About: Jute nanofibre as a natural biosorbent for efficient remediation of Hg2+ ion from aqueous environment     Goto   Sponge   NotDistinct   Permalink

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  • The biosorption characteristics of mercury ions from aqueous solution using jute nanofibres, cellulose-based natural fibres, were explored as a function of pH, nanofibre concentration, contact time and temperature. Jute nanofibres were assessed by various spectroscopy and microscopy techniques. The maximum biosorption capacity of the fibre calculated by the Langmuir model was found to be 85.5 mg/g. The adsorption experiments revealed that ion-exchange and complexation play a principal role in the biosorption process. The present experimental evidence implies that jute nanofibres could be a potential natural biomaterial for the removal of environmental contaminations from textile and chemical industries.
  • The biosorption characteristics of mercury ions from aqueous solution using jute nanofibres, cellulose-based natural fibres, were explored as a function of pH, nanofibre concentration, contact time and temperature. Jute nanofibres were assessed by various spectroscopy and microscopy techniques. The maximum biosorption capacity of the fibre calculated by the Langmuir model was found to be 85.5 mg/g. The adsorption experiments revealed that ion-exchange and complexation play a principal role in the biosorption process. The present experimental evidence implies that jute nanofibres could be a potential natural biomaterial for the removal of environmental contaminations from textile and chemical industries. (en)
Title
  • Jute nanofibre as a natural biosorbent for efficient remediation of Hg2+ ion from aqueous environment
  • Jute nanofibre as a natural biosorbent for efficient remediation of Hg2+ ion from aqueous environment (en)
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  • Jute nanofibre as a natural biosorbent for efficient remediation of Hg2+ ion from aqueous environment
  • Jute nanofibre as a natural biosorbent for efficient remediation of Hg2+ ion from aqueous environment (en)
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  • RIV/46747885:24410/12:#0001297!RIV13-MSM-24410___
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  • 143976
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  • RIV/46747885:24410/12:#0001297
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  • Jute Nanofibres; Hg Biosorption; Adsorption Kinetics (en)
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  • [656DDE7BD39E]
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  • Militký, Jiří
  • Černík, Miroslav
  • Baheti, Vijay
  • Padil, Vinod Vellora Thekkae
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  • Technická univerzita v Liberci
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  • 978-80-7372-913-4
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  • 24410
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