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Ecological engineering, 2014-12, Vol.73, p.798-808
2014
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Autor(en) / Beteiligte
Titel
Fluoride removal from ground water using magnetic and nonmagnetic corn stover biochars
Ist Teil von
  • Ecological engineering, 2014-12, Vol.73, p.798-808
Ort / Verlag
Amsterdam: Elsevier B.V
Erscheinungsjahr
2014
Quelle
Alma/SFX Local Collection
Beschreibungen/Notizen
  • [Display omitted] •Water defluoridation was achieved using slow pyrolysis corn stover biochar.•Magnetic and nonmagnetic corn stover biochars were prepared, characterized and used.•Magnetic separation allows the biochar recovery and reuse.•Fluoride was successfully remediated from ground water.•These biochars can replace the existing adsorbents used for water defluoridation. Slow pyrolysis corn stover biochar was prepared at 500°C in an ingeniously developed reactor. Biooil was also collected. Corn stover biochar was magnetized by mixing aqueous biochar suspension with aqueous Fe3+/Fe2+ solution, followed by NaOH treatment. Corn stover biochar (CSBC) and magnetic corn stover biochar (MCSBC) were characterized by pHzpc, SBET, X-ray, FT-IR, SEM, SEM-EDX, TEM, EDXRF and Raman analyses. Magnetic moment of MCSBC was also measured. Both the biochars were utilized for fluoride removal to replace the existing commercially available costly adsorbents. Maximum fluoride removal was achieved at pH 2.0. Adsorption studies were carried out at 25, 35 and 45°C. Fluoride removal on CSBC and MCSBC was decreased with rise in temperature [CSBC: Q025=6.42mg/g; Q035=5.17mg/g; Q025=4.99mg/g and MCSBC: Q025=4.11mg/g; Q035=3.45mg/g; Q025=3.41mg/g]. Pseudo-first order kinetics best fit the fluoride adsorption data. Both biochars successfully remediated fluoride from contaminated ground water.

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