References
- E.K. Deenick, D.T. Avery, A. Chan, L.J. Berglund, M.L. Ives,
L. Moens, J.L. Stoddard, J. Bustamante, S. Boissondupuis, M.
Tsumura, Naive and memory human B cells have distinct
requirements for STAT3 activation to differentiate into antibodysecreting
plasma cells., J. Exp. Med., 210 (2013) 2739–2753.
- B.D. Gbj, G. Hoedemakers, D. Thoenes, Coagulation in
Turbulent Flow: part I, Chem. Eng. Res. Des., 67 (1989) 10–12.
- B. Guo, D.F. Fletcher, T.A.G. Langrish, Simulation of the
agglomeration in a spray using Lagrangian particle tracking,
Appl. Math. Model., 28 (2004) 273–290.
- J.E. Gregor, C.J. Nokes, E. Fenton, Optimising natural organic
matter removal from low turbidity waters by controlled pH
adjustment of aluminium coagulation, Water Res., 31 (1997)
2949–2958.
- M. Yan, D. Wang, J. Ni, J. Qu, W. Ni, J.V. Leeuwen, Natural
organic matter (NOM) removal in a typical North-China water
plant by enhanced coagulation: targets and techniques, Separ.
Purif. Technol., 68 (2009) 320–327.
- W. Lee, P. Westerhoff, Dissolved organic nitrogen removal
during water treatment by aluminum sulfate and cationic
polymer coagulation, Water Res., 40 (2006) 3767–3774.
- A. Matilainen, M. Vepsäläinen, M. Sillanpää, Natural organic
matter removal by coagulation during drinking water
treatment: a review, Adv. Colloid Interfac., 159 (2010) 189–197.
- F. W. Pontius, Chitosan as a drinking water treatment coagulant,
Amer. J. Civil Eng., 4 (2016) 205–215.
- A. Mojiri, L. Ziyang, R.M. Tajuddin, H. Farraji, N. Alifar,
Co-treatment of landfill leachate and municipal wastewater
using the ZELIAC/zeolite constructed wetland system., J.
Environ. Manage., 166 (2016) 124–130.
- M. Sillanpää, M.C. Ncibi, A. Matilainen, M. Vepsäläinen,
Removal of natural organic matter in drinking water treatment
by coagulation: a comprehensive review, Chemosphere, 190
(2018) 54–71.
- G. Pan, M. Zhang, H. Chen, H. Zou, H. Yan, Removal of
cyanobacterial blooms in Taihu Lake using local soils. I.
Equilibrium and kinetic screening on the flocculation of
Microcystis aeruginosa using commercially available clays and
minerals, Environ. Pollut., 141 (2006) 195–200.
- S. Kang, C. Liao, M. Chen, Pre-oxidation and coagulation of
textile wastewater by the Fenton process, Chemosphere, 46
(2002) 923–928.
- N. Mohan, N. Balasubramanian, C. Basha, Electrochemical
oxidation of textile wastewater and its reuse, J. Hazard. Mater.,
147 (2007) 644–651.
- K.Y. Wang, T.S. Chung, Fabrication of polybenzimidazole (PBI)
nanofiltration hollow fiber membranes for removal of chromate,
J. Membr. Sci., 281 (2006) 307–315.
- N.P. Gamage, S. Chellam, Aluminum electrocoagulation
pretreatment reduces fouling during surface water
microfiltration, J. Membr. Sci., 379 (2011) 97–105.
- C.Y. Teh, T.Y. Wu, The potential use of natural coagulants and
flocculants in the treatment of urban waters, Chem. Eng. Trans.,
39 (2014) 1603–1608.
- A. Nowacka, Comparison of effectiveness of coagulation with
aluminum sulfate and pre-hydrolyzed aluminum coagulants,
Desal. Wat Treat., 52 (2014) 3843–3851.
- G. Muthuraman, S. Sasikala, Removal of turbidity from
drinking water using natural coagulants, J. Ind. Eng. Chem., 20
(2014) 1727–1731.
- B.C. Hitzfeld, S.J. Höger, D.R. Dietrich, Cyanobacterial toxins:
removal during drinking water treatment, and human risk
assessment., Environ. Health Persp., 108 (2000) 113–122.
- W. Chiu, Y. Ho, Bibliometric analysis of tsunami research,
Scientometrics, 73 (2007) 3–17.
- S.D. Xie, J. Zhang, Y.S. Ho, Assessment of world aerosol
research trends by bibliometric analysis, Scientometrics, 77
(2008) 113–130.
- S. Hussain, J.V. Leeuwen, C.W.K. Chow, R. Aryal, S. Beecham,
J. Duan, M. Drikas, Comparison of the coagulation performance
of tetravalent titanium and zirconium salts with alum, Chem.
Eng. J., 254 (2014) 635–646.
- S. Liu, Q. Wang, H. Ma, P. Huang, J. Li, T. Kikuchi, Effect of
micro-bubbles on coagulation flotation process of dyeing
wastewater, Sep. Purif. Technol., 71 (2010) 337–346.
- H. Fu, M. Wang, Y. Ho, Mapping of drinking water research: a
bibliometric analysis of research output during 1992–2011, Sci.
Total Environ., 443 (2013) 757–765.
- W. Huang, B. Zhang, C. Feng, M. Li, J. Zhang, Research trends
on nitrate removal: a bibliometric analysis, Desal. Wat Treat, 50
(2012) 67–77.
- J. Tan, H. Fu, Y. Ho, A bibliometric analysis of research on
proteomics in science citation index expanded, Scientometrics,
98 (2014) 1473–1490.
- H. Tanaka, Y. Ho, Global trends and performances of
desalination research, Desal. Wat Treat, 25 (2011) 1–12.
- N. Mao, M. Wang, Y. Ho, A bibliometric study of the trend in
articles related to risk assessment published in Science Citation
Index, Hum. Ecol. Risk Assess., 16 (2010) 801–824.
- A.W. Zularisam, A.F. Ismail, M.R. Salim, M. Sakinah, T.
Matsuura, Application of coagulation–ultrafiltration hybrid
process for drinking water treatment: optimization of operating
conditions using experimental design, Separ. Purif. Technol., 65
(2009) 193–210.
- A. Matilainen, P. Iivari, J. Sallanko, E. Heiska, T. Tuhkanen, The
role of ozonation and activated carbon filtration in the natural
organic matter removal from drinking water, Environ. Technol.,
27 (2006) 1171–1180.
- N.B. Hallam, J.R. West, C.F. Forster, J. Simms, The potential for
biofilm growth in water distribution systems., Water Res., 35
(2001) 4063–4071.
- B. Matsebula, Evaluation of water treatment processes in
the removal of natural organic matter from water and its
disinfection by-products using cyclodextrin polyurethanes,
University of Johannesburg, 2009.
- M. Hashino, K. Hirami, T. Katagiri, N. Kubota, Y. Ohmukai,
T. Ishigami, T. Maruyama, H. Matsuyama, Effects of three
natural organic matter types on cellulose acetate butyrate
microfiltration membrane fouling, J. Membr. Sci., 379 (2011)
233–238.
- L. Shan, H. Fan, H. Guo, S. Ji, G. Zhang, Natural organic matter
fouling behaviors on superwetting nanofiltration membranes,
Water Res., 93 (2016) 121–132.
- J. Wang, Y. Chen, Y. Wang, S. Yuan, H. Yu, Optimization of
the coagulation-flocculation process for pulp mill wastewater
treatment using a combination of uniform design and response
surface methodology, Water Res., 45 (2011) 5633–5640.
- B. Dong, Y. Chen, N. Gao, J. Fan, Effect of coagulation
pretreatment on the fouling of ultrafiltration membrane, J.
Environ. Sci.-China, 19 (2007) 278–283.
- R. Ordóñez, D. Hermosilla, I.S. Pío, Á. Blanco, Evaluation of
MF and UF as pretreatments prior to RO applied to reclaim
municipal wastewater for freshwater substitution in a paper
mill: a practical experience, Chem. Eng. J., 166 (2011) 88–98.
- J. Huang, L. Liu, G. Zeng, X. Li, L. Peng, F. Li, Y. Jiang, Y. Zhao,
X. Huang, Influence of feed concentration and transmembrane
pressure on membrane fouling and effect of hydraulic flushing
on the performance of ultrafiltration, Desalination, 335 (2014)
1–8.
- N. Daneshvar, A. Oladegaragoze, N. Djafarzadeh,
Decolorization of basic dye solutions by electrocoagulation: an
investigation of the effect of operational parameters., J. Hazard.
Mater., 129 (2006) 116–122.
- B. Piela, P.K. Wrona, Oxidation of Nitrites on Solid Electrodes,
J. Electrochem. Soc., 149 (2002) E55-E63.
- A. Aryal, A. Sathasivan, S. Vigneswaran, Synergistic effect
of biological activated carbon and enhanced coagulation in
secondary wastewater effluent treatment., Water Sci. Technol.,
65 (2012) 332–339.
- Z. Zhang, C. Wu, Y. Wu, C. Hu, Comparison of coagulation
performance and floc properties of a novel zirconium-glycine
complex coagulant with traditional coagulants, Environ. Sci.
Pollut. R., 21 (2014) 6632–6639.
- H. Rong, B. Gao, J. Li, B. Zhang, S. Sun, Y. Wang, Q. Yue,
Q. Li, Floc characterization and membrane fouling of
polyferric–polymer dual/composite coagulants in coagulation/ultrafiltration hybrid process, J. Colloid Interf. Sci., 412 (2013)
39–45.
- N. Shirasaki, T. Matsushita, Y. Matsui, A. Oshiba, T.
Marubayashi, S. Sato, Improved virus removal by high-basicity
polyaluminum coagulants compared to commercially available
aluminum-based coagulants, Water Res., 48 (2014) 375–386.
- L. Szpyrkowicz, Hydrodynamic effects on the performance
of electro-coagulation/electro-flotation for the removal of
dyes from textile wastewater, Ind. Eng. Chem. Res., 44 (2005)
7844–7853.
- Z.P. Wang, Z. Zhang, Y.J. Lin, N.S. Deng, T. Tao, K. Zhuo,
Landfill leachate treatment by a coagulation-photooxidation
process, J. Hazard. Mater., 95 (2002) 153–159.
- X.F. Lou, J. Nair, The impact of landfilling and composting on
greenhouse gas emissions - A review, Bioresource Technol., 100
(2009) 3792–3798.
- M. Palmiotto, E. Fattore, V. Paiano, G. Celeste, A. Colombo,
E. Davoli, Influence of a municipal solid waste landfill in the
surrounding environment: toxicological risk and odor nuisance
effects, Environ. Int., 68 (2014) 16–24.
- V. Tsarpali, M. Kamilari, S. Dailianis, Seasonal alterations of
landfill leachate composition and toxic potency in semi-arid
regions, J. Hazard. Mater., 233–234 (2012) 163–171.
- S.K. Marttinen, R.H. Kettunen, K.M. Sormunen, R.M. Soimasuo,
J.A. Rintala, Screening of physical-chemical methods for
removal of organic material, nitrogen and toxicity from low
strength landfill leachates, Chemosphere, 46 (2002) 851–858.
- R. Gandhimathi, N.J. Durai, P.V. Nidheesh, S.T. Ramesh, S.
Kanmani, Use of combined coagulation-adsorption process as
pretreatment of landfill leachate, Iranian J Environ Health Sci
Eng, 10 (2013) 24.
- A.A. Tatsi, A.I. Zouboulis, K.A. Matis, P. Samaras, Coagulation–
flocculation pretreatment of sanitary landfill leachates,
Chemosphere, 53 (2003) 737–744.
- T. Poznyak, G.L. Bautista, I. Chaírez, R.I. Córdova, L.E. Ríos,
Decomposition of toxic pollutants in landfill leachate by ozone
after coagulation treatment, J. Hazard. Mater., 152 (2008)
1108–1114.
- Y. Wu, S. Zhou, X. Ye, D. Chen, K. Zheng, F. Qin, Transformation
of pollutants in landfill leachate treated by a combined sequence
batch reactor, coagulation, Fenton oxidation and biological
aerated filter technology, Process Saf. Environ., 89 (2011)
112–120.
- J. Guo, A.A. Abbas, Y. Chen, Z. Liu, F. Fang, P. Chen, Treatment
of landfill leachate using a combined stripping, Fenton, SBR,
and coagulation process, J. Hazard. Mater., 178 (2010) 699–705.
- Y. Wu, S. Zhou, F. Qin, H. Peng, Y. Lai, Y. Lin, Removal of
humic substances from landfill leachate by Fenton oxidation
and coagulation, Process Saf. Environ., 88 (2010) 276–284.
- X. Wang, S. Chen, X. Gu, K. Wang, Pilot study on the advanced
treatment of landfill leachate using a combined coagulation,
fenton oxidation and biological aerated filter process, Waste
Manage., 29 (2009) 1354–1358.