66
V. Anitha et al.
Malkoc E, Nuhoglu Y (2005) Investigations of Nickel(II) removal from aqueous solutions using
tea factory waste. J Haz Mat 127:120–128
Murugesan S, Rajiv S, Thanapalan M (2009) Optimization of process variables for a biosorption
of nickel (II) using response surface method. Korean J Chem Eng 26(2):364–370
Nuhgolu Y, Malkoc E (2009) Thermodynamic and kinetic studies for environmentally friendly
Ni(II) biosorption using pomace of olive oil factory. Bioresour Technol 100:2375–2380
Parmer M, Thakur LS (2013) Heavy Metal Cu, Ni and Zn: toxicity, health hazard and their removal
techniques by low cost adsorbents: a short overview. Int J Plant Anim Environ Sci 3:143–157
Shakirullah M, Ahmad I, Shah S (2006) Sorption studies of nickel ions onto sawdust of Dalbergia
sissoo. J Chin Chem Soc 53(5):1045–1052
Shrestha RM, Varga M, Varga I, Yadav AP, Pokharel BP, Pradhananga RR (2014) Removal of Ni(II)
from aqueous solutions by adsorption onto activated carbon prepared from Lapsi (Choerospondias
axillaris) seed stone. J Inst Eng 9(1):166–174
Thamilarasu P, Sivakumar P, Karunakaran K (2011) Removal of Ni(II) from aqueous solutions
by adsorption onto Cajanus cajan L Milsp seed shell activated carbon. Indian J Chem Technol
18:414–420
Vijayaragavan K, Lee WM, Yun YS (2008) Evaluvation of fermentation waste (Corneybacterium
glutamicum) as a biosorbent for treatment of Ni bearing solutions. Biochem Eng J 41:228–233
Yu Z, Zhou Q (2009) Growth responses and cadmium accumulation of Mirabilis jalapa under
interaction between cadmium and phosphorus. J Haz Mat 167(1–3):38–43
V. Anitha et al.
Malkoc E, Nuhoglu Y (2005) Investigations of Nickel(II) removal from aqueous solutions using
tea factory waste. J Haz Mat 127:120–128
Murugesan S, Rajiv S, Thanapalan M (2009) Optimization of process variables for a biosorption
of nickel (II) using response surface method. Korean J Chem Eng 26(2):364–370
Nuhgolu Y, Malkoc E (2009) Thermodynamic and kinetic studies for environmentally friendly
Ni(II) biosorption using pomace of olive oil factory. Bioresour Technol 100:2375–2380
Parmer M, Thakur LS (2013) Heavy Metal Cu, Ni and Zn: toxicity, health hazard and their removal
techniques by low cost adsorbents: a short overview. Int J Plant Anim Environ Sci 3:143–157
Shakirullah M, Ahmad I, Shah S (2006) Sorption studies of nickel ions onto sawdust of Dalbergia
sissoo. J Chin Chem Soc 53(5):1045–1052
Shrestha RM, Varga M, Varga I, Yadav AP, Pokharel BP, Pradhananga RR (2014) Removal of Ni(II)
from aqueous solutions by adsorption onto activated carbon prepared from Lapsi (Choerospondias
axillaris) seed stone. J Inst Eng 9(1):166–174
Thamilarasu P, Sivakumar P, Karunakaran K (2011) Removal of Ni(II) from aqueous solutions
by adsorption onto Cajanus cajan L Milsp seed shell activated carbon. Indian J Chem Technol
18:414–420
Vijayaragavan K, Lee WM, Yun YS (2008) Evaluvation of fermentation waste (Corneybacterium
glutamicum) as a biosorbent for treatment of Ni bearing solutions. Biochem Eng J 41:228–233
Yu Z, Zhou Q (2009) Growth responses and cadmium accumulation of Mirabilis jalapa under
interaction between cadmium and phosphorus. J Haz Mat 167(1–3):38–43
