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The thiol group modified fibers not only can efficiently remove heavy metal ions (Pb2+ and Cd2+) from water at a high flux, but also display high sorption capacity under sorption equilibrium conditions.
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Between the modified fibers, EA-modified fiber showed higher exhaustion of dye than that of HEMA-modified fiber.
Though the modified fibers showed better color fastness properties in sunlight, the dyeability of the modified fibers somewhat decreased.
The modified fibers were used with the fiber diameter 0.027 cm (270 μm) and porosity 30 50 %.
Open image in new window Fig. 2 FT-IR spectra of bleached, EA modified and HEMA modified fibers.
Generally, the fiber modifications did not have the desired effect of improving the mechanical properties further, while for the thermal properties, there was a significant difference when chemically modified fibers were used.
Between the unmodified and modified fibers, the later one showed better thermal stability.
Alkali-activated bleached and modified fibers were cut into equal pieces 25 cm in length.
When fluorescence intensity was quantified, modified fibers showed approximately two orders of magnitude higher fluorescence intensity relative to control fibers.
Open image in new window Fig. 3 SEM images of jute fibers: a Bleached fiber, b EA modified fiber, and c HEMA modified jute fiber.
The improvement of SEM image of modified fiber.
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