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Iron Activation of Natural Aluminosilicates to Remove Arsenic from Groundwater 被引量:2

Iron Activation of Natural Aluminosilicates to Remove Arsenic from Groundwater
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摘要 Low-cost adsorbents constituted by Fe-modified-aluminosilicates (laminar and zeolite type minerals) were developed and characterized to be used in the arsenic removal from groundwater. Iron activation was carried out "in situ" by the synthesis and deposition of mesoporous ferrihydrite. Natural iron-rich aluminosilicate was used as reference. All samples were characterized by X-ray diffraction, Raman spectroscopy, BET N2-adsorption, SEM-EDS microscopy and ICP chemical analysis. Experimental results of arsenic sorption showed that iron-poor raw materials were not active, unlike iron activated samples. The iron loading in all activated samples was below 5% (expressed as Fe203), whereas the removal capacity of these samples reaches between 200-700 gg of As by g of adsorbent, after reusing between 17 cycles and 70 cycles up to adsorbent saturation. Differences can be associated to mineral structure and to the surface charge modification by iron deposition, affecting the attraction of the As-oxoanion. On the basis of low-cost raw materials, the easy chemical process for activation shows that these materials are potentially attractive for As(V) removal. Likewise, the activation of clay minerals, with natural high content of iron, seems to be a good strategy to enhance the arsenic adsorption ability and consequently the useful life of the adsorbent.
出处 《Journal of Environmental Science and Engineering(A)》 2013年第12期744-752,共9页 环境科学与工程(A)
关键词 Arsenic removal iron activation aluminosilicates. 硅铝酸盐 地下水 铁矿 活化 除砷 天然 SEM-EDS 矿物结构
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  • 1A. Mukherjee, P. Bhattacharya, A. Fryar, Arsenic and other toxic elements in surface and groundwater systems, Applied Geochemistry 26 (2011) 415-420. 被引量:1
  • 2H. Nicolli, J. Bundschuh, M. Blanco, O. Tujchneider, H. Panarello, C. Dapefia, et al., Arsenic and associated trace-elements in groundwater from the Chaco-Pampean plain, Argentina, Science of the Total Environment 429 (2012) 36-56. 被引量:1
  • 3P. Smedley, D. Kinninburgh, A review of the source, distribution and behavior of arsenic in natural waters, Applied Geochemistry 17 (2002) 517-568. 被引量:1
  • 4J. Bundschuh, P. Bhattacharya, D. Chandrasekharam, Remediation of arsenic-rich groundwater, in: Natural Arsenic in Groundwater: Occurrence, Remediation and Management, Taylor & Francis Group, London, 2005. 被引量:1
  • 5A.Malik, Z. Khan, Q. Mahmood, S. Nasreen, Z. Bhatti, Perspectives of low cost arsenic remediation of drinking water in Pakistan and other countries, Journal of Hazardous Materials 168 (2009) 1-12. 被引量:1
  • 6J. Bundschuh, P. Bhattacharya, O. Sracek, M. Mellano, A. Ramirez, A. Storniolo, et al., Arsenic removal from groundwater of the Chaco-Pampean Plain (Argentina) using natural geological materials as adsorbents, Part A, Journal of Environmental Science and Health 46 (2011) 1297-1310. 被引量:1
  • 7D. Giles, M. Mohapatra, T. Issa, S. Anand, P. Singh, Iron and aluminium based adsorption strategies for removing arsenic from water, Journal of Environmental Management 92 (2011) 3011-3022. 被引量:1
  • 8S. Aredes, B. Klein, M. Pawlik, The removal of arsenic from water using natural iron oxide minerals, Journal of Cleaner Production 29-30 (2012) 208-213. 被引量:1
  • 9H. Guo, D. Sttiben, Z. Berner, Q. Yu, Characteristics of arsenic adsorption from aqueous solution: Effect of arsenic species and natural adsorbents, Applied Geochemistry 24 (2009) 657-663. 被引量:1
  • 10H. Altundogan, S. Altundogan, F. Tumen, M. Bildik, Arsenic removal from aqueous solutions by adsorption on red mud, Waste Management 20 (2000) 761-767. 被引量:1

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