MURUTU, Cyprian; ONYANGO, Maurice S; OCHIENG, Aoyi
and
OTIENO, Fred AO. Fluoride removal performance of phosphoric acid treated lime: breakthrough analysis and point-of-use system performance. Water SA [online].
2012,
vol.38, n.2, pp. 279-286.
ISSN 1816-7950.
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BHATNAGAR A, KUMAR E and SILLANPÁÁ M (2011) Fluoride removal from water by adsorption - A review. Chem. Eng. J. 171 811-840. [ Links ] CENGELOGLU Y, KIR E and ERSOZ M (2002) Removal of fluoride from aqueous solution by using red mud. Sep. Purif. Technol. 28 81-86. [ Links ] CHATURVEDI AK, YADAVA KP, PATHAK KC and SINGH VN (1990) Defluoridation of water by adsorption on fly ash. Water Air Soil Pollut. 49 51-60. [ Links ] FAN X, PARKER DJ and SMITH MD (2003) Adsorption kinetics of fluoride on low cost materials. Water Res. 37 4929-4937. [ Links ] FAWELL J, BAILEY K, CHILTON J, DAHI E, FEWTRELL L and MAGARA Y (2006) Fluoride in Drinking-Water. IWA Publishing, London. [ Links ] GOEL J, KADIRVELU K, RAJAGOPAL C and GARG VK (2005) Removal of lead(II) by adsorption using treated granular activated carbon: Batch and column studies. J. Hazardous Mater. 125 211-220. [ Links ] GONG W, QU J, LIU R and LAN H (2012) Effect of aluminum fluoride complexation on fluoride removal by coagulation. Colloid Surface A 395 88-93. [ Links ] GUPTA SK (1997) A Process for defluoridation of water by a filter bed using indigenous material. Indian J. Environ. Sci. 1 (2) 149-156. [ Links ] HUO Y, DING W, HUANG X, XU J and ZHAO M (2011) Fluoride removal by lanthanum alginate bead: Adsorbent characterization and adsorption mechanism Chin. J. Chem. Eng. 19 (3) 365-370. [ Links ] HUTCHINS RA (1973) New method simplified design of activated carbon system. Chem. Eng. 80 133-138. [ Links ] ISLAM M and PATEL RK (2007) Evaluation of removal efficiency of fluoride from aqueous solution using quick lime. J. Hazardous Mater. 143 303-310. [ Links ] KETTUNEN R and KESKITALO P (2000) Combination of membrane technology and limestone filtration to control drinking water quality. Desalination 131 271-283. [ Links ] LAI YD and LIU JC (1996) Fluoride removal from water with spent catalyst. Sep. Sci. Technol. 31 2791-2803. [ Links ] LI YH, WANG SG, ZHANG XF, WEI JQ, XU CL, LUAN ZK and WU DH (2003) Adsorption of fluoride from water by aligned carbon nanotubes. Mater. Res. 38 469-476. [ Links ] LI YH, WANG S, ZHANG X, WEI J, XU C, LUAN Z, WU D and WEI B (2003) Removal of fluoride from water by carbon nanotube supported alumina. Environ. Technol. 24 391-398. [ Links ] LUTHER SM, POULSEN L, DUDAS MJ and RUTHERFORD PM (1996) Fluoride sorption and mineral stability in an Alberta soil interacting with phosphogypsum leachate. Can. J. Soil Sci. 76 83-91. [ Links ] MEENAKSHI RC, GARG VK, KAVITA, RENUKA and MALIK A (2004) Groundwater quality in some villages of Haryana, India: focus on fluoride and fluorosis. J. Hazardous Mater. 106 85-97. [ Links ] MEENAKSHI RC and MAHESHWARI (2006) Fluoride in drinking water and its removal. J. Hazardous Mater. 137 456-463. [ Links ] MISRA AK and MISHRA A (2007) Study of quaternary aquifers in Ganga Plain, India: Focus on groundwater salinity, fluoride and fluorosis. J. Hazardous Mater. 144 438-448. [ Links ] MJENGERA H and MKONGO G (2002) Appropriate defluoridation technology for use in fluorotic areas in Tanzania. 3rd Water-Net Symposium Water Demand Management for Sustainable Development, 30-31 October 2002, Dar es Salaam. [ Links ] MOHAPATRA M, ANAND S, MISHRA BK, GILES DE and SINGH P (2009) Review of fluoride removal from drinking water. J. Environ. Manage. 91 67-77. [ Links ] NDIAYE PI, MOULIN P, DOMINGUEZ L, MILLET JC and CHAR-BIT F (2005) Removal of fluoride from electronic industrial effluent by RO membrane separation. Desalination 173 25-32. [ Links ] ONYANGO MS, KOJIMA Y, KUMAR A, MITSUHIRO K and MATSUDA H (2006) Uptake of fluoride by Al3+-pretreated low-silica synthetic zeolites: Adsorption equilibria and rate studies. Separ. Sci. Technol. 41 683. [ Links ] ONYANGO MS, LESWIFI TY, OCHIENG A, KUCHAR D, OTIENO FO and MATSUDA H (2009) Breakthrough analysis for water defluoridation using surface-tailored zeolite in a fixed bed column. Ind. Eng. Chem. Res. 48 931-937 [ Links ] PIEKOS R and PASLAWASKA S (1999) Fluoride uptake characteristic of fly ash. Fluoride 32 14-19. [ Links ] PINON-MIRAMONTES M, BAUTISTA-MARGULIS RG and PEREZ-HERNADEZ A (2003) Removal of arsenic and fluoride from drinking water with cake alum and a polymeric anionic floc- culent. Fluoride 36 122-128. [ Links ] REARDON EI and WANG YX (2000) A limestone reactor for fluoride removal from wastewater. Environ. Sci. Technol. 34 3247-3253. [ Links ] REGULATIONS ON FLUORIDATING WATER SUPPLIES (2000) South Africa Government Gazette Notice 21533. Government Printers, Pretoria. [ Links ] SIMATE GS, IYUKE SE, NDLOVU S, HEYDENRYCH M and WALUBITA LF (2012) Human health effects of residual carbon nanotubes and traditional water treatment chemicals in drinking water. Environ. Int. 39 38-49. [ Links ] SOBSEY MD (2002) Managing Water in the Home: Accelerated Health Gains from Improved Water Supply. World Health Organization, Geneva. [ Links ] TALEB R, BENGHALEM A and GHAFFOUR N (2010) Removal of excess flGHAFFO ions from Saharan brackish water by adsorption on natural materials. Desalination 250 408-413. [ Links ] TURNER BD, BINNING P and STIPP SLS (2005) Fluoride removal by calcite: evidence for fluorite precipitation and surface adsorption. Environ. Sci. Technol. 39 9561-9568. [ Links ] WHO (WORLD HEALTH ORGANIZATION) (2006) Guidelines for Drinking-Water Quality: Incorporating First Addendum to Third Edition. World Health Organization, Geneva. 375 pp. [ Links ] XU X, LI Q, HAO C, PANG J, SUN L, HAO A and ZHAI J (2011) Adsorption of flZHAI J from aqueous solution on magnesia-loaded fly ash cenospheres. Desalination 272 233-239. [ Links ] YADAV AK, KAUSHIK CP, HARITASH AK, KANSAL A and RANI N (2006) Defluoridation of groundwater using brick powder as an adsorbent. J. Hazardous Mater. 128 289-293. [ Links ] ZEVENBERGEN C, VAN REEUWIJK LP, FRAPPORTI G, LOUWS RJ and SCHUILING RD (1996) A simple method for defluorida-tion of drinking water at village level by adsorption on Ando soils in Kenya. Sci. Total Environ. 188 225-232. [ Links ] |