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6.
AGRADECIMIENTOS


                         Este
trabajo
ha
sido
financiado
por
la
Comunidad
de
Madrid
(CAM)
a
través
de

                  la
Red
CARESOIL,
Ref.
P2013/
MAE‐2739.





                  7.
REFERENCIAS


                         1.     Kazakis
 K,
 Voudouri
 S.
 Groundwater
 vulnerability
 and
 pollution
 risk

                                assessment
 of
 porous
 aquifers
 to
 nitrate:
 Modifying
 the
 DRASTIC

                                method
 using
 quantitative
 parameters.
 Journal
 Hidrology
 2015;
 525:

                                13‐25.


                         2.     Patrikaki
O,
Kazakis
N,
Voudouris
K.
Vulnerability
map:
a
useful
tool
for

                                groundwater
protection:
an
example
from
Mouriki
Basin,
North
Greece.

                                Fresenius
Environ
Bull
2012;
21
(8c):
2516–21.


                         3.     Vrba
J,
Zaporozec
A.
Guidebook
on
mapping
groundwater
vulnerability.

                                Int
Contrib
Hydrol
1994.


                         4.     Foster
SSD.
Vulnerability
of
soil
and
groundwater
to
pollutions.
Hydrol

                                Proc
Inf
1987;
20
(17):
116–21.

                         5.     Aller
L,
Bennett
T,
Lehr
JH,
Petty
RJ,
Hackett
G.
DRASTIC:
A
Standardized

                                System
 for
 Evaluating
 Ground
 Water
 Pollution
 Potential
 Using

                                Hydrogeologic
Settings
EPA‐600/2‐87‐035.
1987.

                         6.     Van
 Stempvoort
 D,
 Ewert
 L,
 Was‐senaar
 L.
 AVI:
 A
 method
 for

                                groundwa'ter
 protection
 mapping
 in
 the
 prairie
 prov‐inces
 of
 Canada.

                                Prairie
Provinces
Water
Board

Report
114,
Regina,
SK.
1992.

                         7.     Moreno
Merino
L,
González
Huecas
C,
López
Lafuente
A.
Características

                                edáficas
 condicionantes
 de
 la
 vulnerabilidad
 a
 la
 contaminación
 de

                                aguas
 subterráneas
 situadas
 bajo
 Fluvisoles
 calcáricos.
 Boletín


                                Geológico
y
Minero
1999;
106‐2:
149‐60.

                         8.     Tesoriero
 AJ,
 Voss
 FD.
 Predicting
 the
 probability
 of
 elevated
 nitrate

                                concentrations
 in
 the
 Puget
 Sound
 Basin:
 implications
 for
 aquifer

                                susceptibility
and
vulnerability.
Ground
Water
1997;
6
(35):
1029‐39.

                         9.     Nolan
BT,
Hitt
KJ.
Vulnerability
of
shallow
groundwater
and
drinking‐
                                water
wells
to
nitrate
in
the
United
States.

Environ
Sci
Technol
2006;

                                40:
7834‐40.


                         10.    Dusek,
J,
Dohnal
M,
Vogel
T,
Ray
C.
Field
leaching
of
pesticides
at
five
test

                                sites
in
Hawaii:
modeling
flow
and
transport.

Pest
Manag
Sci
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67:

                                1571‐82.

                         11.    Šimůnek
 J,
 Van
 Genuchten
 MT.
 Modeling
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 flow
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                                transport
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HYDRUS.
Vadose
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J
2008;
7
(2):
782‐97.



                      

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