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241.
采用氯化锌活化法制得核桃果皮基活性炭吸附甲基橙和酸性品红,考察了吸附时间,p H,吸附质初始浓度对吸附性能的影响及吸附热力学和动力学性质。结果表明,核桃果皮基活性炭是吸附甲基橙和酸性品红染料的理想材料;延长吸附时间,去除率和吸附量增加,最佳吸附时间为6 h;减小p H值,去除率和吸附量增加。p H为6时,2种染料的去除率达95%以上,吸附效果较好;增大吸附质初始浓度,去除率降低,吸附量增大,当甲基橙初始浓度为180 mg/L时,吸附基本达到饱和;甲基橙的吸附属于单层吸附,酸性品红的吸附属于多层吸附行为。准二级动力学方程均能较好地解释2种染料的吸附动力学行为。 相似文献
242.
Fluxes of polycyclic aromatic hydrocarbons (PAHs) were investigated along the route of transport in a south German karst system. Atmospheric deposition, seepage water in caves and spring water at the outlet of the catchment were monitored continuously over 1.5 years allowing the establishment of an input/output mass balance at the catchment scale. The results reveal that, even in the highly vulnerable karst catchment, PAHs are effectively retained in the soils. Only during high discharge events, such as snowmelt in spring, increasing PAH concentrations at the outlet of the catchment indicates a mobilization of the pollutants. These events are typically correlated with increasing particle concentrations. Based on our results, we conclude that particle-facilitated transport is the dominating cause of PAH mobilization. In summary, PAHs accumulate over time in soils and only occasionally high discharge events cause a short concentration pulse to be flushed through the karst system. 相似文献
243.
The greenhouse gases subject to emission reduction commitments under the UN Climate Convention include the fluorinated compounds sulphur hexafluoride (SF6), perfluorocarbons (PFCs) and hydrofluorocarbons (HFCs). The present study projects the emissions of these gases in Germany over the 1995–2010 period, with and without additional emission abatement efforts In the business-as-usual scenario, total emissions of the three fluorinated gases rise over the 1995–2010 period from 11,1 to 27.4 million tonnes CO2 equivalent. This rise is attributable to 72% to HFCs, used above all for refrigeration and stationary air-conditioning, for mobile air-conditioning, for blowing extruded polystyrene (XPS) foam and for one-component polyurethane (PU) foam. Soundproof glazing is the largest SF6 emission sector. Most PFC emissions come from semiconductor manufacturing and aluminium smelting. The reduction scenario does not achieve a stabilisation of fluorinated gas emissions either. The rate of growth is only slowed, with 11.1 million tonnes CO2 equivalent in 1995 growing to 14.9 million in 2010. The measures proposed to attenuate emissions growth are: mandatory equipment maintenance in refrigeration and stationary air-conditioning, refrigerant substitution of HFCs by CO2 in mobile air-conditioning, partial HFC substitution by CO2 in XPS foam blowing, 95% HFC substitution by flammable hydrocarbons in one-component PU foam. Complete SF6 phase-out is considered to be feasible in soundproof glazing. The PFC emissions of the semiconductor industry can be cut by 85% by new chamber cleaning technologies. 相似文献
244.
内容依托教学是内容学习和语言学习为一体的教学方式,此种教学方法在高职商务英语专业教学中的应用效果卓著。通过观察和访谈收集相关数据,采用定性的研究范式,发现在内容依托教学的初步实施阶段还存在学生的认识态度、相关课程的教学内容以及测试和评估等方面的问题。 相似文献
245.
Schleicher Nina Recio Hernández Clemente 《Environmental science and pollution research international》2010,17(3):770-778
Background, aim and scope
Salt efflorescences markedly contribute to the alteration and deterioration of building material, in this case the Villamayor Sandstone of the facades in the Old Town of Salamanca, Spain (United Nations Educational, Scientific and Cultural Organization world cultural heritage site). A better understanding of the mechanisms of salt formation and the involved elements would allow more precise measures in monument conservation. The magnesium which is required for the salt precipitation originates from selective processes of hydrolysis. The source of sulphate, however, is presently not as clear. Identifying the source of the sulphur was the main goal of this research. Isotope ratio measurement of δ34S and δ18O was used to clarify the origins of Mg sulphate salts. 相似文献246.
Circulation and Stream Plume Modeling in Conesus Lake 总被引:1,自引:0,他引:1
Yan Li Anthony Vodacek Nina Raqueño Robert Kremens Alfred J. Garrett Isidro Bosch Joseph C. Makarewicz Theodore W. Lewis 《Environmental Modeling and Assessment》2008,13(2):275-289
A three-dimensional hydrodynamic model that includes the effect of drag from macrophytes was applied to Conesus Lake to study
the seasonal circulation and thermal structure during spring and early summer. Local weather conditions and stream flow data
were used to drive the model. The drag coefficient for macrophytes was calculated as a function of leaf density. In general,
the model results show good agreements with the observations, including vertical temperature profiles measured at two locations
and average surface temperature derived from calibrated thermal imagery for large-scale simulations of the entire lake. Additional
high-resolution simulations were carried out to understand water circulation and transport of sediment and model-generated
tracer during hydrometeorological events at stream mouths for two experimental sites. The model results show that the plume
development at stream mouths during storm events in Conesus Lake are site-dependent and may either be current- or wind-driven.
The results also show a significant effect from the presence of macrophytes on sediment deposition near stream mouths. 相似文献
247.
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249.
J. Smolík P. Dohányosová J. Schwarz V. Ždímal M. Lazaridis 《Water, Air, & Soil Pollution: Focus》2008,8(1):35-47
The mass, ionic and elemental size distributions of particulate matter (PM) measured indoors and outdoors in an apartment
situated in a north–westward suburb of Prague are presented. The PM samples were collected by two Berner type low pressure
impactors separating particles into 10 size fractions from 26 nm to 10 μm and were further analyzed by ion chromatography
(IC) and proton induced X-ray emission (PIXE). Temperature, pressure and relative humidity were measured both indoors and
outdoors parallel to PM sampling. The indoor and outdoor PM dynamics were recorded by two scanning mobility particle sizers
(SMPS) and an aerodynamic particle sizer (APS). Finally, the ventilation rate was determined by a radon technique. Ion chromatography
showed that the major inorganic components of the fine particle mode are sulfate, nitrate, and ammonium with very low indoor
nitrate concentration. Crustal elements (Al, Si, Ca, Ti, Mn, and Fe) were associated with the coarse aerosol mode. The presence
of people increased the mass concentration of coarse particles, whereas cooking, smoking, and burning of incense and candles
contributed predominantly to the fine particle mode. Smoking and the burning of incense also increased the concentration of
potassium, bromine and chlorine content in fine particles. 相似文献