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Author:

Li, Xing (Li, Xing.) | Fan, Qian (Fan, Qian.) | Yang, Yan-Ling (Yang, Yan-Ling.) (Scholars:杨艳玲)

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Abstract:

Removal of trace phosphorus in water is investigated by iron-aluminum composited adsorbent. Adsorption mechanism of phosphorus removal is approached by analysis methods such as particle size analysis, zeta potential and scanning electron microscopy. Results show that the absorbent is provided with more effective phosphorus removal efficiency, which is clearly better than those of Fe2O3 and active aluminum oxide (7-Al2O3) under the same condition. When initial ρ(PO43--P) is 0.3 mg/L, the adsorption capacity is as high as about 1.5 times of Fe2O3 and 2.5 times of γ-Al2O3. The adsorbent is proved with property of hyperfine powder. The specific surface area reaches 184.45 m2/g, which is 9.15 times as large as that of Fe2O3. One of the main reason of effective adsorption to phosphorus is that aluminum embedment and lattice disruption and micro-crystallization caused by grinding during preparation process. The zero potential is 6.2. Another main reasons of effective adsorption to phosphorus is no-specific and strong specific adsorption existed on adsorbent surface in water treatment process.

Keyword:

Crystal lattices Crystallization Iron Particle size analysis Adsorption Particles (particulate matter) Aluminum Trace elements Scanning electron microscopy Water treatment Zeta potential Specific surface area Adsorbents

Author Community:

  • [ 1 ] [Li, Xing]Beijing Key Laboratory of Water Quality Science and Water Environment Recovery Engineering, College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100022, China
  • [ 2 ] [Fan, Qian]Beijing Key Laboratory of Water Quality Science and Water Environment Recovery Engineering, College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100022, China
  • [ 3 ] [Yang, Yan-Ling]Beijing Key Laboratory of Water Quality Science and Water Environment Recovery Engineering, College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100022, China

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Source :

Journal of Beijing University of Technology

ISSN: 0254-0037

Year: 2008

Issue: 3

Volume: 34

Page: 310-313

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 8

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