86
A. Geethakarthi
74. McKay G (1984) Mass transfer processes during the adsorption of solutes in aqueous solutions
in batch and fixed bed absorbers. Chem Eng Res Des 62:235–246
75. McKay G, Ho YS (1999) The sorption of lead (II) on peat. Water Res 33:578–584
76. McKay G (1998) Application of surface diffusion model to the adsorption of dyes on bagasse
pith. Adsorption 4:361–372
77. McMullan G, Meehan C, Conneely A, Kirby N, Robinson T, Nigam P, Banat IM, Marchant R,
Smyth WF (2001) Microbial decolourisation and degradation of textiles dyes. Appl Microbial
Biotechnol 56:81–87
78. Mittal A, Krishnan L, Gupta VK (2005) Removal and recovery of malachite green from
wastewater using and agricultural waste material, de-oiled soya. Sep Sci Technol 43:125–133
79. Mittal A, Kurup (Krishnan) L, Gupta VK (2005) Use of waste materials-bottom ash and deoiled soya, as potential adsorbents for the removal of Amaranth from aqueous solutions. J
Hazard Mater B 117:171–178
80. Mohan D, Singh KP, Singh G, Kumar K (2002) Removal of dyes from wastewater using fly
ash, a low-cost adsorbent. Ind Eng Chem Res 41:3688–3695
81. Molina-Sabio M, Rodriguez-Reinoso F, Caturla F, Selles MJ (1995) Porosity in granular
carbons activated with phosphoric acid. Carbon 33:1105–1113
82. Moreno-Castilla C, Carrasco-Marin F, Lopez-Ramon MV, Alvarez-Merino MA (2001) Chemical and physical activation of olive-mill waste water to produce activated carbons. Carbon
39:1415–1420
83. Motz H, Geiseler J (2001) Products of steel slag an opportunity to save natural resource. Waste
Manage 21:285–293
84. Murillo R, Navarro MV, Lopez JM, Garcia T, Callen MS, Aylon E, Mastral AM (2004)
Activation of pyrolytic tire char with CO 2 : Kinetic study. J Anal Appl Pyrolysis 71:945–957
85. Mykola S, Bandosz TJ (2007) Sewage sludge as a single precursor for development of
composite adsorbents/catalysts. Chem Eng J 128:59–67
86. Namasivayam C, Jeyakumar R, Yamuna RT (1994) Dye removal from wastewater by
adsorption on waste Fe(III)/Cr(III) hydroxide. Waste Manage 14:643–648
87. Namasivayam C, Sumithra S (2004) Adsorptive removal of catechol on waste Fe(III)/Cr(III)
hydroxise: equilibrium and kinetic study. Ind Eng Chem Res 43:7581–7587
88. Netpradit S, Thiravetyan P, Towprayoon S (2003) Application of waste metal hydroxide sludge
for adsorption of azo reactive dyes. Water Res 37:763–772
89. Netpradit S, Thiravetyan P, Towprayoon S (2004) Adsorption of three azo reactive dyes by
metal hydroxide sludge: effect of temperature, pH and electrolytes. J Colloid Interface Sci
270:255–261
90. Olgun A, Atar N (2009) Equilibrium and kinetic adsorption study of Basic Yellow 28 and
Basic Red 46 by a boron industry waste. J Hazard Mater 61:148–156
91. Olivares-Marin M, Fernandez-Gonzalez C, Macias-Gracia A, Gomez-Serrano V (2006)
Preparation of activated carbons from cherry stones by activation with KOH. Appl Surf Sci
252:5980–5983
92. Orfao JJM, Silva AIM, Pereira JCV, Barata SA, Fonseca IM, Faria PCC, Pereira MFR (2006)
Adsorption of a reactive dye on chemically modified activated carbons—Influence of pH. J
Colloid Interface Sci 296:480–489
93. Otero M, Rozada F, Calvo LF, Garcıa AI, Moran A (2003) Kinetic and equilibrium modelling
of the methylene blue removal from solution by adsorbent materials produced from sewage
sludges. Biochem Eng J 15:59–68
94. Otowa T, Nojima Y, Miyazaki T (1997) Development of KOH activated high surface area
carbon and its application to drinking water purification. Carbon 35:1315–1319
95. Ozcan AS, Erdem B, Ozcan A (2004) Adsorption of acid blue 193 from aqueous solutions
onto Na-bentonite and DTMA—bentonite. J Colloid Interface Sci 280:44–54
96. Pala A, Galiatsatou P, Tokat E, Erkaya H, Israilides C, Arapoglou D (2006) The use of activated
carbon from Olive oil mill residue for the removal of colour from textile wastewater. Eur Water
13:29–34
A. Geethakarthi
74. McKay G (1984) Mass transfer processes during the adsorption of solutes in aqueous solutions
in batch and fixed bed absorbers. Chem Eng Res Des 62:235–246
75. McKay G, Ho YS (1999) The sorption of lead (II) on peat. Water Res 33:578–584
76. McKay G (1998) Application of surface diffusion model to the adsorption of dyes on bagasse
pith. Adsorption 4:361–372
77. McMullan G, Meehan C, Conneely A, Kirby N, Robinson T, Nigam P, Banat IM, Marchant R,
Smyth WF (2001) Microbial decolourisation and degradation of textiles dyes. Appl Microbial
Biotechnol 56:81–87
78. Mittal A, Krishnan L, Gupta VK (2005) Removal and recovery of malachite green from
wastewater using and agricultural waste material, de-oiled soya. Sep Sci Technol 43:125–133
79. Mittal A, Kurup (Krishnan) L, Gupta VK (2005) Use of waste materials-bottom ash and deoiled soya, as potential adsorbents for the removal of Amaranth from aqueous solutions. J
Hazard Mater B 117:171–178
80. Mohan D, Singh KP, Singh G, Kumar K (2002) Removal of dyes from wastewater using fly
ash, a low-cost adsorbent. Ind Eng Chem Res 41:3688–3695
81. Molina-Sabio M, Rodriguez-Reinoso F, Caturla F, Selles MJ (1995) Porosity in granular
carbons activated with phosphoric acid. Carbon 33:1105–1113
82. Moreno-Castilla C, Carrasco-Marin F, Lopez-Ramon MV, Alvarez-Merino MA (2001) Chemical and physical activation of olive-mill waste water to produce activated carbons. Carbon
39:1415–1420
83. Motz H, Geiseler J (2001) Products of steel slag an opportunity to save natural resource. Waste
Manage 21:285–293
84. Murillo R, Navarro MV, Lopez JM, Garcia T, Callen MS, Aylon E, Mastral AM (2004)
Activation of pyrolytic tire char with CO 2 : Kinetic study. J Anal Appl Pyrolysis 71:945–957
85. Mykola S, Bandosz TJ (2007) Sewage sludge as a single precursor for development of
composite adsorbents/catalysts. Chem Eng J 128:59–67
86. Namasivayam C, Jeyakumar R, Yamuna RT (1994) Dye removal from wastewater by
adsorption on waste Fe(III)/Cr(III) hydroxide. Waste Manage 14:643–648
87. Namasivayam C, Sumithra S (2004) Adsorptive removal of catechol on waste Fe(III)/Cr(III)
hydroxise: equilibrium and kinetic study. Ind Eng Chem Res 43:7581–7587
88. Netpradit S, Thiravetyan P, Towprayoon S (2003) Application of waste metal hydroxide sludge
for adsorption of azo reactive dyes. Water Res 37:763–772
89. Netpradit S, Thiravetyan P, Towprayoon S (2004) Adsorption of three azo reactive dyes by
metal hydroxide sludge: effect of temperature, pH and electrolytes. J Colloid Interface Sci
270:255–261
90. Olgun A, Atar N (2009) Equilibrium and kinetic adsorption study of Basic Yellow 28 and
Basic Red 46 by a boron industry waste. J Hazard Mater 61:148–156
91. Olivares-Marin M, Fernandez-Gonzalez C, Macias-Gracia A, Gomez-Serrano V (2006)
Preparation of activated carbons from cherry stones by activation with KOH. Appl Surf Sci
252:5980–5983
92. Orfao JJM, Silva AIM, Pereira JCV, Barata SA, Fonseca IM, Faria PCC, Pereira MFR (2006)
Adsorption of a reactive dye on chemically modified activated carbons—Influence of pH. J
Colloid Interface Sci 296:480–489
93. Otero M, Rozada F, Calvo LF, Garcıa AI, Moran A (2003) Kinetic and equilibrium modelling
of the methylene blue removal from solution by adsorbent materials produced from sewage
sludges. Biochem Eng J 15:59–68
94. Otowa T, Nojima Y, Miyazaki T (1997) Development of KOH activated high surface area
carbon and its application to drinking water purification. Carbon 35:1315–1319
95. Ozcan AS, Erdem B, Ozcan A (2004) Adsorption of acid blue 193 from aqueous solutions
onto Na-bentonite and DTMA—bentonite. J Colloid Interface Sci 280:44–54
96. Pala A, Galiatsatou P, Tokat E, Erkaya H, Israilides C, Arapoglou D (2006) The use of activated
carbon from Olive oil mill residue for the removal of colour from textile wastewater. Eur Water
13:29–34
