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Metam-sodium had become the most heavily used soil fumigant in recent years as the deadline approached for methyl bromide to phase out in January 2005. After application, metam-sodium decomposes rapidly to methyl isothiocyanate (MITC), a highly toxic compound capable of killing a wide spectrum of soil-borne pests. Inhalation risk of MITC ranked high among airborne agricultural pesticides in California. Information about off-gassing intensity and percentage of emission is essential for exposure risk assessment and mitigation measures, but is limited, especially for new application methods such as drip chemigation. Air concentrations of MITC were monitored around a field treated with metam-sodium through surface drip irrigation system. The field was tarped with plastic films before the chemigation. The air concentrations at receptor locations were simulated for the period of air monitoring with the Industrial Source Complex (ISC3) Dispersion Model, and soil flux density of MITC at various periods after chemigation was estimated through a back-calculation procedure. The estimated soil flux density of MITC showed a diurnal pattern, with the daytime flux stronger than nighttime. However, the average air concentration at nighttime was higher than that at daytime. Soil flux density peaked at 4.30 microg m-2 s-1 in the first 12-h period after chemigation, then declined with time. The MITC emission percentage in the first 60-h was 2.65% of applied mass, of which 57% occurred in the first 24-h after chemigation. The study indicated that the tarped bed drip application method of metam-sodium had a relatively good control of MITC emission from soil. 相似文献
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Assessing Impacts of Typhoons and the Chi-Chi Earthquake on Chenyulan Watershed Landscape Pattern in Central Taiwan Using Landscape Metrics 总被引:3,自引:1,他引:2
The Chi-Chi earthquake (ML = 7.3) occurred in the central part of Taiwan on September 21, 1999. After the earthquake, typhoons Xangsane and Toraji produced
heavy rainfall that fell across the eastern and central parts of Taiwan on November 2000 and July 2001. This study uses remote
sensing data, landscape metrics, multivariate statistical analysis, and spatial autocorrelation to assess how earthquake and
typhoons affect landscape patterns. It addresses variations of the Chenyulan watershed in Nantou County, near the earthquake’s
epicenter and crossed by Typhoon Toraji. The subsequent disturbances have gradually changed landscape of the Chenyulan watershed.
Disturbances of various types, sizes, and intensities, following various tracks, have various effects on the landscape patterns
and variations of the Chenyulan watershed. The landscape metrics that are obtained by multivariate statistical analyses showed
that the disturbances produced variously fragmented patches, interspersed with other patches and isolated from patches of
the same type across the entire Chenyulan watershed. The disturbances also affected the isolation, size, and shape-complexity
of patches at the landscape and class levels. The disturbances at the class level more strongly affected spatial variations
in the landscape as well as patterns of grasslands and bare land, than variations in the watershed farmland and forest. Moreover,
the earthquake with high magnitude was a starter to create these landscape variations in space in the Chenyulan watershed.
The cumulative impacts of the disturbances on the watershed landscape pattern had existed, especially landslides and grassland
in the study area, but were not always evident in space and time in landscape and other class levels. 相似文献
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不同氮源和曝气方式对淡水藻类生长的影响 总被引:13,自引:3,他引:10
利用水族箱微宇宙研究了2种氮源水体中不同曝气条件对藻类生长的影响.试验使用铵态氮(NH4+-N)和硝态氮(NO3--N)作为氮源,每种氮源水体分别设置不曝气、连续曝气、昼间曝气和夜间曝气4个处理.结果显示:试验初期以NH4+-N为主要氮源的水体中藻类生长明显好于以NO3--N为主要氮源的水体.试验后期则以NO3--N为主要氮源的藻类生长情况更好.连续曝气对于2种氮源水体中藻类生长有着不同的影响;昼间曝气对2种氮源的藻类生长影响不大;而夜间曝气对藻类生长有明显的抑制作用.NH4+-N含量较高的水体中蓝藻容易成为优势种,而NO3--N含量高的水体中则以绿藻为主.不同曝气条件下藻类优势种没有明显差别. 相似文献
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氯对紫外线灭活枯草芽孢杆菌的协同作用 总被引:8,自引:1,他引:7
以枯草芽孢杆菌为研究对象,研究了紫外线和氯单独及联合作用时的灭菌效果.结果表明,单独氯消毒时,对枯草芽孢杆菌的灭活效果很低,CT值为300(mg·min)/L时,灭活率仅为0.53个对数级;单独紫外线消毒对枯草芽孢杆菌有较好的灭活效果,紫外线剂量为40mJ/cm2时,对其有3.3个对数级的灭活效果.紫外线和氯联合消毒时,对枯草芽孢杆菌的灭活效果大大增强,当紫外线剂量为40mJ/cm2,氯的CT值为300(mg·min)/L时,对枯草芽孢杆菌的灭活率可达6.2个对数级,远高于二者单独作用效果之和.紫外线与氯的作用顺序对消毒效果有明显影响,以先紫外线照射后再加氯的效果最好.通过Berenbaum公式计算可知,紫外线与氯联合灭菌是一种协同作用,并且随着紫外线剂量及氯投量的增加,协同作用增强. 相似文献
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