root/studiarbeit/Ausarbeitung.bbl

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1 \begin{thebibliography}{{Ron}98}
2
3 \bibitem[{Aya}66]{Kitahara}
4 {Ayao Kitahara}.
5 \newblock {Mechanism of Solubilization of Water in Nonpolar Solutions of
6   Oil-Soluble Surfactants: Effect of Electrolytes}.
7 \newblock {\em The Journal of Physical Chemistry}, 70(11):3394--3398, 1966.
8
9 \bibitem[{Ber}99]{Aha}
10 {Bernd Stefan Aha}.
11 \newblock {\em {Biologisch abbaubare Tenside aus nachwachsenden Rohstoffen:
12   N-Acylaminos{\"a}uren: Synthesen und Tensideigenschaften}}.
13 \newblock PhD thesis, {Bergische Universit{\"a}t GH Wuppertal}, Wuppertal,
14   1999.
15
16 \bibitem[{Dav}00]{Sabatini}
17 {David A. Sabatini}.
18 \newblock {Integrated design of surfactant enhanced DNAPL remediation:
19   efficient supersolubilization and gradient systems}.
20 \newblock {\em Journal of Contaminant Hydrology}, (45):99--121, 2000.
21
22 \bibitem[{Der}94]{Young}
23 {Derek R. Young}.
24 \newblock {Salt Precipitation for Proteins: Introduction to Biochemical
25   Engineering},
26   \textit{http://www.rpi.edu/dept/chem-eng/Biotech-Environ/PRECIP/precpsalt.htm},
27   1994.
28
29 \bibitem[DH00]{Danzer}
30 J{\"o}rg Danzer and Mike Herbert.
31 \newblock {Tenside zur In-situ-Grundwassersanierung: Stand der Technik,
32   Planung, Implementierung}.
33 \newblock {\em Schriftenreihe Altlastenforum}, (3), 2000.
34
35 \bibitem[Hed04]{Hedinger}
36 Hedinger.
37 \newblock {Sicherheitsdatenblatt CS2}, 2004.
38
39 \bibitem[HR96]{Kunieda}
40 {Hironobu Kunieda} and {Reiko Aoki}.
41 \newblock {Effect of Added Salt on the Maximum Solublization in an
42   Ionic-Surfactant Microsolution}.
43 \newblock {\em Langmuir}, Vol. 12(24):5796--5799, 1996.
44
45 \bibitem[{Jef}04]{Childs}
46 {Jeffrey D.Childs}.
47 \newblock {Improving the extraction of tetrachloroethylene from soil colummns
48   using surfactant gradient systems}.
49 \newblock {\em Journal of Contaminant Hydrology}, (71):27--45, 2004.
50
51 \bibitem[L{\"a}c09]{Lachler}
52 Wolf L{\"a}chler.
53 \newblock {Vorlesungsskript Umweltgeologie}, \textit{Institut f{\"u}r
54   Geotechnik Universit{\"a}t Stuttgart}, 2009.
55
56 \bibitem[Mem07]{Memminger}
57 Birgit Memminger.
58 \newblock {\em {Aufbereitung von Sp{\"u}lw{\"a}ssern bei der hydraulischen
59   In-situ Sanierung}}.
60 \newblock Oldenbourg Industrieverlag, 2007.
61
62 \bibitem[Mer11]{Merck}
63 Merck.
64 \newblock {Sicherheitsdatenblatt CS2}, 2011.
65
66 \bibitem[Pap]{papadakis}
67 Christine Papadakis.
68 \newblock {Vorlesung 9: Polyelektrolyte}, \textit{Technische Universit{\"a}t
69   München,
70   http://www.e13.physik.tu-muenchen.de/structpol/docs/Polymerphysik06Vorl9.pdf}.
71
72 \bibitem[{Rob}93]{Cohen}
73 {Robert Cohen and James Mercer}.
74 \newblock {\em {DNAPL Site Evaluation}}.
75 \newblock C.K. Smoley, Chelsea, Michigan, 1993.
76
77 \bibitem[{Ron}98]{Falta}
78 {Ronald W. Falta}.
79 \newblock {Using Phase Diagrams to Predict the Performance of Cosolvent Floods
80   for NAPL Remediation}.
81 \newblock {\em Journal of Contaminant Hydrology}, 18(3):94--102, 1998.
82
83 \bibitem[{S. }76]{Saito}
84 {S. Saito}.
85 \newblock {F{\"a}llung nichtionogener Tenside durch Polymers{\"a}uren:
86   Zusatzeffekt anorganischer Salze und S{\"a}ure}.
87 \newblock {\em Colloid and Polymer Science}, (10):882--889, 1976.
88
89 \bibitem[Sch]{Schneider}
90 Schneider.
91 \newblock {Physikalische Chemie II: Viskosit{\"a}t}, \textit{Universit{\"a}t
92   Siegen, Arbeitsgruppe Physikalische Chemie,
93   http://www2.uni-siegen.de/~pciii/PC22.pdf}.
94
95 \bibitem[{Uni}04]{EPA}
96 {United Staates Environmental Protection Agency}.
97 \newblock {Site Characterization Technologies for DNAPL Investigations},
98   \textit{U.S. EPA Technology Innovation Program,
99   http://www.epa.gov/tio/download/char/542r04017.pdf}, 2004.
100
101 \bibitem[ZR00]{Zhou}
102 Meifang Zhou and R.~Dean Rhue.
103 \newblock {Screening Commercial Surfactants Suitable for Remediating DNAPL
104   Source Zones by Solubilization}.
105 \newblock {\em Environmental Science {\&} Technology}, 34(10):1985--1990, 2000.
106
107 \end{thebibliography}
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