control agents, to increase efficiency of their usage and to reduce unwanted side‐effects. To achieve this goal, he must take into consideration the various physical factors that govern field performance of pesticides. A simple relationship exists between the spray volume and emission rate used, and droplet size produced. The use of extremely low spray volumes (i.e., those less than 2.0 litre per ha) for forest insect control in Canada, as opposed to higher volumes used in agriculture, necessitates the release of fine droplets (ranging from 20 to 70 μm in diameter) to obtain adequate coverage of the target area. These droplets take a long time to sediment downwards, evaporate in‐flight, become smaller in size and/or form powdery residues, thus contributing to off‐target drift and impaired droplet adhesion to target surfaces. Physical factors such as rain washing, degradation by sunlight and erosion by wind also influence the longevity of pesticide deposits on foliage which is crucial during the critical period of pest control. Factors affecting the mode of entry into insects are related to the type of ingredients used in formulation. If a pesticide acts via crawling contact, formulations which would provide surface deposits would be more beneficial than emulsions or oil‐based mixes which tend to undergo penetration into foliar cuticle. Physical factors that affect field performance of a pesticide tank mix are related to phase separation and ‘breakdown of emulsions’ in the application equipment; ‘agglomeration and caking’ of wettable powder dispersions at the bottom of the tank; impaired flow behaviour of highly viscous formulations; and coarse atomization of high‐viscosity tank mixes leading to poor target cover. 相似文献
872.
Adsorption of microcystin-LR (MC-LR) from water using iron oxide (alpha-Fe2O3) nanoparticles was investigated in this study. Adsorption of MC-LR adsorption was well-described by a pseudo second order kinetics model and Freundlich and Langmuir isotherm equations at 15 to 35 degrees C. Thermodynamic analysis showed that the Gibbs free energy was negative, whereas standard enthalpy and entropy changes were positive at this temperature range. These findings suggest that the adsorption of MC-LR on iron oxide nanoparticles was spontaneous and endothermic. The effects of initial pH, inorganic cations, and competing compounds with carboxyl groups on absorption of MC-LR were also evaluated. Typically, adsorption efficiency decreased with increasing pH from 2 to 11. Sodium ions did not appear to significantly affect MC-LR adsorption, whereas calcium ions slightly enhanced the MC-LR adsorption capacity of the iron oxide nanoparticles. Moreover, the inhibiting effect of competing organic compounds was increased with increasing numbers of carboxyl groups, as follows: citric acid (3)>oxalic acid (2)>benzoic acid (1). 相似文献
873.
874.
The harmful effect of manmade particles on natural processes and human health is documented by a large number of studies showing a positive correlation between particulate matter (PM) concentration and health effects. Diminution of this health risk necessitates among others the precise knowledge of the particle sources, their physical and chemical properties and their dissemination in the environment. Pb isotope ratios have been successfully used during the past decades as tracers of anthropogenic Pb disseminated in the biosphere. Here we show that tree bark biomonitoring with lead (Pb), strontium (Sr) and neodymium (Nd) isotope ratios as tracers allow a thorough analysis of the impacts of industrial and other anthropogenic emissions on the urban environment. This is the first comprehensive multi-isotope tracer study of atmospheric pollution in an urban environment allowing to identify and to integrate the different plume paths of emissions in a digital map system. This innovative approach might become an important tool for environmental management and policy-making processes dealing especially with risks and surveillance of air quality in the urban environment. 相似文献
875.
针对实验室所得垃圾渗滤液专用铁镁铝复合絮凝剂配方进行了批量扩大化生产,设计开发了中试专用絮凝反应设备,在垃圾填埋现场进行了絮凝中试实验。研究结果表明,最佳搅拌速度为170 r/min,最佳投药量为20%,COD去除率大于50%,BOD去除率大于30%,渗滤液可生化性由0.4提高到0.65,色度去除率约70%~80%,重金属去除率大于80%,优于同类常规市售絮凝剂聚铁、聚铝、聚铝铁;垃圾渗滤液处理专用絮凝反应器能满足设计开发要求,具有处理效果好、结构紧凑、多功能、自动化程度高、方便移动适于现场实验等特点;为适应渗滤液絮凝反应剧烈、产生大量泡沫、影响固液分离效果的特点,专用絮凝反应器固液分离部分的细部尺寸应进一步优化调整。 相似文献
876.
将电镀污泥作为一种重要的重金属资源加以回收利用,逐渐成为了国内外研究的重点。以电镀污泥为研究对象,在不同的温度及不同的焙烧时间下进行直接焙烧和还原焙烧,并对焙烧底渣进行酸浸,分别研究了污泥减量率以及Cu、Ni、Zn和Cr 4种重金属的含量和浸出率,并探索了还原剂(煤粉)和催化剂(CaCO3)投加量的影响。实验结果表明,原始电镀污泥中,Cu含量最高,达到10.05%,因此,电镀污泥中Cu具有回收价值;焙烧后电镀污泥得到了减量化,同时污泥中的金属得到了富集;还原焙烧比直接焙烧更有利于Cu的选择性浸出,当煤粉投加量为10%,CaCO3投加量为0.5%,在700℃下焙烧20 min时,Cu的浸出率达到98.73%,Cu的含量达到15.07%。 相似文献
877.
MnO2表面结合Fe(Ⅱ)对三氯乙烯的还原脱氯作用 总被引:1,自引:0,他引:1
通过批量实验研究了Fe(Ⅱ)、MnO2和MnO2表面吸附Fe(Ⅱ)这3种体系对溶液中三氯乙烯的还原脱氯作用。发现Fe(Ⅱ)吸附在MnO2表面时,对三氯乙烯的脱氯作用最强,氯代降解产物为顺-二氯乙烯(cis-DCE),且反应符合准一级动力学。进一步实验表明,保持Fe(Ⅱ)浓度为1 mmol/L,反应速率常数kobs和三氯乙烯去除率随pH升高(5.0~9.0)而增加,最大值分别为1.62×10-1h-1、70.4%;固定pH=7.0,kobs和三氯乙烯去除率随其Fe(Ⅱ)浓度增加(1~3mmol/L)而增大。Fe(Ⅱ)浓度继续增加,kobs和三氯乙烯去除率反而减小。pH=7.0,Fe(Ⅱ)浓度为3 mmol/L时,kobs和三氯乙烯去除率达到最大值,分别为2.86×10-1h-1和85.7%。 相似文献
878.
879.
上海城市化对气象要素和臭氧浓度的影响 总被引:3,自引:1,他引:2
为探讨城市化引起的土地利用变化对上海近地面气象要素和臭氧(O3)浓度的影响,运用美国国家大气研究中心等机构共同开发的WRF-Chem模式,在考虑扩大城市用地、运用城市冠层模式以及城市人为热影响的基础上,针对上海地区2个不同发展时期的下垫面土地利用类型,就2007年3次高浓度O3天气过程,设置4组灵敏性试验进行模拟。结果表明,以虹桥机场站为代表的市区受城市化影响温度升高、相对湿度降低、风速减小,日平均温度最高上升3.5℃,日平均相对湿度最大降低20%,日平均风速最大减小1.5m/s;但以青浦站和川沙站为代表的郊区受城市化影响不明显。此外,以卢湾站为代表的市区,O3浓度普遍增加,日均值最高可增加8.3μg/m3;但以川沙站和淀山湖站为代表的郊区,O3浓度的变化随着个例的不同有增加也有减少。 相似文献
880.
以硫脲为硫的源物质,以钛酸四丁酯为TiO2的前驱体,采用溶胶-凝胶法制备了掺硫改性TiO2光催化剂。以活性艳红X-3B为目标污染物,研究了该催化剂的光催化降解性能,对硫掺杂量、催化剂焙烧温度、溶液pH值以及催化剂添加量等影响因素进行了研究,并采用XRD分析手法对光催化剂进行表征。结果表明,经掺硫改性后的TiO2的催化活性有了很大提高,且硫的掺杂有一个最佳值,即Ti∶S的摩尔比为1∶1。经掺硫改性的TiO2在可见光区具备一定的催化活性, 180 min内对活性艳红X-3B的去除率可达35.1%,且在紫外光区的催化活性优于纯TiO2。 相似文献