Removal and Recovery of Methyl Tertiary Butyl Ether (MTBE) from Water Using Carbon Nanotube and Graphene Oxide Immobilized Membranes

被引:13
作者
Intrchom, Worawit [1 ]
Roy, Sagar [1 ]
Mitra, Somenath [1 ]
机构
[1] New Jersey Inst Technol, Dept Chem & Environm Sci, Newark, NJ 07102 USA
基金
美国国家科学基金会;
关键词
MTBE separation; functionalized carbon nanotube immobilized membranes (CNIM-f); graphene oxide immobilized membranes (GOIM); sweep gas membrane distillation (SGMD); flux enhancement; DRINKING-WATER; ENHANCED DESALINATION; SURFACE MODIFICATION; DISTILLATION; PERVAPORATION; ADSORPTION; SEPARATION; MIXTURES; ENERGY; FATE;
D O I
10.3390/nano10030578
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Methyl tert-butyl ether (MTBE) is a widely used gasoline additive that has high water solubility, and is difficult to separate from contaminated ground and surface waters. We present the development in functionalized carbon nanotube-immobilized membranes (CNIM-f) and graphene oxide-immobilized membranes (GOIM) for enhanced separation of MTBE via sweep gas membrane distillation (SGMD). Both types of modified membranes demonstrated high performance in MTBE removal from its aqueous mixture. Among the membranes studied, CNIM-f provided the best performance in terms of flux, removal efficiency, mass transfer coefficients and overall selectivity. The immobilization f-CNTs and GO altered the surface characteristics of the membrane and enhanced partition coefficients, and thus assisted MTBE transport across the membrane. The MTBE flux reached as high as 1.4 kg/m(2) h with f-CNTs, which was 22% higher than that of the unmodified PTFE membrane. The maximum MTBE removal using CNIM-f reached 56% at 0.5 wt % of the MTBE in water, and at a temperature of 30 degrees C. With selectivity as high as 60, MTBE recovery from contaminated water is very viable using these nanocarbon-immobilized membranes.
引用
收藏
页数:16
相关论文
共 60 条
  • [1] Membrane distillation: A comprehensive review
    Alkhudhiri, Abdullah
    Darwish, Naif
    Hilal, Nidal
    [J]. DESALINATION, 2012, 287 : 2 - 18
  • [2] The impact of graphene oxide particles on viscosity stabilization for diluted polymer solutions using in enhanced oil recovery at HTHP offshore reservoirs
    Ba Dung Nguyen
    Trung Kien Ngo
    Truong Han Bui
    Duy Khanh Pham
    Xuan Loc Dinh
    Phuong Tung Nguyen
    [J]. ADVANCES IN NATURAL SCIENCES-NANOSCIENCE AND NANOTECHNOLOGY, 2015, 6 (01)
  • [3] Vacuum membrane distillation: Experiments and modeling
    Bandini, S
    Saavedra, A
    Sarti, GC
    [J]. AICHE JOURNAL, 1997, 43 (02) : 398 - 408
  • [4] Desalination across a graphene oxide membrane via direct contact membrane distillation
    Bhadra, Madhuleena
    Roy, Sagar
    Mitra, Somenath
    [J]. DESALINATION, 2016, 378 : 37 - 43
  • [5] Enhanced desalination using carboxylated carbon nanotube immobilized membranes
    Bhadra, Madhuleena
    Roy, Sagar
    Mitra, Somenath
    [J]. SEPARATION AND PURIFICATION TECHNOLOGY, 2013, 120 : 373 - 377
  • [6] Water and Wastewater Treatment Systems by Novel Integrated Membrane Distillation (MD)
    Biniaz, Parisa
    Torabi Ardekani, Niloofar
    Makarem, Mohammad Amin
    Rahimpour, Mohammad Reza
    [J]. CHEMENGINEERING, 2019, 3 (01) : 1 - 36
  • [7] Numerical simulation and experimental studies on heat and mass transfer using sweeping gas membrane distillation
    Charfi, K.
    Khayet, M.
    Safi, M. J.
    [J]. DESALINATION, 2010, 259 (1-3) : 84 - 96
  • [8] Fast Microwave-Assisted Purification, Functionalization and Dispersion of Multi-Walled Carbon Nanotubes
    Chen, Yuhong
    Mitra, Somenath
    [J]. JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2008, 8 (11) : 5770 - 5775
  • [9] Dale MS, 2000, J AM WATER WORKS ASS, V92, P42
  • [10] Danmaliki G.I., 2016, EUR J EARTH ENV, V3, P31