A resin-based nanocomposite adsorbent for deep removal of trace fluorine in water and its preparation method and application
A nano-composite and adsorbent technology, applied in chemical instruments and methods, adsorbed water/sewage treatment, water pollutants, etc., can solve problems such as the large influence of natural organic matter and the influence of fluorine removal effect, and achieve high loading and small size. , Improve the effect of adsorption area
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Embodiment 1
[0030] With dried 10g tertiary aminated ultra-high cross-linked polystyrene resin (tertiary amino group content is 0.8mmol / g, organic framework pore volume is 1.0cm 3 / g, the specific surface area is 800m 2 / g) into 30gZrOCl 2 ·8H 2 O. 200 mL of a mixed solution of 10 g HCl and 60 g ethanol was evaporated to dryness with stirring. Then sequentially add 5% NaOH and 5% NaCl solution for transformation, wash with water, wash with alcohol, and then dry to obtain a resin-based nano-zirconia composite material (nano-composite adsorbent).
[0031] After acidification and digestion, the zirconium content in the composite material is measured to be 12wt% by inductively coupled plasma emission spectroscopy (ICP-AES). Observation by a transmission electron microscope shows that the particle size of the zirconium oxide nanoparticles in the composite material is 10-80nm. by N 2 -Adsorption-desorption test measures the pore volume of the nanocomposite to be 0.6cm 3 / g, the specific sur...
Embodiment 2
[0034] With dried 10g tertiary aminated ultra-high cross-linked polystyrene resin (tertiary amine content is 0.8mmol / g, organic framework pore volume is 1.0cm 3 / g, the specific surface area is 800m 2 / g) into 30g ZrOCl 2 ·8H 2 O. 200 mL of a mixed solution of 10 g HCl and 60 g ethanol was evaporated to dryness with stirring. Then sequentially add 5% NaOH and 5% NaCl to transform, wash with water, wash with alcohol, and then dry to obtain a resin-based nano-zirconia composite material.
[0035] After acidification and digestion, the content of zirconium in the composite material is measured to be 12wt% by inductively coupled plasma emission spectroscopy (ICP-AES). Observation by transmission electron microscopy shows that the particle size of the zirconia nanoparticles in the composite material is 10-80nm . by N 2 -Adsorption-desorption test measures the pore volume of the nanocomposite to be 0.6cm 3 / g, the specific surface area is 900m 2 / g, the pores below 2nm accoun...
Embodiment 3
[0038] With dried 10g tertiary aminated ultra-high cross-linked polystyrene resin (tertiary amine content is 0.2mmol / g, pore volume is 1.2cm 3 / g, the specific surface area is 1200m 2 / g) into 25g ZrOCl 2 ·8H 2 O. 200 mL of a mixed solution of 10 g HCl and 60 g ethanol was evaporated to dryness with stirring. Then sequentially add 3% NaOH and 3% NaCl to transform, wash with water, wash with alcohol, and then dry to obtain a resin-based nano-zirconia composite material.
[0039] After acidification and digestion, the content of zirconium in the composite material is measured to be 10wt% by inductively coupled plasma emission spectroscopy (ICP-AES). Observation by transmission electron microscopy shows that the particle size of the zirconia nanoparticles in the composite material is 10-80nm . by N 2 -Adsorption-desorption test measures the pore volume of the nanocomposite to be 0.9cm 3 / g, the specific surface area is 1500m 2 / g, the pores below 2nm accounted for 96% of t...
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