55
A ;
Adeli, M., Yamini, Y., & Faraji, M. (2017). Removal of copper, nickel and zinc by sodium
dodecyl sulphate coated magnetite nanoparticles from water and wastewater samples. Arabian
Journal of Chemistry, 10, 514-521.
Agnihotri, A., & Seth, C. S. (2019). Transgenic Brassicaceae: A promising approach for
phytoremediation of heavy metals. In Transgenic Plant Technology for Remediation of Toxic
Metals and Metalloids. Academic Press, 239-255.
Akar, S. T., Özcan, A., & Kaynak, Z. (2009). Biosorption of a reactive textile dye from aqueous
solutions utilizing an agro-waste. Desalination, 249(2), 757-761.
Albadarin, A. B., Mangwandi, C., Ala’a, H., Walker, G. M., Allen, S. J., & Ahmad, M. N.
(2012). Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite
adsorbent. Chemical Engineering Journal, 179, 193-202.
Ali, H., Khan, E., & Sajad, M. A. (2013). Phytoremediation of heavy metals concepts and
applications. Chemosphere, 91(7), 869-881.
Alloway, B. J. (Ed.). (2012). Heavy metals in soils: trace metals and metalloids in soils and their
bioavailability (22), 125–146.
Andersen, R. A. (2004). Biology and systematics of heterokont and haptophyte algae. American
Journal of Botany, 91(10), 1508-1522.
Anderson, R. A. (1981). Nutritional role of chromium. Science of the Total Environment, 17(1),
13-29.
Anirudhan, T. S., & Radhakrishnan, P. G. (2008). Thermodynamics and kinetics of adsorption
of Cu (II) from aqueous solutions onto a new cation exchanger derived from tamarind fruit shell.
The Journal of Chemical Thermodynamics, 40(4), 702-709.
Aragay, G., & Merkoçi, A. (2012). Nanomaterials application in electrochemical detection of
heavy metals. Electrochimica Acta, 84, 49-61.
Athar, M., & Vohora, S. B. (1995). Heavy metals and environment. New Age International, 736750.
B ;
Bacon, F. E. (1964). Chromium and Chromium Alloys. Kirk-Othmer Encyclopedia of Chemical
Technology, (5), 451.
Baghour, M., Moreno, D. A., Villora, G., Hernandez, J., Castilla, N., & Romero, L. (2002).
The influence of the root zone temperatures on the phytoextraction of boron and aluminium with
A ;
Adeli, M., Yamini, Y., & Faraji, M. (2017). Removal of copper, nickel and zinc by sodium
dodecyl sulphate coated magnetite nanoparticles from water and wastewater samples. Arabian
Journal of Chemistry, 10, 514-521.
Agnihotri, A., & Seth, C. S. (2019). Transgenic Brassicaceae: A promising approach for
phytoremediation of heavy metals. In Transgenic Plant Technology for Remediation of Toxic
Metals and Metalloids. Academic Press, 239-255.
Akar, S. T., Özcan, A., & Kaynak, Z. (2009). Biosorption of a reactive textile dye from aqueous
solutions utilizing an agro-waste. Desalination, 249(2), 757-761.
Albadarin, A. B., Mangwandi, C., Ala’a, H., Walker, G. M., Allen, S. J., & Ahmad, M. N.
(2012). Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite
adsorbent. Chemical Engineering Journal, 179, 193-202.
Ali, H., Khan, E., & Sajad, M. A. (2013). Phytoremediation of heavy metals concepts and
applications. Chemosphere, 91(7), 869-881.
Alloway, B. J. (Ed.). (2012). Heavy metals in soils: trace metals and metalloids in soils and their
bioavailability (22), 125–146.
Andersen, R. A. (2004). Biology and systematics of heterokont and haptophyte algae. American
Journal of Botany, 91(10), 1508-1522.
Anderson, R. A. (1981). Nutritional role of chromium. Science of the Total Environment, 17(1),
13-29.
Anirudhan, T. S., & Radhakrishnan, P. G. (2008). Thermodynamics and kinetics of adsorption
of Cu (II) from aqueous solutions onto a new cation exchanger derived from tamarind fruit shell.
The Journal of Chemical Thermodynamics, 40(4), 702-709.
Aragay, G., & Merkoçi, A. (2012). Nanomaterials application in electrochemical detection of
heavy metals. Electrochimica Acta, 84, 49-61.
Athar, M., & Vohora, S. B. (1995). Heavy metals and environment. New Age International, 736750.
B ;
Bacon, F. E. (1964). Chromium and Chromium Alloys. Kirk-Othmer Encyclopedia of Chemical
Technology, (5), 451.
Baghour, M., Moreno, D. A., Villora, G., Hernandez, J., Castilla, N., & Romero, L. (2002).
The influence of the root zone temperatures on the phytoextraction of boron and aluminium with
