1. Simultaneous quantification of polar and non-polar volatile organic compounds in water samples by direct aqueous injection-gas chromatography/mass spectrometry;Aeppli;J. Chromatogr. A,2008
2. Aeppli, C., Berg, M., Cirpka, O.A., Holliger, C., Schwarzenbach, R.P., Hofstetter, T., 2009. Influence of mass-transfer limitations on carbon isotope fractionation during microbial dechlorination of trichloroethene. Environ. Sci. Technol. 43, in press, doi:10.1021/es901481b.
3. Interpretation of dissolved atmospheric noble gases in natural waters;Aeschbach-Hertig;Water Resour. Res.,1999
4. Almeida, C.C., Costa, M.C., Dill, A.C., Fernandes, J., Francés, A., Midões, C., Müller, I., Nunes, F., Nuzzo, M., Reis, M.P., 2002. Reabilitação de Aquíferos Contaminados pela Indústria – Resultados Preliminares no Caso de Estudo do Seixal, 6 Congresso da Agua. APHR – Associação Portuguesa dos Recursos Hídricos, Porto.
5. Amaral, H.I.F., Aeppli, C., Berg, M., Schwarzenbach, R.P., Kipfer, R., submitted for publication. Combination of compound-specific stable isotope analysis and environmental tracers to assess in-situ natural transformation of chlorinated ethenes in groundwater.