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81.
Degradation of short-chain alkyl- and alkanolamines by TiO2- and Pt/TiO2-assisted photocatalysis 总被引:5,自引:0,他引:5
The photooxidation of C2H5NH2, (C2H5)2NH, HOC2H4NH2, (HOC2H4)2NH and (HOC2H4)3N using TiO2 and Pt/TiO2 as photocatalysts has been investigated. A laboratory set up was designed and a study on the influence of the concentration of the photocatalyst, the pH-value and the structure of the amine performed. The photocatalytic process was optimized with respect to the concentrations of the model substances during degradation. The decrease of the amine concentrations was found to be maximum at a pH of 10. The time-dependence of the formation of cationic breakdown products, such as NH3/NH4 and short-chain alkyl- and alkanolamines was studied by analyses with single column ion chromatography. The experimental data show that the photodegradation follows a Langmuir-Hinshelwood kinetic. The mineralization of the model substances also was monitored by measurements of the decrease of the TOC and of the formation of NO2 and NO3. The different mineralization efficiencies for the model substances studied are discussed with regard to their structure and adsorption behaviour on the photocatalyst. A possible breakdown mechanism involving the electrophilic attack of the hydroxyl radical is given. The applicability of the TiO2-assisted photocatalytic degradation of C2H5NH2 and (C2H5)2NH was tested at the pilot plant-scale with real solar radiation. The degradation rates and products obtained were similar to those found in the laboratory experiments. 相似文献
82.
Jennifer M. Jacobs David A. Myers Brent M. Whitfield 《Journal of the American Water Resources Association》2003,39(2):313-324
ABSTRACT: Remotely sensed soil moisture data measured during the Southern Great Plains 1997 (SGP97) experiment in Oklahoma were used to characterize antecedent soil moisture conditions for the Soil Conservation Service (SCS) curve number method. The precipitation‐adjusted curve number and the soil moisture were strongly related (r2= 0.70). Remotely sensed soil moisture fields were used to adjust the curve numbers and the runoff estimates for five watersheds, in the Little Washita watershed; the results ranged from 2.8 km2 to 601.6 km2. The soil moisture data were applied at two spatial scales, a finer one (800 m) measuring spatial resolution and a coarser one (28 km). The root mean square error (RMSE) and the mean absolute error (MAE) of the runoff estimated by the standard SCS method was reduced by nearly 50 percent when the 800 m soil moisture data were used to adjust the curve number. The coarser scale soil moisture data also significantly reduced the error in the runoff predictions with 41 percent and 28 percent reductions in MAE and RMSE, respectively. The results suggest that remote sensing of soil moisture, when combined with the SCS method, can improve rainfall runoff predictions at a range of spatial scales. 相似文献
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The Science of Nature - 相似文献
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The ability of Section 404 of the Clean Water Act to act as an effective, efficient, and equitable land-use planning tool
was assessed through a survey of Section 404 permits in Wisconsin. In a six-month period of permitting, the 404 program reduced
wetland losses in the state by 15%. Several factors were examined that may affect permit decisions; these factors are water
dependency, alternatives, project type, wetland type, and public or agency comments. Only the water dependency of the project
had a statistically significant effect on permit decisions, although development projects that were perceived to provide public
good were more likely to be permitted. Environmental impacts of a proposed fill project were not adequately assessed in any
of the permit decisions. Because of the way Section 404 is interpreted and administered by the US Army Corps of Engineers,
increasing net benefits and achieving an equitable distribution of those benefits is difficult. The corps does not perform
any functional evaluations of wetlands nor do they attempt to measure economic value and environmental impacts. In addition,
the 404 review process is, in effect, inaccessible to the public. The de facto interpretations of the Section 404 regulations
and a lack of program funding and trained personnel all contribute to the program's ineffectiveness. 相似文献
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G. Jacobs 《Die Naturwissenschaften》1955,42(21):575-576