The salt water could be desalinated by microbial desalination cell (MDC) without energy supply and simultaneously produce bioenergy. One of the factors for support their sustainability perform is a modification of electrode. Anode modifications have been proposed for salinity reduction in saline water. Immobilization of yeast cells has been applied in MDC. Yeast as biocatalyst was used as electrogenic microorganism oxidized glucose then transfer electrons generated from yeast cells to carbon electrode mediated by neutral red as redox mediator. The results were characterized by chronoamperometry and confirmed that all the anodes modified could be a promising method for long-term performance of MDC based yeast cells.

1.
S.
Miller
,
H.
Shemer
, and
R.
Semiat
,
Desalination
366
,
2
8
(
2015
)
2.
Y.
Zhou
and
R. S. J.
Tol
,
Water Resour. Res.
41
,
1
10
(
2005
).
3.
M.
Mehanna
 et al.,
Energy Environ. Sci.
3
,
1114
1120
(
2010
).
4.
T.
Saito
 et al.,
Bioresour. Technol.
102
,
395
398
(
2011
).
5.
P.
Liang
,
K.
Xiao
,
Y.
Zhou
,
X.
Zhang
, and
B. E.
Logan
,
Environ. Sci. and Tech.
43
,
7148
7152
(
2009
).
6.
Y.
Kim
and
B. E.
Logan
,
Desalination
308
,
115
121
(
2013
).
7.
H.
Luo
,
P.
Xu
,
T. M.
Roane
,
P. E.
Jenkins
, and
Z.
Ren
,
Bioresour. Technol.
105
,
60
66
, (
2012
).
8.
M.
Pearson
,
U. S. Infrastructure Finance Needs for Water and Wastewater
(
RCAP
,
Washington DC.
,
2005
), pp.
1
12
9.
C.
Forrestal
,
P.
Xu
,
P. E.
Jenkins
, and
Z.
Ren
,
Bioresour. Technol.
120
,
332
336
(
2012
).
10.
C.
Charcosset
,
Membranes for Clean and Renewable Power Applications
. (
Elsevier
,
2014
), pp.
44
62
.
11.
K. S.
Brastad
and
Z.
He
,
Desalination
309
,
32
37
(
2013
).
12.
Y.
Qu
 et al.,
Desalination
317
,
17
22
(
2013
).
13.
U.
Mardiana
,
C.
Innocent
,
M.
Cretin
,
Buchari
,
S.
Gandasasmita
, “
Yeast fuel cell : Application for desalination.
”,
IOP conference series:material science and engineering
(
10ᵗʰ Join Conference on Chemistry, University of Sebelas Maret
,
Surakarta, Indonesia
,
2016
) pp.
107
, 2-14.
14.
Z.
Ge
,
C. G.
Dosoretz
, and
Z.
He
,
Desalination
341
,
101
106
(
2014
).
15.
Y.
Lu
,
I. M.
Abu-reesh
, and
Z.
He
,
Environ. Sci. Pollut. Res.
23
,
17236
17245
(
2016
).
16.
F.
Zhang
,
M.
Chen
,
Y.
Zhang
, and
R. J.
Zeng
,
J. Memb. Sci.
417–418
, pp.
28
33
(
2012
).
17.
Y.
Kim
and
B. E.
Logan
,
Desalination
308
,
122
130
(
2013
).
18.
F.
Zhang
and
Z.
He
,
Desalination
360
,
28
34
(
2015
).
19.
S.
You
,
Q.
Zhao
,
J.
Zhang
,
J.
Jiang
,
S.
Zhao
,
C.
Wan
,
M.
Du
,
Power Source
173
,
172
177
(
2007
).
20.
U.
Mardiana
,
C.
Innocent
,
H.
Jarrar
, and
M.
Cretin
,
Int. J of Electrochem. sci.
10
,
8886
8898
(
2015
).
21.
J.
Champavert
,
U.
Mardiana
, and
C.
Innocent
,
Current Org. Chem.
21
,
1702
1712
(
2017
).
22.
U.
Mardiana
,
C.
Innocent
,
M.
Cretin
, and
H.
Setiyanto
, “
Russian J. of Electrochem.
55
, pp.
78
87
(
2019
).
23.
W. E.
Kosimaningrum
,
T. X. H.
Le
,
Y.
Holade
,
M.
Bechelany
,
S.
Tingry
,
B.
Buchari
,
I.
Noviandry
,
C.
Innocent
,
M.
Cretin
,
ACS Appl. Mater. Interfaces
9
,
22476
22489
(
2017
).
24.
Y.-C.
Yong
,
Z.-H.
Liao
,
J.-Z.
Sun
,
T.
Zheng
,
R.-R.
Jiang
, and
H.
Song
,
Process Biochem.
48
,
1947
1951
(
2013
).
25.
S. V.
Raghavulu
,
R. K.
Goud
,
P. N.
Sarma
, and
S. V.
Mohan
,
Bioresour. Technol.
102
,
2751
2757
(
2011
).
26.
P. K.
Walsh
,
F. V.
Isdell
,
S. M.
Noone
,
M. G. O.
Donovan
,
D. M.
Malone
,
Enzyme Microb. Technol.
18
,
366
372
(
1996
).
27.
K.
Meena
and
T. K.
Raja
,
World J. of Microbiol and biotech.
22
,
606
608
(
2006
).
28.
I.
Stolarzewicz
,
E.
Bialecka-Florjanczyk
,
E.
Majewska
,
J.
Krzyczkowska
,
Chem and Biochem.Q.
25
,
135
144
(
2011
).
29.
K. I.
Draget
,
G.
Skja
, and
O.
Smidsrød
,
Int. J. of Biological and macromol.
21
,
47
55
(
1997
).
30.
P. J.
Verbelen
,
D. P.
De Schutter
,
F.
Delvaux
,
K. J.
Verstrepen
,
F. R.
Delvaux
,
Biotechnol. Lett.
28
,
1515
25
(
2006
).
31.
M.
Wang
,
J.
Zhao
,
Z.
Yang
,
Z.
Du
, and
Z.
Yang
,
Bioelectrochemistry
71
,
107
12
(
2007
).
32.
S.
Babanova
,
Y.
Hubenova
, and
M.
Mitov
,
J. Biosci. Bioeng.
112
,
379
87
(
2011
).
33.
U.
Schröder
,
Phys. Chem. Chem. Phys.
9
,
2619
29
(
2007
).
34.
O.
Schaetzle
,
F.
Barrière
, and
K.
Baronian
,
Energy Environ. Sci.
1
,
607
620
(
2008
).
35.
S.
You
,
Q.
Zhao
,
J.
Zhang
,
J.
Jiang
, and
S.
Zhao
,
J. Power Sources
162
,
1409
1415
(
2006
).
36.
X.
Kong
,
Y.
Sun
,
Z.
Yuan
,
D.
Li
,
L.
Li
, and
Y.
Li
,
Int. J. Hydrogen Energy
35
,
7224
7227
(
2010
).
37.
E. S.
Heidrich
,
T. P.
Curtis
, and
J.
Dolfing
,
Environ. Sci. Technol.
45
,
827
32
(
2011
).
38.
Y.
Kim
and
B. E.
Logan
,
Desalination
308
,
122
130
(
2013
).
39.
Y.
Kim
and
B. E.
Logan
,
Environ. Sci. Technol.
45
,
5840
5845
(
2011
).
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