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Literature reports have documented successful synthesis of such porous lanthanide frameworks with potential application for gas storage.
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As a demonstration of potential application for gas-sensing materials, the mesoporous α-Fe2O3 nanostructures exhibited short response/recovery time within 5/10 s, and low response concentration of 1 ppm toward acetone vapors.
As a demonstration of potential application for gas-sensing materials, the porous flower-like superstructures exhibited short response/recovery time within 6/3 s, and presented a much higher gas response than α-Fe2O3 nanoparticles aggregations towards different concentrations of ethanol, methanol and acetone.
Applications for gas or fluid filtration, textile applications, carriers for catalysts and scaffolds for tissue engineering are selected examples.
Semiconducting metal oxide (SMO) chemiresistive sensors have applications for gas detection in chemical, biological, medical and environmental fields.
There are numerous applications for gas turbine discs in the aerospace industry such as in turbojet engines.
Historically, membrane science and technology have found a wide variety of industrial applications for gas separation and water purification.
Metal-organic frameworks (MOFs) are an emerging class of porous materials with potential applications for gas storage and separation.
This review is intended to be useful for researchers who are interested in designing water-resistant PCPs and exploring promising applications for gas separation.
Polyvinyl chloride (PVC) and more recently chlorinated-PVC (CPVC) pipes are extensively used for water distribution, wastewater and in limited applications for gas distribution.
The adsorption results suggest their potential applications for gas storage and toxic organic vapor removal as reusable and thermochemically stable materials.
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