root/studiarbeit/Ausarbeitung.bbl

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1 \begin{thebibliography}{Mem07}
2
3 \bibitem[{Ber}]{Aha}
4 {Bernd Stefan Aha}.
5 \newblock Biologisch abbaubare tenside aus nachwachsenden rohstoffen: N-:
6   Synthesen und tensideigenschaften.
7 \newblock 1999.
8
9 \bibitem[CM93]{Cohen}
10 Robert Cohen and James Mercer.
11 \newblock Dnapl site evaluation.
12 \newblock 1993.
13
14 \bibitem[D.C04]{Childs}
15 Jeffrey D.Childs.
16 \newblock Improving the extraction of tetrachloroethylene from soil colummns
17   using surfactant gradient systems.
18 \newblock {\em Journal of Contaminant Hydrology 71 (2004)}, (71):27--45, 2004.
19
20 \bibitem[DH]{Danzer}
21 J{\"o}rg Danzer and Mike Herbert.
22 \newblock altlastenforum-tenside{\_}zur{\_}in-situ-sanierung.pdf: Stand der
23   technik, planung und implementierung.
24 \newblock 2000.
25
26 \bibitem[Dre02]{Drelich}
27 I.~Drelich.
28 \newblock Measurement of interfacial tension in fluid-fluid systems.
29 \newblock {\em Encyclopedia of Surface and Colloid Science}, pages 3152--3166,
30   2002.
31
32 \bibitem[Fal]{Falta}
33 Ronald~W: Falta.
34 \newblock Using phase diagrams to predict the performance of cosolvent floods
35   for napl remediation.
36 \newblock {\em Ground Water Monitoting Remediation}, pages 94--102.
37
38 \bibitem[{Han}]{Stupp}
39 {Hans Dieter Stupp}.
40 \newblock Dnapl in boden und grundwasser verhalten von lckw und pak-{\"o}len.
41
42 \bibitem[Hed04]{Hedinger}
43 Hedinger.
44 \newblock Sicherheitsdatenblatt cs2.
45 \newblock 2004.
46
47 \bibitem[Kit66]{Kitahara}
48 Ayao Kitahara.
49 \newblock Mechanism of solubilization of water in nonpolar solutions of
50   oil-soluble surfactants: Effect of electrolytes.
51 \newblock {\em The Journl of Physical Chemistry}, (11):3394--3398, 1966.
52
53 \bibitem[Kun96]{Kunieda}
54 Hironobu Kunieda.
55 \newblock Effect of added salt on the maximum solubilization in an
56   ionic-surfactant microemulsion.
57 \newblock {\em Langmuir}, (24):5795--5799, 1996.
58
59 \bibitem[L{\"a}c]{Lachler}
60 Wolf L{\"a}chler.
61 \newblock Vorlesungsskript umweltgeologie.
62
63 \bibitem[Mem07]{Memminger}
64 Birgit Memminger.
65 \newblock {\em Aufbereitung von Sp{\"u}lw{\"a}ssern bei der hydraulischen
66   In-situ Sanierung}.
67 \newblock Oldenbourg Industrieverlag, 2007.
68
69 \bibitem[Mer11]{Merck}
70 Merck.
71 \newblock Sicherheitsdatenblatt cs2.
72 \newblock 2011.
73
74 \bibitem[Pro]{EPA}
75 U.S. EPA Technology~Innovation Program.
76 \newblock Site characterization technologies for dnapl investigations.
77
78 \bibitem[Sab00]{Sabatini}
79 David~A. Sabatini.
80 \newblock Integrated design of surfactant enhanced dnapl remediation: efficient
81   supersolubilization and gradient systems.
82 \newblock {\em Journal of Contaminant Hydrology 45 2000. 99--121}, pages
83   99--121, 2000.
84
85 \bibitem[Sai76]{Saito}
86 S.~Saito.
87 \newblock F{\"a}llung nichtionogener tenside durch polymers{\"a}uren:
88   Zusatzeffekt anorganischer salze und s{\"a}ure.
89 \newblock {\em Colloid and Polymer Science}, (10):882--889, 1976.
90
91 \bibitem[Sch]{Schneider}
92 Schneider.
93 \newblock Vorlesungsskript physikalische chemie ii: Viskosit{\"a}t.
94
95 \bibitem[SP04]{St-Pierre}
96 Chantal St-Pierre.
97 \newblock Tce recovery mechanisms using micellar and alcohol solutions: phase
98   diagrams and sand column experiments.
99 \newblock {\em Journal of Contaminant Hydrology}, 71(1-4):155--192, 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 $\dagger$.
105 \newblock {\em Environmental Science {\&} Technology}, 34(10):1985--1990, 2000.
106
107 \end{thebibliography}
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