161
Views
6
CrossRef citations to date
0
Altmetric
PRECONCENTRATION TECHNIQUES

Sorption of Metals on Pulverized Pumpkin (Cucurbita pepo L.) Peels

, , &
Pages 2446-2460 | Received 28 Oct 2015, Accepted 07 Feb 2016, Published online: 03 Aug 2016

References

  • An, H. K., B. Y. Park, and D. S. Kim. 2001. Crab shell for the removal of heavy metals from aqueous solution. Water Research 35 (15):3551–56. doi:10.1016/s0043-1354(01)00099-9
  • Annadurai, G., R. S. Juang, and D. J. Lee. 2002. Adsorption of heavy metals from water using banana and orange peels. Water Science and Technology 47:185–90.
  • Babarinde, N. A. A., J. O. Babalola, and R. A. Sanni. 2006. Biosorption of lead ions from aqueous solution by maize leaf. International Journal of Physical Science 1 (1):23–26.
  • Baki, M. H., F. Shemirani, and R. Khani. 2013. Potential of sawdust as a green and economical sorbent for simultaneous preconcentration of trace amounts of cadmium, cobalt, and lead from water, biological, food, and herbal samples. Journal of Food Scince 78 (5):797–804. doi:10.1111/1750-3841.12104
  • Bhattacharya, A. K., S. N. Mandal, and S. K. Das. 2006. Adsorption of Zn(II) from aqueous solution by using different adsorbents. Chemical Engineering Journal 123:43–51. doi:10.1016/j.cej.2006.06.012
  • Chen, J. P., and L. Yang. 2005. Chemical modification of Sargassum sp. for prevention of organic leaching and enhancement of uptake during metal biosorption. Industrial & Engineering Chemistry Research 44 (26):9931–42. doi:10.1021/ie050678t
  • Citak, D., and M. Tuzen. 2010. A novel preconcentration procedure using cloud point extraction for determination of lead, cobalt and copper in water and food samples using flame atomic absorption spectrometry. Food and Chemical Toxicology 48 (5):1399–404. doi:10.1016/j.fct.2010.03.008
  • Citak, D., M. Tuzen, and M. Soylak. 2009. Simultaneous coprecipitation of lead, cobalt, copper, cadmium, iron and nickel in food samples with zirconium(IV) hydroxide prior to their flame atomic absorption spectrometric determination. Food and Chemical Toxicology 47 (9):2302–307. doi:10.1016/j.fct.2009.06.021
  • Dandan, L., C. Qilin, L. Xiaomin, C. Xiuju, L. Fang, and S. Wenjing. 2009. Kinetics and equilibrium of Cu(II) adsorption onto chemically modified orange peel cellulose biosorbents. Hydrometallurgy 95:145–52. doi:10.1016/j.hydromet.2008.05.008
  • Das, N., R. Vimala, and P. Karthika. 2008. Biosorption of heavy metals—An overview. Indian Journal of Biotechnology 7:159–69.
  • Demirbas, A. 2008. Heavy metal adsorption onto agro-based waste materials: A review. Journal of Hazardous Materials 157:220–29. doi:10.1016/j.jhazmat.2008.01.024
  • Ensafi, A. A., T. Khayamian, A. Benvidi, and E. Mirmomtaz. 2006. Simultaneous determination of copper, lead and cadmium by cathodic desorptive stripping voltammetry using artificial neural network. Analytica Chimica Acta. 561:225–32. doi:10.1016/j.aca.2006.01.015
  • Feng, N., X. Guo, S. Liang, Y. Zhu, and J. Liu. 2011. Biosorption of heavy metals from aqueous solutions by chemically modified orange peel. Journal of Hazardous Materials 185:49–54. doi:10.1016/j.jhazmat.2010.08.114
  • Ghaedi, M., A. Shokrollahi, K. Niknam, E. Niknam, A. Najibi, and M. Soylak. 2009. Cloud point extraction and flame atomic absorption spectrometric determination of cadmium(II), lead(II), palladium(II) and silver(I) in environmental samples. Journal of Hazardous Materials 168 (2–3):1022–27. doi:10.1016/j.jhazmat.2009.02.130
  • Godlewska-Zyłkiewicz, B. 2006. Microorganisms in inorganic chemical analysis. Analytical and Bioanalytical Chemistry 384:114–23. doi:10.1007/s00216-005-0142-2
  • Hanafiah, M. A. K. M., W. S. W. Ngah, S. C. Ibrahim, H. Zakaria, and W. A. H. W. Ilias. 2006. Kinetics and thermodynamic study of lead adsorption onto rubber (Hevea brasiliensis) leaf powder. Journal of Applied Science 6:2762–67. doi:10.3923/jas.2006.2762.2767
  • Hanafiah, M. A. K. H., S. Shafiei, M. K. Harun, and M. Z. A. Yahya. 2006. Kinetic and thermodynamic study of Cd2+ adsorption onto rubber tree (Hevea brasiliensis) leaf powder. Materials Science Forum 517:217–21. doi:10.4028/www.scientific.net/msf.517.217
  • Hanafiah, M. A. K., W. S. W. Ngah, H. Zakaria, and S. C. Ibrahim. 2007. Batch study of liquid-phase adsorption of lead ions using Lalang (Imperata cylindrica) leaf powder. Journal of Biological Science 7:222–30. doi:10.3923/jbs.2007.222.230
  • Ho, Y. S. 2003. Removal of copper ions from aqueous solution by tree fern. Water Research 37 (10):2323–30. doi:10.1016/s0043-1354(03)00002-2
  • Ho, Y. S., W. T. Chiu, C. S. Hsu, and C. T. Huang. 2004. Sorption of lead ions from aqueous solution using tree fern as a sorbent. Hydrometallurgy 73:55–61. doi:10.1016/j.hydromet.2003.07.008
  • Ho, Y. S., and C. C. Wang. 2004. Pseudo-isotherms for the sorption of cadmium ion onto tree fern. Process Biochemistry 39:759–63. doi:10.1016/s0032-9592(03)00184-5
  • Hussein, H., S. F. Ibrahim, K. Kandeel, and H. Moawad. 2004. Biosorption of heavy metals from waste water using Pseudomonas sp. electron. Journal of Biotechnology 7:38–46.
  • Johnson, P. D., M. A. Watson, J. Brown, and I. A. Jefcoat. 2002. Peanut hull pellets as a single-use sorbent for the capture of Cu(II) from wastewater. Waste Management 22:471–80. doi:10.1016/s0956-053x(01)00036-8
  • Karunasagar, D., M. V. B. Krishna, S. V. Rao, and J. Arunachalam. 2005. Removal and preconcentration of inorganic and methyl mercury from aqueous media using a sorbent prepared from the plant Coriandrum sativum. Journal of Hazardous Materials 118 (1–3):133–39. doi:10.1016/j.jhazmat.2004.10.021
  • King, P., P. Srivinas, Y. P. Kumar, and V. S. R. K. Prasad. 2006. Sorption of copper(II) ion from aqueous solution by Tectona grandis l.f. (teak leaves powder). Journal of Hazardous Materials 136 (3):560–66. doi:10.1016/j.jhazmat.2005.12.032
  • Lasheen, M. R., N. S. Ammar, and H. S. Ibrahim. 2012. Adsorption/desorption of Cd(II), Cu(II) and Pb(II) using chemically modified orange peel: Equilibrium and kinetic studies. Solid State Science 14:202–10. doi:10.1016/j.solidstatesciences.2011.11.029
  • Li, X., Y. Tang, Z. Xuan, Y. Liu, and F. Luo. 2007. Study on the preparation of orange peel cellulose adsorbents and biosorption of Cd2+ from aqueous solution. Separation and Purification Technology 55 (1):69–75. doi:10.1016/j.seppur.2006.10.025
  • Madrakian, T., M. A. Zolfigol, and F. Aboulghazi. 2010. Preconcentration of Co, Ni, Cd and Zn on naphthalene 2,4,6-trimorpholino-1,3,5-triazin adsorbent and flame atomic absorption determination. Journal of the Serbian Chemical Society 75 (5):669–79. doi:10.2298/jsc090404032m
  • Mahamuni, S. V., P. P. Wadgaonkar, and M. A. Anuse. 2010. Liquid–liquid extraction and recovery of gallium(III) from acid media with 2-octylaminopyridine in chloroform: Analysis of bauxite ore. Journal of the Serbian Chemical Society 75:1099–114. doi:10.2298/jsc090630072m
  • Marshall, W. E., E. T. Champagne, and W. J. Evans. 1993. Use of rice milling byproducts (hulls and bran) to remove metal ions from aqueous solution. Journal of Environmental Science & Health A 28 (9):1977–92. doi:10.1080/10934529309375990
  • Memon, J. R., S. Q. Memon, M. I. Bhanger, and M. Y. Khuhawar. 2008. Banana peel: A green and economical sorbent for Cr(III) removal. Pakistan Journal of Analytical & Environmental Chemistry 9 (1):20–25.
  • Morel, F. M., and J. G. Hering. 1993. Principles and applications of aquatic chemistry. Chichester, UK: J. Wiley and Sons.
  • Özdemir, S., V. Okumus, A. Dündar, and E. Kilinc. 2013. Preconcentration of metal ions by microbacteria. Microchimica Acta. 180:719–39.
  • Pereira, M. G., and M. A. Z. Arruda. 2003. Trends in preconcentration procedures for metal determination using atomic spectrometry techniques. Microchimica Acta. 141:115–31. doi:10.1007/s00604-002-0941-5
  • Pourreza, N., and R. Hoveizavi. 2005. Simultaneous preconcentration of Cu, Fe and Pb as methylthymol blue complexes on naphthalene adsorbent and flame atomic absorption determination. Analytica. Chimica. Acta. 549 (1–2):124–28. doi:10.1016/j.aca.2005.06.037
  • Saeed, A., M. W. Akhter, and M. Iqbal. 2005. Removal and recovery of heavy metals from aqueous solution using papaya wood as a new biosorbent. Separation and Purification Technology 45 (1):25–31. doi:10.1016/j.seppur.2005.02.004
  • Sahin, C. A., and I. Tokgoz. 2010. A novel solidified floating organic drop microextraction method for preconcentration and determination of copper ions by flow injection flame atomic absorption spectrometry. Analytica Chimica Acta 667 (1–2):83–87. doi:10.1016/j.aca.2010.04.012
  • Sahin, C. A., I. Tokgoz, and S. Bektas. 2010. Preconcentration and determination of iron and copper in spice samples by cloud point extraction and flow injection flame atomic absorption spectrometry. Journal of Hazardous Materials 181 (1–3):359–65. doi:10.1016/j.jhazmat.2010.05.018
  • Sawalha, M. F., J. R. Peralta-Videa, J. Romero-Gonzalez, M. Duarte-Gardea, and J. L. Gardea-Torresdey. 2007a. Thermodynamic and isotherm studies of the biosorption of Cu(II), Pb(II), and Zn(II) by leaves of saltbush (Atriplex canescens). Journal of Chemical Thermodynamics 39:488–92. doi:10.1016/j.jct.2006.07.020
  • Sawalha, M. F., J. R. Peralta-Videa, J. Romero-Gonzalez, and J. L. Gardea-Torresdey. 2007b. Biosorption of Cd(II), Cr(III), and Cr(VI) by saltbush (Atriplex canescens) biomass: Thermodynamic and isotherm studies. Journal of Colloid Interface Science 300:100–104. doi:10.1016/j.jcis.2006.03.029
  • Silva, E. L., A. O. Martins, A. Valentini, V. T. Favere, and E. Carasek. 2004. Application of silica gel organofunctionalized with 3(1-imidazolyl)propyl in an on-line preconcentration system for the determination of copper by FAAS. Talanta 64 (1):181–89. doi:10.1016/j.talanta.2004.02.003
  • Silva, E. L., P. S. Roldan, and M. F. Giné. 2009. Simultaneous preconcentration of copper, zinc, cadmium, and nickel in water samples by cloud point extraction using 4-(2-pyridylazo)-resorcinol and their determination by inductively coupled plasma optic emission spectrometry. Journal of Hazardous Materials 171 (1–3):1133–38. doi:10.1016/j.jhazmat.2009.06.127
  • Šabanović, E., M. Memić, J. Sulejmanović, and J. Huremović. 2015. Pulverized banana peel as an economical sorbent for the preconcentration of metals. Analytical Letters 48 (3):442–52. doi:10.1080/00032719.2014.947534
  • Taffarel, S. R., and J. Rubio. 2009. On the removal of Mn2+ ions by adsorption onto natural and activated Chilean zeolites. Minerals Engineering 22 (4):336–43. doi:10.1016/j.mineng.2008.09.007
  • Todorović, Z., P. Polić, T. Sabo, and M. Cakić. 2002. Preconcentration method for trace metals in natural waters using 4 morpholine dithiocarbamate. Journal of the Serbian Chemical Society 67:879–85. doi:10.2298/jsc0212879t
  • Türker, A. R. 2012. Separation, preconcentration and speciation of metal ions by solid phase extraction. Separation and Purification Reviews 41:169–206. doi:10.1080/15422119.2011.585682
  • Tuzen, M., D. Citak, and M. Soylak. 2008. 5-Chloro-2-hydroxyaniline-copper(II) coprecipitation system for preconcentration and separation of lead (II) and chromium (III) at trace levels. Journal of Hazardous Materials 158 (1):137–41. doi:10.1016/j.jhazmat.2008.01.038
  • Uzunosmanoglu, O., A. Uyanik, and M. S. Engin. 2011. The removal of cadmium(II), copper(II) and lead(II) from aqueous solutions by olive tree pruning waste. Fresenius Environmental Bulletin 20 (12):3135–40.
  • Villaescusa, I., N. Fiol, M. Martínez, N. Miralles, J. Pocj, and J. Serarols. 2004. Removal of copper and nickel ions from aqueous solutions by grape stalks wastes. Water Research 38 (4):992–1002. doi:10.1016/j.watres.2003.10.040
  • Volesky, B. 2007. Biosorption and me. Water Research 41:4017–29. doi:10.1016/j.watres.2007.05.062
  • Wan Ibrahim, W. A., L. Ali, A. Sulaiman, M. M. Sanagi, and H. T. Aboul-Enein. 2014. Application of solid-phase extraction for trace elements in environmental and biological samples: A review. Critical Reviews in Analytical Chemistry 44 (3):233–54. doi:10.1080/10408347.2013.855607
  • Wang, J., and C. Cheng. 2009. Biosorbents for heavy metals removal and their future. Biotechnology Advances 27:195–226. doi:10.1016/j.biotechadv.2008.11.002
  • Zhang, Y., J. Zhao, Z. Jiang, D. Shan, and Y. Lu. 2014. Biosorption of Fe(II) and Mn(II) ions from aqueous solutions by rice husk ash. BioMed Research International 2014:1–10. doi:10.1155/2014/973095

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.