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Separations

Removal of the Neutral Dissolved Organic Matter (NDOM) from Surface Water by Coagulation/Flocculation and Nanofiltration

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Pages 2713-2726 | Received 12 Nov 2020, Accepted 31 Jan 2021, Published online: 13 Feb 2021

References

  • Adimalla, N. 2020. Spatial distribution, exposure, and potential health risk assessment from nitrate in drinking water from semi-arid region of South India. Human and Ecological Risk Assessment: An International Journal 26 (2):310–34. doi:10.1080/10807039.2018.1508329.
  • Albrektienė, R., M. Rimeika, E. Zalieckienė, V. Šaulys, and A. Zagorskis. 2012. Determination of organic matter by UV absorption in the ground water. Journal of Environmental Engineering and Landscape Management 20 (2):163–7. doi:10.3846/16486897.2012.674039.
  • Amrane, C., and K. Bouhidel. 2019. Analysis and speciation of heavy metals in the water, sediments, and drinking water plant sludge of a deep and sulfate-rich Algerian reservoir. Environmental Monitoring and Assessment 191 (2):73–85. doi:10.1007/s10661-019-7222-9.
  • Amy, G. L., B. C. Alleman, and C. B. Cluff. 1990. Removal of dissolved organic matter by nanofiltration. Journal of Environmental Engineering 116 (1):200–5. doi:10.1061/(ASCE)0733-9372(1990)116:1(200).
  • Ates, N., L. Yilmaz, M. Kitis, and U. Yetis. 2009. Removal of disinfection by-product precursors by UF and NF membranes in low-SUVA waters. Journal of Membrane Science 328 (1–2):104–12. doi:10.1016/j.memsci.2008.11.044.
  • Awad, J., J. Van Leeuwen, C. Chow, M. Drikas, R. J. Smernik, D. J. Chittleborough, and E. Bestland. 2016. Characterization of dissolved organic matter for prediction of trihalomethane formation potential in surface and sub-surface waters. Journal of Hazardous Materials 308:430–9. doi:10.1016/j.jhazmat.2016.01.030.
  • Croué, J.-P. 2004. Isolation of humic and non-humic NOM fractions: Structural characterization. Environmental Monitoring and Assessment 92 (1–3):193–207. doi:10.1023/B:EMAS.0000039369.66822.c0.
  • Croué, J. P., E. Lefebvre, B. Martin, and B. Legube. 1993. Removal of dissolved hydrophobic and hydrophilic organic substances during coagulation/flocculation of surface waters. Water Science and Technology 27 (11):143–52. doi:10.2166/wst.1993.0273.
  • Domany, Z., I. Galambos, G. Vatai, and E. Bekassy-Molnar. 2002. Humic substances removal from drinking water by membrane filtration. Desalination 145 (1–3):333–7. doi:10.1016/S0011-9164(02)00432-0.
  • Dulaquais, G., J. Breitenstein, M. Waeles, R. Marsac, and R. Riso. 2018. Measuring dissolved organic matter in estuarine and marine waters: Size-exclusion chromatography with various detection methods. Environmental Chemistry 15 (7):436–49. doi:10.1071/EN18108.
  • Fan, Z., H. Yang, S. Li, and X. Yu. 2020. Tracking and analysis of DBP precursors' properties by fluorescence spectrometry of dissolved organic matter. Chemosphere 239:124790. doi:10.1016/j.chemosphere.2019.124790.
  • Feihrmann, A., A. Baptista, J. Lazari, M. Silva, M. Vieira, and A. M. Vieira. 2017. Evaluation of coagulation/floculation process for water treatment using defatted cake from Moringa oleifera. Chemical Engineering Transactions 57:1543–8. doi:10.3303/CET1757258..
  • Fujioka, T., M. T. T. Ngo, R. Makabe, T. Ueyama, H. Takeuchi, T. T. V. Nga, X.-T. Bui, and H. Tanaka. 2021. Submerged nanofiltration without pre-treatment for direct advanced drinking water treatment. Chemosphere 265:129056. doi:10.1016/j.chemosphere.2020.129056.
  • Ghernaout, D., and N. Elboughdiri. 2020. Disinfection by-products: Presence and elimination in drinking water. Open Access Library Journal 07 (02):1–27. doi:10.4236/oalib.1106140.
  • Gleick, P. H. 1993. Water in crisis. Pacific Institute for Studies in Dev. Environment & Security. Stockholm Enviroment Institute, Oxford University Press 473: 9.
  • Gone, D. L., J.-L. Seidel, C. Batiot, K. Bamory, R. Ligban, and J. Biemi. 2009. Using fluorescence spectroscopy EEM to evaluate the efficiency of organic matter removal during coagulation-flocculation of a tropical surface water (Agbo reservoir)). Journal of Hazardous Materials 172 (2–3):693–9. doi:10.1016/j.jhazmat.2009.07.052.
  • Graf, K. C., D. A. Cornwell, and T. H. Boyer. 2014. Removal of dissolved organic carbon from surface water by anion exchange and adsorption: Bench-scale testing to simulate a two-stage countercurrent process. Separation and Purification Technology 122:523–32. doi:10.1016/j.seppur.2013.12.012.
  • Guillossou, R., J. Le Roux, R. Mailler, C. S. Pereira-Derome, G. Varrault, A. Bressy, E. Vulliet, C. Morlay, F. Nauleau, V. Rocher, et al. 2020. Influence of dissolved organic matter on the removal of 12 organic micropollutants from wastewater effluent by powdered activated carbon adsorption. Water Research 172:115487. doi:10.1016/j.watres.2020.115487.
  • Haddad, M., T. Ohkame, P. R. Bérubé, and B. Barbeau. 2018. Performance of thin-film composite hollow fiber nanofiltration for the removal of dissolved Mn, Fe and NOM from domestic groundwater supplies. Water Research 145:408–17. doi:10.1016/j.watres.2018.08.032.
  • Hincapié–Upegui, D., D. M. Pemberthy, and G. A. Peñuela. 2020. Optimisation of size-exclusion chromatography with diode array detector for aquatic organic matter profiling using design of experiments: Application to tropical reservoirs. International Journal of Environmental Analytical Chemistry :1–16. doi:10.1080/03067319.2020.1807530..
  • Huck, P., and M. Sozański. 2011. Chemical basis for water technology:429–69.
  • Humbert, H.,. H. Gallard, H. Suty, and J. P. Croue. 2005. Performance of selected anion exchange resins for the treatment of a high DOC content surface water. Water Research 39 (9):1699–708. doi:10.1016/j.watres.2005.02.008.
  • Humbert, H.,. H. Gallard, H. Suty, and J. P. Croue. 2008. Natural organic matter (NOM) and pesticides removal using a combination of ion exchange resin and powdered activated carbon (PAC). Water Research 42 (6–7):1635–43. doi:10.1016/j.watres.2007.10.012.
  • Hussain, S., J. Awad, B. Sarkar, C. W. Chow, J. Duan, and J. Van Leeuwen. 2019. Coagulation of dissolved organic matter in surface water by novel titanium (III) chloride: Mechanistic surface chemical and spectroscopic characterisation. Separation and Purification Technology 213:213–23. doi:10.1016/j.seppur.2018.12.038.
  • Jain, R. 2012. Providing safe drinking water: A challenge for humanity. Clean Technologies and Environmental Policy 14 (1):1–4. doi:10.1007/s10098-011-0446-1.
  • Jean Rodier, B. L. 2009. L' analyse de l eau. Paris: Dunod.
  • Jiang, J.-Q. 2015. The role of coagulation in water treatment. Current Opinion in Chemical Engineering 8:36–44. doi:10.1016/j.coche.2015.01.008.
  • Jiang, J., and N. Graham. 1996. Enhanced coagulation using Al/Fe (III) coagulants: Effect of coagulant chemistry on the removal of colour-causing NOM. Environmental Technology 17 (9):937–50. doi:10.1080/09593330.1996.9618422.
  • Jiang, J., J. Han, and X. Zhang. 2020. Nonhalogenated aromatic DBPs in drinking water chlorination: A gap between NOM and halogenated aromatic DBPs. Environmental Science & Technology 54 (3):1646–56. doi:10.1021/acs.est.9b06403.
  • Karaouzas, I., N. Kapetanaki, A. Mentzafou, T. D. Kanellopoulos, and N. Skoulikidis. 2021. Heavy Metal Contamination Status in Greek Surface Waters; a review with application and evaluation of pollution indices. Chemosphere 263:128192. doi:10.1016/j.chemosphere.2020.128192.
  • Karpinska, A. M., R. A. Boaventura, V. J. Vilar, A. Bilyk, and M. Molczan. 2013. Applicability of MIEX(®)DOC process for organics removal from NOM laden water . Environmental Science and Pollution Research International 20 (6):3890–9. doi:10.1007/s11356-012-1334-x.
  • Khettaf, S., K.-E. Bouhidel, N. E. H. Meguellati, N. E. H. Ghodbane, and M. Bouhelassa. 2016. Integrated ion exchange mixed bed with reverse osmosis and nanofiltration for isolation of neutral dissolved organic matter from natural waters. Water and Environment Journal 30 (3–4):261–70. doi:10.1111/wej.12187.
  • Korshin, G., C. W. K. Chow, R. Fabris, and M. Drikas. 2009. Absorbance spectroscopy-based examination of effects of coagulation on the reactivity of fractions of natural organic matter with varying apparent molecular weights. Water Research 43 (6):1541–8. doi:10.1016/j.watres.2008.12.041.
  • Lanciné, G. D., K. Bamory, L. Raymond, S. Jean-Luc, B. Christelle, and B. Jean. 2008. Coagulation-Flocculation treatment of a tropical surface water with alum for dissolved organic matter (DOM) removal: Influence of alum dose and pH adjustment. Journal of International Environmental Application & Science :57–247.
  • Leenheer, J. A., and J.-P. Croué. 2003. Peer reviewed: Characterizing aquatic dissolved organic matter. Environmental Science & Technology 37 (1):18A–26A. doi:10.1021/es032333c.
  • Lefebvre, E., and J. P. Croue. 2005. Modification de la matière organique lors des traitements conventionnels de potabilisation. Revue Des Sciences de L'eau 8 (4):463–80. doi:10.7202/705233ar.
  • Leiknes, T., H. Ødegaard, and H. Myklebust. 2004. Removal of natural organic matter (NOM) in drinking water treatment by coagulation–microfiltration using metal membranes. Journal of Membrane Science 242 (1–2):47–55. doi:10.1016/j.memsci.2004.05.010.
  • Li, H., Y. Chen, J. Zhang, and B. Dong. 2020. Pilot study on nanofiltration membrane in advanced treatment of drinking water. Water Supply 20 (6):2043–53. doi:10.2166/ws.2020.089.
  • Liu, M., Y. Ding, S. Peng, Y. Lu, Z. Dang, and Z. Shi. 2019. Molecular fractionation of dissolved organic matter on ferrihydrite: Effects of dissolved cations. Environmental Chemistry 16 (2):137–48. doi:10.1071/EN18235.
  • Liu, H., G. Wang, and C. Wang. 2020. Photocatalytic advanced oxidation processes for water treatment: Recent advances and perspective. Chemistry – An Asian Journal 15 (20):3239–53. doi:10.1002/asia.202000895.
  • Louhıchı, G., L. Bousselmı, A. Ghrabı, and I. Khounı. 2019. Process optimization via response surface methodology in the physico-chemical treatment of vegetable oil refinery wastewater. Environmental Science and Pollution Research International 26 (19):18993–9011. doi:10.1007/s11356-018-2657-z.
  • Mahvi, A. H., M. Malakootian, and M. R. Heidari. 2011. Comparison of polyaluminum silicate chloride and electrocoagulation process, in natural organic matter removal from surface water in Ghochan, Iran. Journal of Water Chemistry and Technology 33 (6):377–85. doi:10.3103/S1063455X11060051.
  • Maqbool, T., Y. Qin, Q. V. Ly, J. Zhang, C. Li, M. B. Asif, and Z. Zhang. 2020. Exploring the relative changes in dissolved organic matter for assessing the water quality of full-scale drinking water treatment plants using a fluorescence ratio approach. Water Research 183:116125. doi:10.1016/j.watres.2020.116125.
  • Maurice, P. A., M. J. Pullin, S. E. Cabaniss, Q. Zhou, K. Namjesnik-Dejanovic, and G. R. Aiken. 2002. A comparison of surface water natural organic matter in raw filtered water samples, XAD, and reverse osmosis isolates. Water Research 36 (9):2357–71. doi:10.1016/S0043-1354(01)00442-0.
  • Palansooriya, K. N., Y. Yang, Y. F. Tsang, B. Sarkar, D. Hou, X. Cao, E. Meers, J. Rinklebe, K.-H. Kim, and Y. S. Ok. 2020. Occurrence of contaminants in drinking water sources and the potential of biochar for water quality improvement: A review. Critical Reviews in Environmental Science and Technology 50 (6):549–611. doi:10.1080/10643389.2019.1629803.
  • Pernet-Coudrier, B., G. Varrault, M. Saad, J. P. Croue, M. F. Dignac, and J. M. Mouchel. 2011. Characterisation of dissolved organic matter in Parisian urban aquatic systems: Predominance of hydrophilic and proteinaceous structures. Biogeochemistry 106 (1):89–106. doi:10.1007/s10533-010-9480-z.
  • Pinotti, A., and N. Zaritzky. 2001. Effect of aluminum sulfate and cationic polyelectrolytes on the destabilization of emulsified wastes. Waste Management (New York, N.Y.) 21 (6):535–42. doi:10.1016/S0956-053X(00)00110-0.
  • Ren, D., H. Yu, J. Wu, Z. Wang, S. Zhang, X. Zhang, and X. Gong. 2020. The study on adsorption behavior of 2,4-DCP in solution by biomass carbon modified with CTAB-KOH. Water Sci Technol 82 (8):1535–46. doi:10.2166/wst.2020.418.
  • Serkiz, S. M., and E. M. Perdue. 1990. Isolation of dissolved organic matter from the Suwannee River using reverse osmosis. Water Research 24 (7):911–6. doi:10.1016/0043-1354(90)90142-S.
  • Shapiro, A. D., and E. I. Karavanova. 2014. Fractionation of dissolved organic matter on the XAD resin. Moscow University Soil Science Bulletin 69 (3):139–45. doi:10.3103/S0147687414030077.
  • Sher, F., K. Hanif, S. Z. Iqbal, and M. Imran. 2020. Implications of advanced wastewater treatment: Electrocoagulation and electroflocculation of effluent discharged from a wastewater treatment plant. Journal of Water Process Engineering 33:101101. doi:10.1016/j.jwpe.2019.101101.
  • Shuang, C., J. Wang, H. Li, A. Li, and Q. Zhou. 2015. Effect of the chemical structure of anion exchange resin on the adsorption of humic acid: Behavior and mechanism. Journal of Colloid and Interface Science 437:163–9. doi:10.1016/j.jcis.2014.09.011.
  • Song, H., O. Orr, Y. Hong, and T. Karanfil. 2009. Isolation and fractionation of natural organic matter: Evaluation of reverse osmosis performance and impact of fractionation parameters. Environmental Monitoring and Assessment 153 (1–4):307–21. doi:10.1007/s10661-008-0357-8.
  • United States Geological Survey. 2020. USGS water data for USA. Accessed January 10, 2020. https://waterdata.usgs.gov/nwis/.
  • Yin, W., X. Li, S. R. Suwarno, E. R. Cornelissen, and T. H. Chong. 2019. Fouling behavior of isolated dissolved organic fractions from seawater in reverse osmosis (RO) desalination process. Water Research 159:385–96. doi:10.1016/j.watres.2019.05.038.
  • Zhang, L., A. Li, Y. Lu, L. Yan, S. Zhong, and C. Deng. 2009. Characterization and removal of dissolved organic matter (DOM) from landfill leachate rejected by nanofiltration. Waste Management (New York, N.Y.) 29 (3):1035–40. doi:10.1016/j.wasman.2008.08.020.
  • Zhao, Z.,. W. Sun, M. B. Ray, A. K. Ray, T. Huang, and J. Chen. 2019. Optimization and modeling of coagulation-flocculation to remove algae and organic matter from surface water by response surface methodology. Frontiers of Environmental Science & Engineering 13 (5):75. doi:10.1007/s11783-019-1159-7.
  • Zhou, Y., Y. Xie, M. Wang, F. Zou, C. Zhang, Z. Guan, and M. Yan. 2020. In-situ characterization of dissolved organic matter removal by coagulation using differential UV-Visible absorbance spectroscopy. Chemosphere 242:125062. doi:10.1016/j.chemosphere.2019.125062.

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