Reduced graphene oxide–metal nanoparticle composite membranes for environmental separation and chloro-organic remediation (original) (raw)

Abstract

This study explores the integration of separation performance was achieved in a loose nanofiltration regime with heterogeneous oxidation reactions for remediation of organic contaminants from water.

Loading...

Loading Preview

Sorry, preview is currently unavailable. You can download the paper by clicking the button above.

References (54)

  1. M. R. Chowdhury, J. Steffes, B. D. Huey and J. R. Mccutcheon, 3D Printed Polyamide Membranes for Desalination, Science, 2018, 686, 682-686.
  2. A. Deshmukh, C. Boo, V. Karanikola, S. Lin, A. P. Straub, T. Tong, D. M. Warsinger and M. Elimelech, Membrane Distillation at the Water-Energy Nexus: Limits, Opportunities, and Challenges, Energy Environ. Sci., 2018, 11(5), 1177-1196, DOI: 10.1039/c8ee00291f.
  3. S. O. Ganiyu, E. D. Van Hullebusch, M. Cretin, G. Esposito and M. A. Oturan, Coupling of Membrane Filtration and Advanced Oxidation Processes for Removal of Pharmaceutical Residues: A Critical Review, Sep. Purif. Technol., 2015, 156, 891-914, DOI: 10.1016/j.seppur.2015.09.059.
  4. J. R. Werber, C. O. Osuji and M. Elimelech, Materials for Next-Generation Desalination and Water Purication Membranes, Nat. Rev. Mater., 2016, 1, 16018.
  5. H. N. Sandefur, M. Asgharpour, J. Mariott, E. Gottberg, J. Vaden, M. Matlock and J. Hestekin, Recovery of Nutrients from Swine Wastewater Using Ultraltration: Applications for Microalgae Cultivation in Photobioreactors, Ecol. Eng., 2016, 94, 75-81.
  6. A. Aher, J. Papp, A. Colburn, H. Wan, E. Hatakeyama, P. Prakash, B. Weaver and D. Bhattacharyya, Naphthenic Acids Removal from High TDS Produced Water by Persulfate Mediated Iron Oxide Functionalized Catalytic Membrane, and by Nanoltration, Chem. Eng. J., 2017, 327, 573-583, DOI: 10.1016/j.cej.2017.06.128.
  7. B. der Bruggen and C. Vandecasteele, Removal of Pollutants from Surface Water and Groundwater by Nanoltration: Overview of Possible Applications in the Drinking Water Industry, Environ. Pollut., 2003, 122(3), 435-445.
  8. M. Sun, I. Zucker, D. M. Davenport, X. Zhou, J. Qu and M. Elimelech, Reactive, Self-Cleaning Ultraltration Membrane Functionalized with Iron Oxychloride Nanocatalysts, Environ. Sci. Technol., 2018, 52(15), 8674- 8683, DOI: 10.1021/acs.est.8b01916.
  9. S. R. Lewis, S. Datta, M. Gui, E. L. Coker, F. E. Huggins, S. Daunert, L. Bachas and D. Bhattacharyya, Reactive Nanostructured Membranes for Water Purication, Proc. Natl. Acad. Sci. U. S. A., 2011, 108(21), 8577-8582, DOI: 10.1073/pnas.1101144108.
  10. S. Z. Islam, A. Reed, D. Y. Kim and S. E. Rankin, N 2 /Ar Plasma Induced Doping of Ordered Mesoporous TiO 2 Thin Films for Visible Light Active Photocatalysis, Microporous Mesoporous Mater., 2016, 220, 120-128.
  11. L. Huang, J. Chen, T. Gao, M. Zhang, Y. Li, L. Dai, L. Qu and G. Shi, Reduced Graphene Oxide Membranes for Ultrafast Organic Solvent Nanoltration, Adv. Mater., 2016, 28(39), 8669-8674, DOI: 10.1002/adma.201601606.
  12. R. K. Joshi, S. Alwarappan, M. Yoshimura, V. Sahajwalla and Y. Nishina, Graphene Oxide: The New Membrane Material, Appl. Mater. Today, 2015, 1(1), 1-12, DOI: 10.1016/ j.apmt.2015.06.002.
  13. Y. Liu, L. Yu, C. N. Ong and J. Xie, Nitrogen-Doped Graphene Nanosheets as Reactive Water Purication Membranes, Nano Res., 2016, 9(7), 1983-1993, DOI: 10.1007/s12274-016- 1089-7.
  14. D. E. Jiang, B. G. Sumpter and S. Dai, Unique Chemical Reactivity of a Graphene Nanoribbon's Zigzag Edge, J. Chem. Phys., 2007, 126(13), 1-24, DOI: 10.1063/1.2715558.
  15. H. Sun, S. Liu, G. Zhou, H. M. Ang, M. O. Tadé and S. Wang, Reduced Graphene Oxide for Catalytic Oxidation of Aqueous Organic Pollutants, ACS Appl. Mater. Interfaces, 2012, 4(10), 5466-5471, DOI: 10.1021/am301372d.
  16. Z. Song, M. Wang, Z. Wang, Y. Wang, R. Li, Y. Zhang, C. Liu, Y. Liu, B. Xu and F. Qi, Insights into Heteroatom-Doped Graphene for Catalytic Ozonation: Active Centers, Reactive Oxygen Species Evolution, and Catalytic Mechanism, Environ. Sci. Technol., 2019, acs.est.9b01361, DOI: 10.1021/ acs.est.9b01361.
  17. J. Liang, Y. Jiao, M. Jaroniec and S. Z. Qiao, Sulfur and Nitrogen Dual-Doped Mesoporous Graphene Electrocatalyst for Oxygen Reduction with Synergistically Enhanced Performance, Angew. Chem., Int. Ed., 2012, 51(46), 11496-11500, DOI: 10.1002/anie.201206720.
  18. W. Tian, H. Zhang, X. Duan, H. Sun, M. O. Tade, H. M. Ang and S. Wang, Nitrogen-and Sulfur-Codoped Hierarchically Porous Carbon for Adsorptive and Oxidative Removal of Pharmaceutical Contaminants, ACS Appl. Mater. Interfaces, 2016, 8(11), 7184-7193, DOI: 10.1021/acsami.6b01748.
  19. X. Wang, Y. Qin, L. Zhu and H. Tang, Nitrogen-Doped Reduced Graphene Oxide as a Bifunctional Material for Removing Bisphenols: Synergistic Effect between Adsorption and Catalysis, Environ. Sci. Technol., 2015, 49(11), 6855-6864, DOI: 10.1021/acs.est.5b01059.
  20. K. Ullah, S. Ye, L. Zhu, Z. D. Meng, S. Sarkar and W. C. Oh, Microwave Assisted Synthesis of a Noble Metal-Graphene Hybrid Photocatalyst for High Efficient Decomposition of Organic Dyes under Visible Light, Mater. Sci. Eng., B, 2014, 180(1), 20-26, DOI: 10.1016/j.mseb.2013.10.014.
  21. J. Yan, W. Gao, M. Dong, L. Han, L. Qian, C. P. Nathanail and M. Chen, Degradation of Trichloroethylene by Activated Persulfate Using a Reduced Graphene Oxide Supported Magnetite Nanoparticle, Chem. Eng. J., 2016, 295, 309-316, DOI: 10.1016/j.cej.2016.01.085.
  22. X. Huang, X. Qi, F. Boey and H. Zhang, Graphene-Based Composites, Chem. Soc. Rev., 2012, 41(2), 666-686, DOI: 10.1039/c1cs15078b.
  23. A. Ahmad, X. Gu, L. Li, S. Lv, Y. Xu and X. Guo, Efficient Degradation of Trichloroethylene in Water Using Persulfate Activated by Reduced Graphene Oxide-Iron Nanocomposite, Environ. Sci. Pollut. Res., 2015, 22(22), 17876-17885, DOI: 10.1007/s11356-015-5034-1.
  24. M. Pedrosa, G. Drazic, P. B. Tavares, J. L. Figueiredo and A. M. T. Silva, Metal-Free Graphene-Based Catalytic Membrane for Degradation of Organic Contaminants by Persulfate Activation, Chem. Eng. J., 2019, 369, 223-232, DOI: 10.1016/j.cej.2019.02.211.
  25. Y. Gao, M. Hu and B. Mi, Membrane Surface Modication with TiO 2 -Graphene Oxide for Enhanced Photocatalytic Performance, J. Membr. Sci., 2014, 455, 349-356, DOI: 10.1016/j.memsci.2014.01.011.
  26. H. Zhang, Y. Zhu, J. Long, Z. Ding, R. Yuan, Z. Li and C. Xu, In Situ Construction of Layered Graphene-Based Nanoltration Membranes with Interlayer Photocatalytic Purication Function and Their Application for Water Treatment, Environ. Sci.: Nano, 2019, 2195-2202, DOI: 10.1039/c9en00351g.
  27. A. Soroush, W. Ma, Y. Silvino and M. S. Rahaman, Surface Modication of Thin Film Composite Forward Osmosis Membrane by Silver-Decorated Graphene-Oxide Nanosheets, Environ. Sci.: Nano, 2015, 2(4), 395-405, DOI: 10.1039/c5en00086f.
  28. Y. Jiang, J. E. Goodwill, J. E. Tobiason and D. A. Reckhow, Impacts of Ferrate Oxidation on Natural Organic Matter and Disinfection Byproduct Precursors, Water Res., 2016, 96, 114-125.
  29. P. Xie, W. Liu, J. Zou, S. Yue, W. Liu, J. Zou and S. Yue, Impact of UV/Persulfate Pretreatment on the Formation of Disinfection Byproducts during Subsequent Chlorination of Natural Organic Matter, Chem. Eng. J., 2015, 269, 203-211.
  30. J. J. Song, Y. Huang, S. W. Nam, M. Yu, J. Heo, N. Her, J. R. V. Flora and Y. Yoon, Ultrathin Graphene Oxide Membranes for the Removal of Humic Acid, Sep. Purif. Technol., 2015, 144, 162-167, DOI: 10.1016/ j.seppur.2015.02.032.
  31. C. Liang, C. F. Huang, N. Mohanty and R. M. Kurakalva, A Rapid Spectrophotometric Determination of Persulfate Anion in ISCO, Chemosphere, 2008, 73(9), 1540-1543, DOI: 10.1016/j.chemosphere.2008.08.043.
  32. M. Gui, J. K. Papp, A. S. Colburn, N. D. Meeks, B. Weaver, I. Wilf and D. Bhattacharyya, Engineered Iron/Iron Oxide Functionalized Membranes for Selenium and Other Toxic Metal Removal from Power Plant Scrubber Water, J. Membr. Sci., 2015, 488, 79-91, DOI: 10.1016/ j.memsci.2015.03.089.
  33. M. S. Islam, S. Hernandez, H. Wan, L. Ormsbee and D. Bhattacharyya, Role of Membrane Pore Polymerization Conditions for PH Responsive Behavior, Catalytic Metal Nanoparticle Synthesis, and PCB Degradation, J. Membr. Sci., 2018, 555, 348-361, DOI: 10.1016/j.memsci.2018.03.060.
  34. M. Gui, V. Smuleac, L. E. Ormsbee, D. L. Sedlak and D. Bhattacharyya, Iron Oxide Nanoparticle Synthesis in Aqueous and Membrane Systems for Oxidative Degradation of Trichloroethylene from Water, J. Nanopart. Res., 2012, 14(5), 861-877.
  35. S. R. Kanel, B. Manning, L. Charlet and H. Choi, Removal of Arsenic(III) from Groundwater by Nanoscale Zero-Valent Iron, Environ. Sci. Technol., 2005, 39(5), 1291-1298.
  36. R. K. Petla, S. Vivekanandhan, M. Misra, A. K. Mohanty and N. Satyanarayana, Soybean (Glycine Max) Leaf Extract Based Green Synthesis of Palladium Nanoparticles, J. Biomater. Nanobiotechnol., 2012, 3(1), 14-19.
  37. H. Wan, M. S. Islam, N. J. Briot, M. Schnobrich, L. Pacholik, L. Ormsbee and D. Bhattacharyya, Pd/Fe Nanoparticle Integrated PMAA-PVDF Membranes for Chloro-Organic Remediation from Synthetic and Site Groundwater, J. Membr. Sci., 2020, 594, 117454.
  38. A. Aher, R. Sarma, M. Crocker and D. Bhattacharyya, Selective Molecular Separation of Lignin Model Compounds by Reduced Graphene Oxide Membranes from Solvent-Water Mixture, Sep. Purif. Technol., 2020, 230, 115865, DOI: 10.1016/j.seppur.2019.115865.
  39. A. Akbari, P. Sheath, S. T. Martin, D. B. Shinde, M. Shaibani, P. C. Banerjee, R. Tkacz, D. Bhattacharyya and M. Majumder, Large-Area Graphene-Based Nanoltration Membranes by Shear Alignment of Discotic Nematic Liquid Crystals of Graphene Oxide, Nat. Commun., 2016, 7, 10891, DOI: 10.1038/ncomms10891.
  40. Y. Yuan, X. Gao, Y. Wei, X. Wang, J. Wang, Y. Zhang and C. Gao, Enhanced Desalination Performance of Carboxyl Functionalized Graphene Oxide Nanoltration
  41. Membranes, Desalination, 2017, 405, 29-39, DOI: 10.1016/ j.desal.2016.11.024.
  42. A. Akbari, S. Meragawi, S. Martin, B. Corry, E. Shamsaei, C. D. Easton, D. Bhattacharyya and M. Majumder, Solvent Transport Behavior of Shear Aligned Graphene Oxide Membranes and Implications in Organic Solvent Nanoltration, ACS Appl. Mater. Interfaces, 2017, acsami.7b11777, DOI: 10.1021/acsami.7b11777.
  43. E. Yang, M. H. Ham, H. B. Park, C. M. Kim, J. ho Song and I. S. Kim, Tunable Semi-Permeability of Graphene-Based Membranes by Adjusting Reduction Degree of Laminar Graphene Oxide Layer, J. Membr. Sci., 2018, 547, 73-79, DOI: 10.1016/j.memsci.2017.10.039.
  44. Y. Han, Z. Xu and C. Gao, Ultrathin Graphene Nanoltration Membrane for Water Purication, Adv. Funct. Mater., 2013, 23(29), 3693-3700, DOI: 10.1002/adfm.201202601.
  45. B. Lian, S. De Luca, Y. You, S. Alwarappan, M. Yoshimura, V. Sahajwalla, S. C. Smith, G. Leslie and R. K. Joshi, Extraordinary Water Adsorption Characteristics of Graphene Oxide, Chem. Sci., 2018, 9(22), 5106-5111, DOI: 10.1039/c8sc00545a.
  46. Y. A. Le Gouellec and M. Elimelech, Calcium Sulfate (Gypsum) Scaling in Nanoltration of Agricultural Drainage Water, J. Membr. Sci., 2002, 205(1-2), 279-291.
  47. S. Huling and B. Pivetz, Engineering Issue: In-Situ Chemical Oxidation, United States Environmental Protection Agency, 2006, pp. 1-60.
  48. S. Ko, M. Crimi, B. K. Marvin, V. Holmes and S. G. Huling, Comparative Study on Oxidative Treatments of NAPL Containing Chlorinated Ethanes and Ethenes Using Hydrogen Peroxide and Persulfate in Soils, J. Environ. Manage., 2012, 108, 42-48, DOI: 10.1016/ j.jenvman.2012.04.034.
  49. M. A. Al-Shamsi, N. R. Thomson and S. P. Forsey, Iron Based Bimetallic Nanoparticles to Activate Peroxygens, Chem. Eng. J., 2013, 232, 555-563.
  50. Y. Feng, P. H. Lee, D. Wu and K. Shih, Surface-Bound Sulfate Radical-Dominated Degradation of 1,4-Dioxane by Alumina- Supported Palladium (Pd/Al 2 O 3 ) Catalyzed
  51. Peroxymonosulfate, Water Res., 2017, 120, 12-21, DOI: 10.1016/j.watres.2017.04.070.
  52. A. Aher, Y. Cai, M. Majumder and D. Bhattacharyya, Synthesis of Graphene Oxide Membranes and Their Behavior in Water and Isopropanol, Carbon, 2017, 116, 145-153.
  53. H. Wan, N. J. Briot, A. Saad, L. Ormsbee and D. Bhattacharyya, Pore Functionalized PVDF Membranes with In-Situ Synthesized Metal Nanoparticles: Material Characterization, and Toxic Organic Degradation, J. Membr. Sci., 2017, 530, 147-157, DOI: 10.1016/ j.memsci.2017.02.021.
  54. G. P. Anipsitakis, D. D. Dionysiou and M. A. Gonzalez, Cobalt-Mediated Activation of Peroxymonosulfate and Sulfate Radical Attack on Phenolic Compounds. Implications of Chloride Ions, Environ. Sci. Technol., 2006, 40(3), 1000-1007, DOI: 10.1021/es050634b.