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Core-Shell Nanofibrous Materials with High Particulate Matter Removal Efficiencies and Thermally Triggered Flame Retardant Properties

Overview
Journal ACS Cent Sci
Specialty Chemistry
Date 2018 Aug 1
PMID 30062118
Citations 10
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Abstract

Dust filtration is a crucial process for industrial waste gas treatment. Great efforts have been devoted to improve the performance of dust filtration filters both in industrial and fundamental research. Conventional air-filtering materials are limited by three key issues: (1) Low filtration efficiency, especially for particulate matter (PM) below 1 μm; (2) large air pressure drops across the filter, which require a high energy input to overcome; and (3) safety hazards such as dust explosions and fires. Here, we have developed a "smart" multifunctional material which can capture PM with high efficiency and an extremely low pressure drop, while possessing a flame retardant design. This multifunctionality is achieved through a core-shell nanofiber design with the polar polymer Nylon-6 as the shell and the flame retardant triphenyl phosphate (TPP) as the core. At 80% optical transmittance, the multifunctional materials showed capture efficiency of 99.00% for PM and >99.50% for PM, with a pressure drop of only 0.25 kPa (0.2% of atmospheric pressure) at a flow rate of 0.5 m s. Moreover, during direct ignition tests, the multifunctional materials showed extraordinary flame retardation; the self-extinguishing time of the filtrate-contaminated filter is nearly instantaneous (0 s/g) compared to 150 s/g for unmodified Nylon-6.

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References
1.
Liu C, Hsu P, Lee H, Ye M, Zheng G, Liu N . Transparent air filter for high-efficiency PM2.5 capture. Nat Commun. 2015; 6:6205. DOI: 10.1038/ncomms7205. View

2.
Liu K, Liu W, Qiu Y, Kong B, Sun Y, Chen Z . Electrospun core-shell microfiber separator with thermal-triggered flame-retardant properties for lithium-ion batteries. Sci Adv. 2017; 3(1):e1601978. PMC: 5235334. DOI: 10.1126/sciadv.1601978. View

3.
Dominici F, Greenstone M, Sunstein C . Science and regulation. Particulate matter matters. Science. 2014; 344(6181):257-9. PMC: 4206184. DOI: 10.1126/science.1247348. View

4.
Lin T, Krishnaswamy G, Chi D . Incense smoke: clinical, structural and molecular effects on airway disease. Clin Mol Allergy. 2008; 6:3. PMC: 2377255. DOI: 10.1186/1476-7961-6-3. View

5.
Betha R, Behera S, Balasubramanian R . 2013 Southeast Asian smoke haze: fractionation of particulate-bound elements and associated health risk. Environ Sci Technol. 2014; 48(8):4327-35. DOI: 10.1021/es405533d. View