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71.
Wolfram Witt 《Die Naturwissenschaften》1963,50(4):123-123
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The environmental performance of presently operated GSM and UMTS networks was analysed concentrating on the environmental effects of the End-of-Life (EOL) phase using the Life Cycle Assessment (LCA) method. The study was performed based on comprehensive life cycle inventory and life cycle modelling. The environmental effects were quantified using the IMPACT2002+ method. Based on technological forecasts, the environmental effects of forthcoming mobile telephone networks were approximated. The results indicate that a parallel operation of GSM and UMTS networks is environmentally detrimental and the transition phase should be kept as short as possible. The use phase (i.e. the operation) of the radio network components account for a large fraction of the total environmental impact. In particular, there is a need to lower the energy consumption of those network components. Seen in relation to each other, UMTS networks provide an environmentally more efficient mobile communication technology than GSM networks. In assessing the EOL phase, recycling the electronic scrap of mobile phone networks was shown to have clear environmental benefits. Under the present conditions, material recycling could help lower the environmental impact of the production phase by up to 50%. 相似文献
73.
Klaus G. Heumann 《毒物与环境化学》2013,95(2):111-129
The application of mass spectrometric isotope dilution analysis in environmental analytical chemistry is described. Different ionization methods used in mass spectrometry for isotope dilution analysis and the advantage of isotope dilution analysis owing to its accuracy are discussed. The principle of the isotope dilution technique is explained using thallium analysis as an example. Possible methods of sample decomposition for organic and inorganic matrices and of element separation are given. Using lead, cadmium and thallium analyses as examples the application of mass spectrometric isotope dilution analysis for determination of toxic metals in environmental samples is shown. The determination of chloride and bromide traces in snow is given as an example of non‐metal analysis. The possibility of determining pure elements by the isotope dilution technique using a long‐lived radioactive isotope as a spike is discussed. 相似文献
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