Tecnología y Ciencias del Agua - page 71

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Tecnología y Ciencias del Agua
, vol. VIII, núm. 2, marzo-abril de 2017, pp. 61-70
Chen
et al.
,
Reactivation of hypersaline aerobic granular sludge after low temperature storage
ISSN 2007-2422
Chen, Y., Yang, B. L., & Yu, G. (2013). Granulation process
and mechanism of hypersaline aerobic granular sludge.
China Water & Wastewater
,
29
(23), 8-13.
De Kreuk, M. K., Pronk, M., & Van Loosdrecht, M. C. M.
(2005). Formation of aerobic granules and conversion
processes in an aerobic granular sludge reactor at
moderate and low temperatures.
Water Res
., 39, 4476-
4484.
Gao, D. W., Yuan, X. J., & Liang, H. (2012). Reactivation
performance of aerobic granules under different storage
strategies.
Water Res
., 46, 3315-3322.
Gaval, G., & Pernell, J. J. (2003). Impact of the repetition
of oxygen deficiencies on the filamentous bacteria
proliferation in activated sludge.
Water Res
., 37, 1991-2000.
Kishida, N., Kim, J., Tsuneda, S., & Sudo, R. (2006).
Anaerobic/oxic/anoxic granular sludge process as an
effective nutrient removal process utilizing denitrifying
polyphosphate-accumulating organisms.
Water Res
.,
40
(12), 2303-2310.
Lee, D. J., Chen, Y. Y., Show, K. Y., Whiteley, C. G., & Tay,
J. H. (2010). Advances in aerobic granule formation and
granule stability in the course of storage and reactor
operation.
Biotech
.
Adv
., 28, 919-934.
Liu, Q. S., Tay, J. H., & Liu, Y. (2003). Substrate
concentration-independent aerobic granulation in
sequential aerobic sludge blanket reactor.
Environ
.
Technol
., 24, 1235-1242.
Liu, Y. Q., Liu, Y., & Tay, J. H. (2004). The effects of
extracellular polymeric substances on the formation and
stability of biogranules.
Appl
.
Microbiol
.
Biotechnol
., 65,
143-148.
Liu, Y., & Tay, J. H. (2004). State of the art of biogranulation
technology for wastewater treatment.
Biotechnol
.
Adv
.,
22
(7), 533-563.
Liu, Y., & Liu, Q. S. (2006). Causes and control of filamentous
growth in aerobic granular sludge sequencing batch
reactors.
Biotech
.
Adv
., 24, 115-127.
Liu, H. B., Yang, C. Z., Pu, W. H., Liu, Y. S., & Lan, D. (2009).
Effect of ammonia concentration on the characteristic
of aerobic granular sludge.
Environmental Science
,
30
(7),
2030-2034.
Lv, Y., Wan, C. L., Liu, X., Zhang, Y., Lee, D. J., & Tay, J.
H. (2013). Freezing of aerobic granules for storage and
subsequent recovery.
J
.
Taiwan Inst
.
Chem
.
E
.,
44
(5), 770-
773.
Morales, N., Figueroa, M., Mosquera-Corral, A., Campos, J.
L., & Méndez, R. (2012). Aerobic granular-type biomass
development in a continuous stirred tank reactor.
Sep
.
Purif
.
Technol
.,
89
(3), 199-205.
Moussavi, G., Barikbin, B., & Mahmoudi, M. (2010). The
removal of high concentrations of phenol from saline
wastewater using aerobic granular SBR.
Chem
.
Eng
.
J
.,
158
(3), 498-504.
Rosman, N. H., Anuar, A. N., Chelliapan, S., Md Din, M.
F., & Ujang, Z. (2014). Characteristics and performance
of aerobic granular sludge treating rubber wastewater
at different hydraulic retention time.
Bioresource Technol
.,
161, 155-161.
Taheria, E., Khiadani, M. H., Amina, M. M., Nikaeen,
M., & Hassanzadeh, A. (2012). Treatment of saline
wastewater by a sequencing batch reactor with
emphasis on aerobic granule formation.
Bioresource
Technol
., 111, 21-26.
Tay, J. H., Liu, Q. S., & Liu, Y. (2001). The effects of shear force
on the formation, structure and metabolism of aerobic
granules.
Appl
.
Microbiol
.
Biot
.,
57
(1-2), 27-33.
Wang, Y. D., Li, Z. H., &Wang, X. C. (2008). Growth model of
aerobic granule under different salinities.
Environmental
Science
,
29
(10), 2804-2808.
Wang, J. L., Zhang, Z. J., & Wu, W. W. (2009). Research
advances in aerobic granular sludge.
Acta Scientiae
Circumstantiae
,
29
(3), 449-473.
Zhang, D. H., Yue, Q. Y., Wang, S. G., Jiang, D., Sun, F. Y., &
Li, J. Y. (2006). Characterization of aerobic granular sludge
in sequencing batch reactor.
China Water & Wastewater
,
22
(1), 80-83.
Zhao, Y. G., Huang, J., Zhao, H., &Yang, H. (2013). Microbial
community and N removal of aerobic granular sludge at
high COD and N loading rates.
Bioresour
.
Technol
., 143,
439-446.
Author´s institutional address
Yao Chen
Chongqing Jiaotong University
Key Laboratory of Hydraulic & Waterway Engineering of
the Ministry of Education
School of River and Ocean Engineering
Chongqing 400074, PR C
hina
Cooperative Research Centres (CRC) for Water Sensitive
Cities
Melbourne VIC 3800, A
ustralia
Monash University
Moansh Sustainability Institute
Department of Civil Engineering
Melbourne VIC 3800, A
ustralia
cycquc8163.com
Jia-Yue Zhu
Zhi-Min Zhang
Chongqing Jiaotong University
School of River and Ocean Engineering
Chongqing 700074, PR C
hina
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