References
- T. Oki, S. Kanae, Global hydrological cycles and world water
resources, Science, 313 (2006) 1068–1072.
- C.J. Vörösmarty, P. Green, J. Salisbury, R.B. Lammers, Global
water resources: vulnerability from climate change and
population growth, Science, 289 (2000) 284–288.
- L.F. Konikow, E. Kendy, Groundwater depletion: a global
problem, J. Hydrol., 13 (2005) 317–320.
- Intergovernmental Panel on Climate Change, Report of the
Nineteenth Session of the Intergovernmental Panel on Climate
Change (IPCC), Geneva, 17–20 April 2002, 2007.
- G. Vijayaraghavan, T. Sivakumar, A. Vimal Kumar, Application
of plant based coagulants for waste water treatment, Int. J. Adv.
Eng. Res. Stud., 1 (2011) 88–92.
- C.Y. Yin, Emerging usage of plant-based coagulants for
water and wastewater treatment, Process Biochem., 45 (2010)
1437–1444.
- C.T. Driscoll, R.D. Letterman, Factors regulating residual
aluminium concentrations in treated waters, Environmetrics, 6
(1995) 287–305.
- M.R. Gidde, A.R, Bhalerao, S.A. Yawale, Bentonite Clay
Turbidity Removal by Herbal Coagulant—A Rural Water
Treatment Technology, Paper for National Conference on
“Household Water Treatment Technology”, College of Science
and Technology, Farah, Mathura, 24–25 July, 2008.
- J.R. Pan, C. Huang, S. Chen, Y.C. Chung, Evaluation of a
modified chitosan biopolymer for coagulation of colloidal
particles, Colloids Surf., A, 147 (1999) 359–364.
- V. Saritha, N. Srinivas, N.V. Srikanth, Analysis and optimization
of coagulation and flocculation process, Appl. Water Sci., 7
(2017) 451–460.
- R. Yadav, G. Garg, A review on Indian sago starch and its
pharmaceutical applications, Int. J. Pharm. Life Sci., 2 (2013)
99–106.
- M.A.B. Hassan, T.P. Li, Z.Z. Noor, Coagulation and flocculation
treatment of wastewater in textile industry using chitosan, J.
Chem. Nat. Resour. Eng., 4 (2009) 43–53.
- I.Y. Qudsieh, N.A. Kabbashi, M.E.S. Mirghani, K.G. Fandi,
M.Z. Alam, S.A. Muyibi, M.M. Nasef, Preparation and
characterization of a new coagulant based on the sago starch
biopolymer and its application in water turbidity removal, J.
Appl. Polym. Sci., 109 (2008) 3140–3147.
- M.A. Rao, Rheology of Food Gum and Starch Dispersions,
Rheology of Fluid, Semisolid, and Solid Foods, Springer,
Boston, MA, 2014, pp. 161–229.
- Y. Takeda, C. Takeda, A. Suzuki, S. Hizukuri, Structures and
properties of sago starches with low and high viscosities on
amylography, J. Food Sci., 54 (1989) 177–182.
- R.O. Williams, III, J. Liu, Influence of processing and curing
conditions on beads coated with an aqueous dispersion of
cellulose acetate phthalate, Eur. J. Pharm. Biopharm., 49 (2000)
243–252.
- M. Nikazar, B. Safari, B. Bonakdarpour, Z. Milani, Improving
the biodegradability and mechanical strength of corn starch-LDPE blends through formulation modification, Iran. Polym. J.,
14 (2005) 1050–1057.
- R.A. Majid, H. Ismail, R.M. Taib, Effects of polyethylene-g-maleic
anhydride on properties of low density polyethylene/thermoplastic sago starch reinforced kenaf fibre composites,
Iran. Polym. J., 19 (2010) 501–510.
- B. Yaacob, M.C.I.M. Amin, K. Hashim, B.A. Bakar, Optimization
of reaction conditions for carboxymethylated sago starch, Iran.
Polym. J., 20 (2011) 195–204.
- A. Domard, M. Rinaudo, C. Terrassin, Adsorption of chitosan
and a quaternized derivative on kaolin, J. Appl. Polym. Sci., 38
(1989) 1799–1806.
- T. Takahashi, M. Imai, I. Suzuki, High-potential molecular
properties of chitosan and reaction conditions for removing
p-quinone from the aqueous phase, Biochem. Eng. J., 25 (2005)
7–13.
- J. Roussy, M.V. Vooren, B.A. Dempsey, E. Guibal, Influence of
chitosan characteristics on the coagulation and the flocculation
of bentonite suspensions, Water Res.,39 (2005) 3247–3258.
- THY, Tebbutt, Relationship between Natural Water Quality and
Health, UNESCO, Paris, 1998.
- D.K. Villa-Gomez, E.D.V. Hullebusch, R. Maestro, F. Farges,
S. Nikitenko, H. Kramer, G. Gonzalez-Gil, P.N.L. Lens,
Morphology, mineralogy, and solid–liquid phase separation
characteristics of cu and Zn precipitates produced with biogenic
sulfide, Environ. Sci. Technol., 48 (2013) 664–673.
- G. Hua, D.A. Reckhow, Characterization of disinfection
byproduct precursors based on hydrophobicity and molecular
size, Environ. Sci. Technol., 41 (2007) 3309–3315.
- P.R. Lamsal, The Influence of Natural Organic Substances on
Coagulation and Flocculation Processes, Diss. Asian Institute
of Technology, School of Environment, Resources and
Development, Bangkok, Thailand, 1997.
- D. Ghernaout, B. Ghernaout, A. Kellil, Natural organic
matter removal and enhanced coagulation as a link between
coagulation and electrocoagulation, Desal. Wat. Treat., 2 (2009)
203–222.
- M.J. Semmens, T.K. Field, Coagulation: experiences in organics
removal, J. AWWA, 72 (1980) 476–483.
- R.S. Blackburn, Natural polysaccharides and their interactions
with dye molecules: applications in effluent treatment, Environ.
Sci. Technol., 38 (2004) 4905–4909.
- E. Guibal, Interactions of metal ions with chitosan-based
sorbents: a review, Sep. Purif. Technol., 38 (2004) 43–74.
- G. Krantzberg, A. Tanik, J.S. Antunes-do-carmo, A. Indarto, A.
Ekda, Advances in Water Quality Control, Scientific Research
Publishing, Inc., USA, 2010.
- C. Volk, K. Bell, E. Ibrahim, D. Verges, G. Amy, M. LeChevallier,
Impact of enhanced and optimized coagulation on removal of
organic matter and its biodegradable fraction in drinking water,
Water Res., 34 (2000) 3247–3257.