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Ultra-violet Spectrophotometry has been used for qualitative and quantitative analysis of water and wastewater in conjunction with appropriate signals and a deconvolution method. Application of this procedure with the use of a portable UV spectrophotometer was carried out to study treated wastewater discharge into a river. The data obtained were used to estimate dilution factors of polluted waters at different points of sampling. This simple and rapid methodology can be easily transposed with any PC-controlled UV spectrophotometer including a multicomponent routine.  相似文献   
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Object of the present study is a new biomonitor using Dreissena polymorpha PALLAS as testorganism. The status of the shell gape and the valve movements are parameters to indicate toxic discharges. With the aid of some toxicity tests using trichloroethylene, chloroform, ethylparathion, and copper(II)sulfate, the detection efficiency of the “Dreissena-monitor” was described and compared with those of biomonitors in literature. The use of the monitors in the control of sewage, drinking water, and natural waters is discussed. The critical concentrations at which an alarm was set by the “Dreissena-monitor” were 0.03 to 0.1 mg/L with copper(II)sulfate, 7.5 to 8.2 mg/L with trichloroethylene, 33 mg/L with chloroform, and 0.8 to 0.9 mg/L ethyl parathion. Thereby, the alarm was always set within 5 to 35 minutes. Possible fields of application are especially the control of sewage effluents and their immediate environments.  相似文献   
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