4.7 Article

Entangled cellulose nanofibrils/nanosheets derived from native mexican agave for lead(II) ion removal

期刊

CELLULOSE
卷 27, 期 15, 页码 8785-8798

出版社

SPRINGER
DOI: 10.1007/s10570-020-03373-6

关键词

Biosorbent; Heavy metal uptake; Cellulosic biomass; Nanobiomaterials; Microfluidizer; Adsorption mechanisms

资金

  1. CONACYT (Consejo Nacional de Ciencia y Tecnologia)
  2. CONACYT through the Institutional Links-FONCICYT Program [276243]
  3. British Council Institutional Links programme (Newton Fund) [264232317]
  4. British Council through the Institutional Links-FONCICYT Program [276243]

向作者/读者索取更多资源

Cellulose nanofibrils (CNFs) produced from waste lignocellulosic biomass have emerged as a sustainable source material for high value-added applications. In the current study, previously unreported entangled cellulose nanofibril and nanosheet (CNF/CNS) were obtained usingAgave Tequilana Weber var. Azulleaves by means of a microfluidization process. These nanomaterials were investigated as potential biosorbents of Pb2+, for which three adsorption mechanisms were identified by XPS. At low initial concentrations of Pb2+(C-0 < 100 ppm), the adsorption-mechanism is governed by electrostatic interactions between carboxylate groups and Pb2+; meanwhile, at (C-0 = 1000 ppm) mono and bi-dentate complexes dominate the adsorption-mechanism. Finally, when 110 < C-0 < 1000 ppm, both mechanisms co-exist. The maximum adsorption capacity was 43.55 mg/g, according to the Langmuir model, while CNF/CNS showed the characteristic diffraction peaks of cellulose type II. Our results highlight the high potential of these novel CNF/CNS biosorbents in the treatment of wastewater contaminated with toxic metals and afford new insights on adsorption mechanisms. [GRAPHICS] .

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