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Efficient removal of ceftriaxone sodium by a UiO-66/bamboo activated carbon composite: preparation, characterization, and adsorption mechanism

A journal article describes the efficient removal of ceftriaxone sodium using a UiO-66/bamboo activated carbon composite. The paper covers the composite's preparation, characterization, and the adsorption mechanism.

Side view of an Aluminium composite panel (ACP), also known as Dibond, about 2.7 mm in thickness. Retouching. Layers from left to right: 1) White coating layer (very thin, perhaps coil coated) 2) Aluminium sheet (silvery, back) 3) Polyethylene core material (Brown) 4) Aluminium sheet (silvery, front) 5) White coating layer (very thin, perhaps coil coated)
Illustrative image: Side view of an Aluminium composite panel (ACP), also known as Dibond, about 2.7 mm in thickness. Retouching. Layers from left to right: 1) White coating layer (very thin, perhaps coil coated) 2) Aluminium sheet (silvery, back) 3) Polyethylene core material (Brown) 4) Aluminium sheet (silvery, front) 5) White coating layer (very thin, perhaps coil coated) — Temdor/Wikimedia Commons, CC BY-SA 4.0

Categories: science-and-space, environment-and-climate

Generated scores

Scores are based on the cited reporting and use a 1–10 scale. Read the methodology.

Confidence
6/10
Geographic reach
1/10
Global importance
3/10
Impact magnitude
3/10
Positivity
7/10
Urgency
2/10

Why it matters

The study reports a method for removing the antibiotic ceftriaxone sodium using a composite material.

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