Page 234 - Materials Chemistry, Second Edition
P. 234
Green and Eco-Friendly Materials for Removal of Phosphorus 215
Khamparia, S. and D. Jaspal. 2016a. Investigation of adsorption of Rhodamine B onto a
natural adsorbent Argemone mexicana. Journal of Environmental Management 183:
786–93.
Khamparia, S. and D. Jaspal. 2016b. Adsorptive removal of Direct Red 81 dye from aqueous
solution onto Argemone mexicana. Sustainable Environment Research 26: 117–23.
Khamparia, S. and D.K. Jaspal. 2017a. Adsorption in combination with ozonation for the
treatment of textile waste water: A critical review. Frontiers of Environmental Science
and Engineering 11: 8.
Khamparia, S. and D.K. Jaspal. 2017b. Xanthium strumarium L. seed hull as a zero cost
alternative for Rhodamine B dye removal. Journal of Environmental Management 197:
498–506.
Kim, Y.H., B. Bae, and Y.K. Choung. 2005. Optimization of biological phosphorus removal
from contaminated sediments with phosphate-solubilizing microorganisms. Journal of
Bioscience and Bioengineering 99: 23–9.
Kirkham, M.B. 1982. Agricultural use of phosphorus in sewage sludge. Advances in
Agronomy 35: 129–63.
Kobayashi, H. and B.E. Rittman. 1982. Microbial removal of hazardous organic compounds.
Environment Science and Technology 16: 170A–183A.
Koiv, M., M. Liira, U. Mander, R. Motlep, C. Vohla, and K. Kirsimae. 2010. Phosphorus
removal using Ca-rich hydrated oil shale ash as filter material—the effect of different
phosphorus loadings and wastewater compositions. Water Research 44: 5232–9.
Kumar, M. and A. Puri. 2012. A review of permissible limits of drinking water. Indian
Journal of Occupational and Environmental Medicine 16: 40.
Kumar, P., S. Sudha, S. Chand, and V.C. Srivastava. 2010. Phosphate removal from aqueous
solution using coir-pith activated carbon. Separation Science and Technology 45: 1463–70.
Kuroki, V., G.E. Bosco, P.S. Fadini, A.A. Mozeto, A.R. Cestari, and W.A. Carvalho. 2014.
Use of a La (III)-modified bentonite for effective phosphate removal from aqueous
media. Journal of Hazardous Materials 274: 124–31.
La Farre, M., S. Pérez, L. Kantiani, and D. Barceló. 2008. Fate and toxicity of emerging
pollutants, their metabolites and transformation products in the aquatic environment.
Trends in Analytical Chemistry 27: 991–1007.
Li, J.H., G.H. Lv, W.B. Bai, Q. Liu, Y.C. Zhang, and J.Q. Song. 2016. Modification and use
of biochar from wheat straw (Triticum aestivum L.) for nitrate and phosphate removal
from water. Desalination and Water Treatment 57: 4681–93.
Liao, P.H., W.T. Wong, and K.V. Lo. 2005. Release of phosphorus from sewage sludge using
microwave technology. Journal of Environmental Engineering and Science 4: 77–81.
Mackenzie, F.T., L.M. Ver, and A. Lerman. 2002. Century-scale nitrogen and phosphorus
controls of the carbon cycle. Chemical Geology 190: 13–32.
Mallampati, R. and S. Valiyaveettil. 2013. Apple peels—A versatile biomass for water purifi-
cation. ACS Applied Materials and Interfaces 5: 4443–9.
Malviya, A., D. Jaspal, P. Sharma, and A. Dubey. 2015. Isothermal mathematical modelling for
decolorizing water—A comparative approach. Sustainable Environment Research 25: 1.
Manivasakam, N. 2005. Physico-Chemical Examination of Water Sewage and Industrial
Effluents. 5th Ed., Pragati Prakashan, Meerut, India.
Mann, R.A. and H.J. Bavor. 1993. Phosphorus removal in constructed wetlands using gravel
and industrial waste substrata. Water Science and Technology 27: 107–13.
Masters, G.M. and W. Ela. 1991. Introduction to Environmental Engineering and Science
(Vol. No. 3). Prentice Hall, Englewood Cliffs, NJ.
Mezenner, N.Y. and A. Bensmaili. 2009. Kinetics and thermodynamic study of phosphate
adsorption on iron hydroxide-eggshell waste. Chemical Engineering Journal 147:
87–96.