Metal oxide/TiO2 nanocomposites as efficient adsorbents for relatively high temperature H2S removal

被引:22
|
作者
Orojlou, Shahin Heydari [1 ]
Zargar, Behrooz [1 ]
Rastegarzadeh, Saadat [1 ]
机构
[1] Shahid Chamran Univ Ahvaz, Fac Sci, Dept Chem, Ahvaz, Iran
关键词
Nanocomposites; TiO2; Metal oxide; Adsorptive desulfurization; Hydrogen sulfide; HYDROGEN-SULFIDE; REGENERABLE SORBENTS; CATALYTIC-OXIDATION; CARBON NANOTUBES; DESULFURIZATION; PERFORMANCE; SUPPORT;
D O I
10.1016/j.jngse.2018.09.016
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Hydrogen sulfide is a highly toxic and corrosive gas that is present in different environments such as hot coal gases. In order to have a clean atmosphere and prolong the life of industrial equipment and metallic catalysts, it is necessary to remove or decrease the concentration of this gas in feedstocks to sub parts per million before their use. To accomplish this task, various nanocomposite sorbents were studied for H2S removal at relatively high temperature. To this end, the NiO/TiO2, CuO/TiO2, and CoO/TiO2 nanocomposites were prepared through wet impregnation. X-ray Diffraction (XRD), Field Emission Scanning Electron Microscopy (FESEM) equipped with Energy-dispersive X-ray spectroscopy (EDS) and N-2 adsorption/desorption were used for characterizing the prepared nano sorbents. The H2S adsorption reaction experiments were performed at relatively high temperature and effects of the promoter to TiO2 ratio, sorbent mass and desulfurization temperature were studied. The results showed that at 480 degrees C, the CoO promoted TiO2 shows longer breakthrough time followed by NiO/TiO2 and CuO/TiO2 sorbents. The best results were obtained by using the promoter to TiO2 ratio of 2.5/5 among the ratios used. By decreasing the temperature and performing the experiments at 400 degrees C, the nickel oxide promoted TiO2 showed better results than the CoO/TiO2 suggesting the lower sulfidation activity of CoO promoter at this temperature.
引用
收藏
页码:363 / 373
页数:11
相关论文
共 50 条
  • [1] Low-temperature H2S removal for solid oxide fuel cell application with metal oxide adsorbents
    Weinlaender, Christof
    Neubauer, Raphael
    Hochenauer, Christoph
    ADSORPTION SCIENCE & TECHNOLOGY, 2017, 35 (1-2) : 120 - 136
  • [2] Screening of adsorbents for removal of H2S at room temperature
    Xue, M
    Chitrakar, R
    Sakane, K
    Ooi, K
    GREEN CHEMISTRY, 2003, 5 (05) : 529 - 534
  • [3] Kinetic study of high-temperature removal of H2S by novel metal oxide sorbents
    Garcia, E
    Cilleruelo, C
    Ibarra, JV
    Pineda, M
    Palacios, JM
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1997, 36 (03) : 846 - 853
  • [4] Kinetic study of high-temperature removal of H2S by novel metal oxide sorbents
    Garcia, E.
    Cilleruelo, C.
    Ibarra, J.V.
    Pineda, M.
    Palacios, J.M.
    Industrial and Engineering Chemistry Research, 1997, 36 (03): : 846 - 853
  • [5] Study of low temperature H2S removal on Ce-Cu-Al-O mixed metal oxide adsorbents
    Zhang, Yongchun (zalidy5518@vip.sina.com), 1600, Chemical Industry Press (35):
  • [6] HIGH-TEMPERATURE REGENERATIVE REMOVAL OF H2S BY POROUS MIXED METAL-OXIDE SORBENTS
    FLYTZANI-STEPHANOPOULOS, M
    TAMHANKAR, SS
    GAVALAS, GR
    SHARMA, PK
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1985, 190 (SEP): : 31 - FUL
  • [7] Metal-Organic Frameworks for H2S Removal: Identification of Optimal Adsorbents and Influence of H2S Molecular Models
    Sung, I-Ting
    Lin, Li-Chiang
    JOURNAL OF PHYSICAL CHEMISTRY C, 2025, 129 (05): : 2837 - 2850
  • [8] Ce-Mn Oxide Nanocomposites for Catalytic Removal of H2S
    Zhang, Qiongdan
    Zheng, Chengcheng
    Zhang, Ke
    Zheng, Yong
    Xiao, Yihong
    Jiang, Lilong
    ACS APPLIED NANO MATERIALS, 2023, 6 (04) : 2585 - 2595
  • [9] H2S removal from biogas using TiO2 industry effluent
    Krishnakumar, B
    Haridas, A
    Manilal, VB
    JOURNAL OF SCIENTIFIC & INDUSTRIAL RESEARCH, 1999, 58 (09): : 689 - 691
  • [10] Cu/TiO2 adsorbents modified by air plasma for adsorption-oxidation of H2S
    Yan, Yongqi
    Yang, Xinyu
    Ning, Ping
    Wang, Chi
    Sun, Xin
    Wang, Fei
    Gao, Peng
    Li, Kai
    JOURNAL OF ENVIRONMENTAL SCIENCES, 2025, 148 : 476 - 488