Chapter
May 9, 2013
Chapter 11

Nanoscale Porous Materials for Water Treatment: Advances and Challenges

Publication: Nanotechnologies for Water Environment Applications
First page of PDF

Get full access to this article

View all available purchase options and get full access to this chapter.

11.7 References

Adesina, A. A. (2004). “Industrial exploitation of photocatalysis: progress, perspectives and prospects.” Catalysis Surveys from Asia, 8(4), 265–273.
Aguado, J., Arsuaga, J. M., and Arencibia, A. (2008). “Influence of synthesis conditions on mercury adsorption capacity of propylthiol functionalized SBA-15 obtained by co-condensation.” Microporous and Mesoporous Materials, 109(1–3), 513–524.
Ahmed, S., Chughtai, S., and Keane, M. A. (1998). “The removal of cadmium and lead from aqueous solution by ion exchange with Na---Y zeolite.” Separation and Purification Technology, 13(1), 57–64.
Alvarez-Ayuso, E., Garcia-Sanchez, A., and Querol, X. (2003). “Purification of metal electroplating waste waters using zeolites.” Water Research, 37(20), 4855–4862.
Anderson, M. A. (2000). “Removal of MTBE and Other Organic Contaminants from Water by Sorption to High Silica Zeolites.” Environmental Science and Technology, 34(4), 725–727.
Asahi, R., Morikawa, T., Ohwaki, T., Aoki, K., and Taga, Y. (2001). “Visible-light photocatalysis in nitrogen-doped titanium oxides.” Science, 293(5528), 269–271.
Bae, E., and Choi, W. (2003). “Highly enhanced photoreductive degradation of perchlorinated compounds on dye-sensitized metal/TiO2 under visible light.” Environmental Science Technology, 37(1), 147–152.
Ballesteros, E., Gallego, M., and Valcarcel, M. (2000). “Analytical potential of fullerene as adsorbent for organic and organometallic compounds from aqueous solutions.” Journal of Chromatography A, 869(1–2), 101–110.
Bennett, J., Michael; Chang, C., Dayton; Lawton, S., Latham; Leonowicz, M., Edward; Lissy, D., Nowakiwska; and Rubin, M., Koenig;. (1992). “SYNTHETIC CRYSTALLINE ZEOLITE, ITS SYNTHESIS AND USE.” M. O. CORPORATION, ed.
Schrick Bettina, Hydutsky Bianca W., Blough Jennifer L., and Mallouk, T. E. (2004). “Delivery Vehicles for Zerovalent Metal Nanoparticles in Soil and Groundwater“Chemical Matter, 16(11), 2187–2193.
Bou-Maroun, E., Goetz-Grandmont, G. J., and Boos, A. (2006). “Sorption of europium(III) and copper(II) by a mesostructured silica doped with acylhydroxypyrazole derivatives: Extraction, kinetic and capacity studies.” Colloids and Surfaces A: Physicochemical and Engineering Aspects, 287(1–3), 1–9.
Brown, J., Richer, R., and Mercier, L. (2000). “One-step synthesis of high capacity mesoporous Hg2+ adsorbents by non-ionic surfactant assembly.” Microporous and Mesoporous Materials, 37(1–2), 41–48.
Cao, J., Elliott, D., and Zhang, W.-x. (2005a). “Perchlorate Reduction by Nanoscale Iron Particles” Journal of Nanoparticle Research, 7, 499–506.
Cao, J., and Zhang, W.-X. (2006). “Stabilization of chromium ore processing residue (COPR) with nanoscale iron particles.” Journal of Hazardous Materials, 132(2–3), 213–219.
Cao, J. S., Clasen, P., and Zhang, W. X. (2005b). “Nanoporous zero-valent iron.” Journal of Materials Research, 20(12), 3238–3243.
Chae, H. K., Siberio-Perez, D. Y., Kim, J., Go, Y., Eddaoudi, M., Matzger, A. J., O’Keeffe, M., and Yaghi, O. M. (2004). “A route to high surface area, porosity and inclusion of large molecules in crystals.” Nature, 427(6974), 523–527.
Chen, C. L., and Wang, X. K. (2006). “Adsorption of Ni(II) from aqueous solution using oxidized multiwall carbon nanotubes.” Industrial Engineering Chemistry Research, 45(26), 9144–9149.
Chen, L., Yao, B., Cao, Y., and Fan, K. (2007). “Synthesis of Well-Ordered Mesoporous Titania with Tunable Phase Content and High Photoactivity.” J. Phys. Chem. C, 111(32), 11849–11853.
Chen, X., Feng, X., JLEFG, and Gong, M. (1999). “Mercury separation and immobilization using self assembled monolayers on mesoprous supports (SAMMS).” Separation Science and Technology, 34, 1121–1132.
Cheng, H., and Reinhard, M. (2006). “Sorption of Trichloroethylene in Hydrophobic Micropores of Dealuminated Y Zeolites and Natural Minerals.” Environmental Science and Technology, 40(24), 7694–7701.
Cheng, X., Kan, A. T., and Tomson, M. B. (2004). “Naphthalene Adsorption and Desorption from Aqueous C60 Fullerene.” Journal of Chemical Engineering, 49(3), 675–683.
Chester, A. W., Clement, P., and Han, S. (2000). “Faujasite zeolitic materials.” USA
Chou, W. L., Yu, D. G., and Yang, M. C. (2005). “The preparation and characterization of silver-loading cellulose acetate hollow fiber membrane for water treatment.” Polymers for Advanced Technologies, 16(8), 600–607.
Christensen, C. H., Johannsen, K., Schmidt, I., and Christensen, C. H. (2003). “Catalytic Benzene Alkylation over Mesoporous Zeolite Single Crystals: Improving Activity and Selectivity with a New Family of Porous Materials.” Journal of American Chemical Society, 125(44), 13370–13371.
Clearfield, A. (1998). “Organically Pillared Micro- and Mesoporous Materials.” Chemistry of Materials, 10(10), 2801–2810.
Cooper, C., and Burch, R. (1999). “Mesoporous materials for water treatment processes.” Water Research, 33(18), 3689–3694.
Corma, A. (1997). “From Microporous to Mesoporous Molecular Sieve Materials and Their Use in Catalysis.” Chem. Rev., 97(6), 2373–2420.
Danis, T. G., Albanis, T. A., Petrakis, D. E., and Pomonis, P. J. (1998). “Removal of chlorinated phenols from aqueous solutions by adsorption on alumina pillared clays and mesoporous alumina aluminum phosphates.” Water Research, 32(2), 295–302.
Davis, M. E. (2002). “Ordered porous materials for emerging applications.” Nature, 417(6891), 813–821.
Davis, M. E., and Lobo, R. F. (1992). “Zeolite and molecular sieve synthesis.” Chem. Mater., 4(4), 756–768.
Duarte, R., and Duarte, A. C. (2005). “Application of non-ionic solid sorbents (XAD resins) for the isolation and fractionation of water-soluble organic compounds from atmospheric aerosols.” Journal of Atmospheric Chemistry, 51(1), 79–93.
Elliott, D. W., and Zhang, W. X. (2001). “Field Assessment of Nanoscale Bimetallic Particles for Groundwater Treatment.” Environmental Science and Technology, 35(24), 4922–4926.
EPA’s Science Policy Council, U. S. E. P. A. (2007). “EPA Nanotechnology White Paper.” United State Environmental Protection Agency Washington, DC
Feng, X., Fryxell, G. E., Wang, L. Q., Kim, A. Y., Liu, J., and Kemner, K. M. (1997). “Functionalized Monolayers on Ordered Mesoporous Supports.” Science, 276(5314), 923–926.
Frank, S. N., and Bard, A. J. (1977). “Heterogeneous photocatalytic oxidation of cyanide and sulfite in aqueous solutions at semiconductor powders.” J. Phys. Chem., 81(15), 1484–1488.
Fryxell, G. E., Lin, Y., Fiskum, S., Birnbaum, J. C., Wu, H., Kemner, K., and Kelly, S. (2005). “Actinide Sequestration Using Self-Assembled Monolayers on Mesoporous Supports.” Environmetal Science and Technology, 39(5), 1324–1331.
Gardea-Torresdey, J. L., Gomez, E., Peralta-Videa, J. R., Parsons, J. G., Troiani, H., and Jose-Yacaman, M. (2003). “Alfalfa Sprouts: A Natural Source for the Synthesis of Silver Nanoparticles.” Langmuir, 19(4), 1357–1361.
Geckeler, Y. W. a. K. E. (2006). “Functional Nanomaterials.” Functional Nanomaterials, Geckeler K.E. and Rosenberg E., eds., American Scientific Publishers.
Giasuddin, A. B. M., Kanel, S. R., and Choi, H. (2007a). “Adsorption of Humic Acid onto Nanoscale Zerovalent Iron and Its Effect on Arsenic Removal.” Environmental Science and Technology, 41(6), 2022–2027.
Giasuddin, A. B. M., Kanel, S. R., and Choi, H. (2007b). “Adsorption of humic acid onto nanoscale zerovalent iron and its effect on arsenic removal.” Environmental Science Technology, 41(6), 2022–2027.
Gillham, R. W., and O’Hannesin, S. F. (1994). “ Enhanced degradation of halogenated aliphatics by zero-valent iron.” Ground Water, 32, 958–967.
Glavee, G. N., Klabunde, K. J., Sorensen, C. M., and Hadjipanayis, G. C. (1995). “Chemistry of Borohydride Reduction of Iron(II) and Iron(III) Ions in Aqueous and Nonaqueous Media. Formation of Nanoscale Fe, FeB, and Fe2B Powders.” Inorg. Chem., 34(1), 28–35.
Gu, B., Liang, L., Dickey, M. J., Yin, X., and Dai, S. (1998). “Reductive Precipitation of Uranium(VI) by Zero-Valent Iron.” 32(21), 3366–3373.
Gu, Z., and Deng, B. (2007). “Arsenic sorption and redox transformation on iron-impregnated ordered mesoporous carbon.” Applied Organometallic Chemistry, 21(9), 750–757.
Han, S., Kim, S., Lim, H., Choi, W., Park, H., Yoon, J., and Hyeon, T. (2003). “New nanoporous carbon materials with high adsorption capacity and rapid adsorption kinetics for removing humic acids.” Microporous and Mesoporous Materials, 58(2), 131–135.
He, F., and Zhao, D. (2005). “Preparation and Characterization of a New Class of Starch-Stabilized Bimetallic Nanoparticles for Degradation of Chlorinated Hydrocarbons in Water.” Environmental Science and Technology, 39(9), 3314–3320.
He, F., Zhao, D., Liu, J., and Roberts, C. B. (2007). “Stabilization of Fe-Pd Nanoparticles with Sodium Carboxymethyl Cellulose for Enhanced Transport and Dechlorination of Trichloroethylene in Soil and Groundwater.” Industrial and Engineering Chemistry research, 46(1), 29–34.
Hoskins, J. S., Karanfil, T., and Serkiz, S. M. (2002). “Removal and Sequestration of Iodide Using Silver-Impregnated Activated Carbon.” Environ. Sci. Technol., 36(4), 784–789.
Huber, D. L. (2005). “Synthesis, properties and applications of iron nanoparticles.” Small, 1(5), 482–501.
Hui, K. S., Chao, C. Y. H., and Kot, S. C. (2005). “Removal of mixed heavy metal ions in wastewater by zeolite 4A and residual products from recycled coal fly ash.” Journal of Hazardous Materials, 127(1–3), 89–101.
Hyung, H., Fortner, J. D., Hughes, J. B., and Kim, J. H. (2007). “Natural Organic Matter Stabilizes Carbon Nanotubes in the Aqueous Phase.” Environmental Science Technology, 41(1), 179–184.
Iijima, S. (1991). “Helical microtubules of graphitic carbon.” Nature, 354(6348), 56–58.
Jain, P., and Pradeep, T. (2005). “Potential of silver nanoparticle-coated polyurethane foam as an antibacterial water filter.” Biotechnology and Bioengineering, 90(1), 59–63.
Jamali, M. R., Assadi, Y., Shemirani, F., Hosseini, M. R. M., Kozani, R. R., Masteri-Farahani, M., and Salavati-Niasari, M. (2006). “Synthesis of salicylaldehyde-modified mesoporous silica and its application as a new sorbent for separation, preconcentration and determination of uranium by inductively coupled plasma atomic emission spectrometry.” Analytica Chimica Acta, 579(1), 68–73.
Jiang, Y.-X., Ding, N., and Sun, S.-G. (2004). “Enhanced IR absorption of CO adsorbed on Pd nanoparticles embedded in the mesoporous molecular sieve SBA-15.” Journal of Electroanalytical Chemistry, 563(1), 15–21.
Jin, X., Hu, J. Y., Tint, M. L., Ong, S. L., Biryulin, Y., and Polotskaya, G. (2007). “Estrogenic compounds removal by fullerene-containing membranes.” Desalination, 214(1–3), 83–90.
Johnson, C. D., and Worrall, F. (2007). “Novel granular materials with microcrystalline active surfaces--Waste water treatment applications of zeolite/vermiculite composites.” Water Research, 41(10), 2229–2235.
Joo, S. H., Feitz, A. J., Sedlak, D. L., and Waite, T. D. (2005). “Quantification of the Oxidizing Capacity of Nanoparticulate Zero-Valent Iron.” 39(5), 1263–1268.
Joo, S. H., Feitz, A. J., and Waite, T. D. (2004). “Oxidative Degradation of the Carbothioate Herbicide, Molinate, Using Nanoscale Zero-Valent Iron.” Environmental Science and Technology, 38(7), 2242–2247.
Jung, J., Kim, J.-A., Suh, J.-K., Lee, J.-M., and Ryu, S.-K. (2001). “Microscopic and Macroscopic Approaches of Cu(II) Removal by FSM-16.” Water Research, 35(4), 937–942.
Kabra, K., Chaudhary, R., and Sawhney, R. L. (2004). “Treatment of hazardous organic and inorganic compounds through aqueous-phase photocatalysis: A review.” Industrial Engineering Chemistry Research, 43(24), 7683–7696.
Kalyanaraman, M., Kennedy, G., and Maginn, E. J. (2001). “Heavy Metal Remediation Using Functionalized Mesoporous Silicas with Controlled Macrostructure.” Langmuir, 17(2), 528–533.
Kanan, M. C., Kanan, S. M., Austin, R. N., and Patterson, H. H. (2003). “Photodecomposition of Carbaryl in the Presence of Silver-Doped Zeolite Y and Suwannee River Natural Organic Matter.” Environmental Science and Technology, 37(10), 2280–2285.
Kaneko, K., Ishii, C., Arai, T., and Suematsu, H. (1993). “Defect-associated microporous nature of fullerene C60 crystals.” J. Phys. Chem., 97(26), 6764–6766.
Kanel, S. R., and Choi, H. (2007). “Transport characteristics of surface-modified nanoscale zero-valent iron in porous media.” Water Science and Technology, 55(1–2), 157–16.
Kanel, S. R., Goswami, R. R., Clement, T. P., Barnett, M. O., and Zhao, D. (2007a). “Two Dimensional Transport Characteristics of Surface Stabilized Zero-valent Iron Nanoparticles in Porous Media“ Environmental Science and Technology, In Press, In Press.
Kanel, S. R., Goswami, R. R., Clement, T. P., Barnett, M. O., and Zhao, D. (2008). “Two dimensional transport characteristics of surface stabilized zero-valent iron nanoparticles in porous media.” Environmental Science Technology, 42(3), 896–900.
Kanel, S. R., Grenèche, J. M., and Choi, H. (2006). “Arsenic (V) removal from groundwater using nano scale zero-valent iron as a colloidal reactive barrier material.” Environ. Sci. Technol., 40(6), 2045–2050.
Kanel, S. R., Manning, B., Charlet, L., and Choi, H. (2005). “Removal of Arsenic(III) from Groundwater by Nanoscale Zero-Valent Iron.” Environmental Science and Technology, 39(5), 1291–1298.
Kanel, S. R., Nepal, D., Manning, B., and Choi, H. (2007b). “Transport of surface-modified iron nanoparticle in porous media and application to arsenic(III) remediation” Journal of Nanoparticle Research, 9(5), 725–735.
Kelly, S. D., Kemner, K. M., Fryxell, G. E., Liu, J., Mattigod, S. V., and Ferris, K. F. (2001). “X-Ray-Absorption Fine-Structure Spectroscopy Study of the Interactions between Contaminant Tetrahedral Anions and Self-Assembled Monolayers on Mesoporous Supports.” J. Phys. Chem. B, 105(27), 6337–6346.
Kim, Y., Kim, C., Choi, I., Rengaraj, S., and Yi, J. (2004). “Arsenic Removal Using Mesoporous Alumina Prepared via a Templating Method.” Environmetal Science and Technology, 38(3), 924–931.
Kroto, H. W., Heath, J. R., O’Brien, S. C., Curl, R. F., and Smalley, R. E. (1985). “C60: Buckminsterfullerene.” Nature, 318(6042), 162–163.
Lam, K. F., Yeung, K. L., and McKay, G. (2007a). “Efficient Approach for Cd2+ and Ni2+ Removal and Recovery Using Mesoporous Adsorbent with Tunable Selectivity.” Environ. Sci. Tech., 41(9), 3329–3334.
Lam, K. F., Yeung, K. L., and McKay, G. (2007b). “Preparation of selective mesoporous adsorbents for Cr2O7 2- and Cu2+ Separation.” Microporous Mesoporous Mater., 100, 191–201.
Landau, M. V., Dafa, E., Kaliya, M. L., Sen, T., and Herskowitz, M. (2001). “Mesoporous alumina catalytic material prepared by grafting wide-pore MCM-41 with an alumina multilayer.” Microporous and Mesoporous Materials, 49(1–3), 65–81.
Landong, L., Jixin, C., Shujuan, Z., Fuxiang, Z., Naijia, G., Tianyou, W., and Shuliang, L. (2005). “Selective Catalytic Reduction of Nitrogen Oxides from Exhaust of Lean Burn Engine over In-Situ Synthesized Cu-ZSM-5/Cordierite.” Environ. Sci. Tech., 39(8), 2841–2847.
Laszlo, K., Tombacz, E., and Kerepesi, P. (2003). “Surface chemistry of nanoporous carbon and the effect of pH on adsorption from aqueous phenol and 2,3,4-trichlorophenol solutions.” Colloids and Surfaces A: Physicochemical and Engineering Aspects, 230(1–3), 13–22.
Lee, P. F., Sun, D. D., and Leckie, J. O. (2007). “Adsorption and photodegradation of humic acids by nano-structured TiO2 for water treatment.” Journal of Advance Oxidation Technology, 101(1), 72–78.
Li, L., Fan, M., Brown, R. C., Leeuwen, J. H. V., Wang, J., Wang, W., Song, Y., and Zhang, P. (2006). “Synthesis, properties and environmental applications of nanoscale iron-based materials: A review.” Crit. Rev. Environ. Sci. Technol., 36(5), 405 – 431
Li, L., Zhu, W., Zhang, P., Chen, Z., and Han, W. (2003a). “Photocatalytic oxidation and ozonation of catechol over carbon-black-modified nano-TiO2 thin films supported on Al sheet.” Water Research, 37(15), 3646–3651.
Li, W., and Coppens, M. O. (2005). “Synthesis and Characterization of Stable Hollow Ti-Silica Microspheres with a Mesoporous Shell.” Chem. Mater., 17(17), 4560–4560.
Li, Y.-H., Ding, J., Luan, Z., Di, Z., Zhu, Y., Xu, C., Wu, D., and Wei, B. (2003b). “Competitive adsorption of Pb2+, Cu2+ and Cd2+ ions from aqueous solutions by multiwalled carbon nanotubes.” Carbon, 41(14), 2787–2792.
Li, Y.-H., Wang, S., Cao, A., Zhao, D., Zhang, X., Xu, C., Luan, Z., Ruan, D., Liang, J., Wu, D., and Wei, B. (2001). “Adsorption of fluoride from water by amorphous alumina supported on carbon nanotubes.” Chemical Physics Letters, 350(5–6), 412–416.
Li, Y.-H., Wang, S., Wei, J., Zhang, X., Xu, C., Luan, Z., Wu, D., and Wei, B. (2002). “Lead adsorption on carbon nanotubes.” Chemical Physics Letters, 357(3–4), 263–266.
Lin, Y., Fiskum, S. K., Yantasee, W., Wu, H., Mattigod, S. V., Vorpagel, E., Fryxell, G. E., Raymond, K. N., and Xu, J. (2005a). “Incorporation of Hydroxypyridinone Ligands into Self-Assembled Monolayers on Mesoporous Supports for Selective Actinide Sequestration.” Environmetal Science and Technology, 39(5), 1332–1337.
Lin, Y., Fiskum, S. K., Yantasee, W., Wu, H., Mattigod, S. V., Vorpagel, E., Fryxell, G. E., Raymond, K. N., and Xu, J. (2005b). “Incorporation of Hydroxypyridinone Ligands into Self-Assembled Monolayers on Mesoporous Supports for Selective Actinide Sequestration.” Environ. Sci. Tech., 39(5), 1332–1337.
Lin, Y. R., and Teng, H. S. (2002). “Mesoporous carbons from waste tire char and their application in wastewater discoloration.” Microporous and Mesoporous Materials, 54(1–2), 167–174.
Liou, Y. H., Lo, S. L., Kuan, W. H., Lin, C. J., and Weng, S. C. (2006). “Effect of precursor concentration on the characteristics of nanoscale zerovalent iron and its reactivity of nitrate.” Water Research, 40(13), 2485–2492.
Liu, A. M., Hidajat, K., Kawi, S., and Zhao, D. Y. (2000). “A new class of hybrid mesoporous materials with functionalized organic monolayers for selective adsorption of heavy metal ions.” Chemical Communication, 1145–1146.
Logar, N. Z., and Kaučič, V. (2006). “Nanoporous Materials: From Catalysis and Hydrogen Storage to Wastewater Treatment.” Acta Chim. Slov., 53, 117–135.
Long, R. Q., and Yang, R. T. (2001). “Carbon Nanotubes as Superior Sorbent for Dioxin Removal.” Journal of American Chemical Society, 123(9), 2058–2059.
Loutfy, R., Wexler, E., and Li, W. (2002). “Unique Fullerene-Based Highly Microporous Carbons for Gas Storage.” Perspectives of Fullerene Nanotechnology, 293–303.
Lyon, D. Y., Adams, L. K., Falkner, J. C., and Alvarez, P. J. J. (2006). “Antibacterial Activity of Fullerene Water Suspensions: Effects of Preparation Method and Particle Size.” Environ. Sci. Technol, 40(14), 4360–4366.
Macedo, J. d. S., da Costa, N. B.Junior, Almeida, L. E., Vieira, E. F. d. S., Cestari, A. R., Gimenez, I. d. F., Villarreal Carreno, N. L., and Barreto, L. S. (2006). “Kinetic and calorimetric study of the adsorption of dyes on mesoporous activated carbon prepared from coconut coir dust.” Journal of Colloid and Interface Science, 298(2), 515–522.
Mahmood, S. N., Naeem, S., Basit, N., and Usmani, T. H. (1993). “Microbial Evaluation of Silver Coated Impregnated Sand for Purification of Contaminated Water.” Environmental Technology, 14(2), 151–157.
Mangun, C. L., Yue, Z., Economy, J., Maloney, S., Kemme, P., and Cropek, D. (2001). “Adsorption of Organic Contaminants from Water Using Tailored ACFs.” Chemistry Material, 13(7), 2356–2360.
Manning, B. A., Kiser, J. R., and Kanel, S. R. (2006). “ Spectoscopic investigation of Cr(III) – and - Cr(VI) treated nanoscale zerovalent iron.” Environ. Sci. Technol., 41(2), 586–592.
Maranon, E., Ulmanu, M., Fernandez, Y., Anger, I., and Castrillon, L. (2006). “Removal of ammonium from aqueous solutions with volcanic tuff.” Journal of Hazardous Materials, 137(3), 1402–1409.
Mariwala, R. K., Acharya, M., and Foley, H. C. (1998). “Adsorption of halocarbons on a carbon molecular sieve.” Microporous and Mesoporous Materials, 22(1–3), 281–288.
Mercier, L., and Pinnavaia, T. J. (1998). “Heavy Metal Ion Adsorbents Formed by the Grafting of a Thiol Functionality to Mesoporous Silica Molecular Sieves: Factors Affecting Hg(II) Uptake.” Environmetal Science and Technology, 32(18), 2749–2754.
Meunier, V., and Lambin, P. (2000). “Scanning tunneling microscopy and spectroscopy of topological defects in carbon nanotubes.” Carbon, 38(11–12), 1729–1733.
Moreno, N., Querol, X., Ayora, C., Pereira, C. F., and Janssen-Jurkovicova, M. (2001). “Utilization of Zeolites Synthesized from Coal Fly Ash for the Purification of Acid Mine Waters.” Environ. Sci. Tech., 35(17), 3526–3534.
Nam, K. H., and Tavlarides, L. L. (2005). “Synthesis of a High-Density Phosphonic Acid Functional Mesoporous Adsorbent: Application to Chromium(III) Removal.” Chemistry of Materials, 17(6), 1597–1604.
Narr, J., Viraraghavan, T., and Jin, Y.-C. (2007). “Applications of nanotechnology in water/wastewater treatment: A review.” Fresenius Environmental Bulletin, 16(4), 320–329.
Nijkamp, M. G., Raaymakers, J. E. M. J., van Dillen, A. J., and de Jong, K. P. (2001). “Hydrogen storage using physisorption - materials demands.” Applied Physics A: Materials Science Processing, 72(5), 619.
Nooney, R. I., Kalyanaraman, M., Kennedy, G., and Maginn, E. J. (2001). “Heavy Metal Remediation Using Functionalized Mesoporous Silicas with Controlled Macrostructure.” Environ. Sci. Tech., 17(2), 528–533.
Nurmi, J. T., Tratnyek, P. G., Sarathy, V., Baer, D. R., Amonette, J. E., Pecher, K., Wang, C., Linehan, J. C., Matson, D. W., Penn, R. L., and Driessen, M. D. (2005). “Characterization and Properties of Metallic Iron Nanoparticles: Spectroscopy, Electrochemistry, and Kinetics.” Environ. Sci. Technol., 39(5), 1221–1230.
Obare, S. O., and Meyer, G. J. (2004). “Nanostructured materials for environmental remediation of organic contaminants in water.” Journal of Environmental Science and Health Part a-Toxic/Hazardous Substances Environmental Engineering, 39(10), 2549–2582.
Papelis, C., Roberts, P. V., and Leckie, J. O. (1995). “Modeling the Rate of Cadmium and Selenite Adsorption on Micro- and Mesoporous Transition Aluminas.” Environmetal Science and Technology, 29(4), 1099–1108.
Pena, M., Meng, X., Korfiatis, G. P., and Jing, C. (2006). “Adsorption Mechanism of Arsenic on Nanocrystalline Titanium Dioxide.” Environmental Science and Technology, 40(4), 1257–1262.
Peng, X., Luan, Z., Ding, J., Di, Z., Li, Y., and Tian, B. (2005). “Ceria nanoparticles supported on carbon nanotubes for the removal of arsenate from water.” Materials Letters, 59(4), 399–403.
Peng, X. J., Li, Y. H., Luan, Z. K., Di, Z. C., Wang, H. Y., Tian, B. H., and Jia, Z. P. (2003). “Adsorption of 1,2-dichlorobenzene from water to carbon nanotubes.” Chemical Physics Letters, 376(1–2), 154–158.
Ponder, S. M., Darab, J. G., and Mallouk, T. E. (2000). “Remediation of Cr(VI) and Pb(II) aqueous solutions using supported, nanoscale zero-valent iron.” Environmental Science Technology, 34(12), 2564–2569.
Pyrzynska, K., Stafiej, A., and Biesaga, M. (2007). “Sorption behavior of acidic herbicides on carbon nanotubes.” Microchimica Acta, 159(3–4), 293–298.
Qi, L., and Xu, Z. (2004). “Lead sorption from aqueous solutions on chitosan nanoparticles.” Colloids and Surfaces A: Physicochemical and Engineering Aspects, 251(1–3), 183–190.
Quinn, J., Geiger, C., Clausen, C., Brooks, K., Coon, C., O’Hara, S., Krug, T., Major, D., Yoon, W.-S., Gavaskar, A., and Holdsworth, T. (2005). Environ. Sci. Technol., 39(5), 1309–1308.
Radovic, L. R., Moreno-Castilla, C., and Rivera-Utrilla, J. (2001). “Carbon materials as adsorbents in aqueous solutions.” Chemistry and physics of carbon, Radovic L.R., ed., Marcel Dekker, New York, 227–405.
Ravi, P., Dai, S., Wang, C., and Tam, K. C. (2007). “Fullerene containing polymers: A review on their synthesis and supramolecular behavior in solution.” Journal of Nanoscience and Nanotechnology, 7(4–5), 1176–1196.
Rengaraj, S., Kim, Y., Joo, C. K., and Yi, J. (2004). “Removal of copper from aqueous solution by aminated and protonated mesoporous aluminas: kinetics and equilibrium.” Journal of Colloid and Interface Science, 273(1), 14–21.
Rengaraj, S., Yeon, J. W., Kim, Y., and Kim, W. H. (2007). “Application of Mg-Mesoporous Alumina Prepared by Using Magnesium Stearate as a Template for the Removal of Nickel: Kinetics, Isotherm, and Error Analysis.” Ind. Eng. Chem. Res., 46(9), 2834–2842.
Rolison, D. R. (2003). “Catalytic Nanoarchitectures--the Importance of Nothing and the Unimportance of Periodicity.” Science, 299, 1698–1701.
Rumer, R. R., and Ryan, M. E. (1995). Barrier Containment Technologies for Environmental Remediation Applications, Wiley Sons: New York.
Sanchez-Polo, M., Rivera-Utrilla, J., Salhi, E., and von Gunten, U. (2007). “Ag-doped carbon aerogels for removing halide ions in water treatment.” Water Research, 41(5), 1031–1037.
Savage, N., and Diallo, M. S. (2005). “Nanomaterials and Water Purification: Opportunities and Challenges.” Journal of Nanoparticle Research, 7(4), 331–342.
Sawicki, R., and Mercier, L. (2006). “Evaluation of Mesoporous Cyclodextrin-Silica Nanocomposites for the Removal of Pesticides from Aqueous Media.” Environ. Sci. Tech., 40(6), 1978–1983.
Sayari, A., Hamoudi, S., and Yang, Y. (2005). “Applications of Pore-Expanded Mesoporous Silica. 1. Removal of Heavy Metal Cations and Organic Pollutants from Wastewater.” Chemistry of Materials, 17(1), 212–216.
Schrick, B., Blough, J. L., Jones, A. D., and Mallouk, T. E. (2002). “Hydrodechlorination of trichloroethylene to hydrocarbons using bimetallic nickel-iron nanoparticles.” Chemistry of Materials, 14(12), 5140–5147.
Schrick, B., Hydutsky, B. W., Blough, J. L., and Mallouk, T. E. (2004). “Delivery Vehicles for Zerovalent Metal Nanoparticles in Soil and Groundwater” Chemical Matter, 16(11), 2187–2193.
Schüth, F., and Schmidt, W. (2002). “Microporous and Mesoporous Materials.” Advanced Materials, 14(9), 629–638.
Shin, E. W., Han, J. S., Jang, M., Min, S. H., Park, J. K., and Rowell, R. M. (2004). “Phosphate Adsorption on Aluminum-Impregnated Mesoporous Silicates: Surface Structure and Behavior of Adsorbents.” Environmetal Science and Technology, 38(3), 912–917.
Shin, K. H., and Cha, D. K. (2008). “Microbial reduction of nitrate in the presence of nanoscale zero-valent iron.” Chemosphere, 72(2), 257–262.
Sohn, K., Kang, S. W., Ahn, S., Woo, M., and Yang, S. K. (2006). “Fe(0) nanoparticles for nitrate reduction: Stability, reactivity, and transformation.” Environmental Science Technology, 40(17), 5514–5519.
Su, F., Lv, L., Hui, T. M., and Zhao, X. S. (2005). “Phenol adsorption on zeolite-templated carbons with different structural and surface properties.” Carbon, 43(6), 1156–1164.
Tratnyek, P. G., and Johnson, R. L. (2006). “Nanotechnologies for environmental cleanup.” Nano Today, 1(2), 44–48.
Tseng, T. K., Chu, H., and Hsu, H. H. (2003). “Characterization of Alumina-Supported Manganese Oxide as an Incineration Catalyst for Trichloroethylene.” Environ. Sci. Tech., 37(1), 171–176.
Um, W., Mattigod, S., Serne, R. J., Fryxell, G. E., Kim, D. H., and Troyer, L. D. (2007). “Synthesis of nanoporous zirconium oxophosphate and application for removal of U(VI).” Water Research, 41(15), 3217–3226.
USEPA. (1991). “Guides to Pollution Prevention: the photoprocessing industry.” Cincinnati, OH.
Valtchev, V. P., Tosheva, L., and Bozhilov, K. N. (2005). “Synthesis of Zeolite Nanocrystals at Room Temperature.” Langmuir, 21(23), 10724–10729.
Vaudry, F., Khodabandeh, S., and Davis, M. E. (1996). “Synthesis of Pure Alumina Mesoporous Materials.” Chemistry of Materials, 8(7), 1451–1464.
Vidya, K., Gupta, N. M., and Selvam, P. (2004). “Influence of pH on the sorption behaviour of uranyl ions in mesoporous MCM-41 and MCM-48 molecular sieves.” Materials Research Bulletin, 39(13), 2035–2048.
Wang, X., Chen, C., Hu, W., Ding, A., Xu, D., and Zhou, X. (2005). “Sorption of 243Am(III) to Multiwall Carbon Nanotubes.” Environmental Science Technology, 39(8), 2856–2860.
Wang, Y., Geckeler, K. E., and Nepal, D. (2004). “Hollow porous carbon nanospheres with large surface area and stability, assembled from oxidized fullerenes.” Journal of Materials Chemistry, 15, 1049–1054.
Wiesner, M. R. (2006). “Respensible development of nanotechnologies for water and wastewater treatment.” Water Science and Technology, 53(3), 45–51.
Wingenfelder, U., Hansen, C., Furrer, G., and Schulin, R. (2005). “Removal of Heavy Metals from Mine Waters by Natural Zeolites.” Environ. Sci. Tech., 39(12), 4606–4613.
Xu, Y.-M., Wang, R.-S., and Wu, F. (1999). “Surface Characters and Adsorption Behavior of Pb(II) onto a Mesoporous Titanosilicate Molecular Sieve” Journal of Colloid and Interface Science, 209, 380–385.
Yamashita, H., Nishida, Y., Yuan, S., Mori, K., Narisawa, M., Matsumura, Y., Ohmichi, T., and Katayama, I. (2007). “Design of TiO2-SiC photocatalyst using TiC-SiC nano-particles for degradation of 2-propanol diluted in water.” Catalysis Today, 120(2), 163–167.
Yang, K., Zhu, L., and Xing, B. (2006). “Adsorption of Polycyclic Aromatic Hydrocarbons by Carbon Nanomaterials.” Environ. Sci. Technol, 40(6), 1855–1861.
Yavuz, C. T., Mayo, J. T., Yu, W. W., Prakash, A., Falkner, J. C., Yean, S., Cong, L., Shipley, H. J., Kan, A., Tomson, M., Natelson, D., and Colvin, V. L. (2006). “Low-Field Magnetic Separation of Monodisperse Fe3O4 Nanocrystals.” Science, 314(5801), 964–967.
Yoshitake, H., Yokoi, T., and Tatsumi, T. (2002). “Adsorption of Chromate and Arsenate by Amino-Functionalized MCM-41 and SBA-1.” Chem. Mater., 14(11), 4603–4610.
Zhang, Q., and Chuang, K. T. (1999). “Treatment of Combined Bleach Plant Effluents via Wet Oxidation over a Pd-Pt-Ce/Alumina Catalyst.” Environ. Sci. Tech., 33(20), 3641–3644.
Zhang, W.-x. (2003). “Nanoscale Iron Particles for Environmental Remediation: An Overview.” Journal of Nanoparticle Research, 5, 323–332.
Zhao, H., Nagy, K. L., Waples, J. S., and Vance, G. F. (2000). “Surfactant-Templated Mesoporous Silicate Materials as Sorbents for Organic Pollutants in Water.” Environ. Sci. Tech., 34(22), 4822–4827.

Information & Authors

Information

Published In

Go to Nanotechnologies for Water Environment Applications
Nanotechnologies for Water Environment Applications
Pages: 312 - 366

History

Published online: May 9, 2013

Permissions

Request permissions for this article.

ASCE Technical Topics:

Authors

Affiliations

Metrics & Citations

Metrics

Citations

Download citation

If you have the appropriate software installed, you can download article citation data to the citation manager of your choice. Simply select your manager software from the list below and click Download.

View Options

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Chapter
$35.00
Add to cart
Buy E-book
$166.00
Add to cart

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Chapter
$35.00
Add to cart
Buy E-book
$166.00
Add to cart

Media

Figures

Other

Tables

Share

Share

Copy the content Link

Share with email

Email a colleague

Share