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Biodegradable Polybutyrolactam Microfiber Membrane as a Highly Efficient Air Filter for PM2.5 Particle Filtration AITranslate

East China University of Science and Technology; East China University of Science and Technology; Shanghai Jiaotong University; East China University of Science and Technology; East China University of Science and Technology; East China University of Science and Technology; East China University of Science and Technology
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Publisher: ACS
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Abstract AITranslate

Particulate matter (PM) pollution poses a significant threat to human health on a global scale. However, current conventional air filtration materials, made from nonbiodegradable petroleum-based components, contribute to resource consumption and waste emissions, and are unable to meet the public’s demand for environmental protection and energy conservation. For the first time, we report environmentally friendly biobased biodegradable polybutyrolactam (also known as PA4) electrospun air filters with superior mechanical properties and high interception efficiency. Compared with the commercial particulate filtration efficiency of 95% polypropylene melt-blown nonwoven fabric (PFE95), the successfully prepared green biobased degradable PA4 electrospun microfiber membrane has a lighter texture (<3 mg/cm2) and high porosity (>80%) with as high as 99.85% for PM 2.5 filtration performance. In addition, the PA4 electrospun microfiber membranes also have very stable outstanding mechanical properties especially on tensile strength (≥4.25 MPa) and Young’s modulus (≥34.82 MPa) at the same time. The biodegradability of PA4 electrospun microfiber membranes in campus soil was investigated, and the weight loss was approximately 88% within 49 days. This would not only make it a promising candidate for green and pollution-free air filtration but also provide insights into the design and development of composite membranes for multifuntionalities for various applications.

KeyWords AITranslate

biobased degradable polybutyrolactam electrospun air filtration PM 2.5
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Basic Information:

DOI:https://doi.org/10.1021/acsapm.3c02128

Chinese Library Classification Number:

Citation Information:

Particulate matter (PM) pollution poses a significant threat to human health on a global scale. However, current conventional air filtration materials, made from nonbiodegradable petroleum-based components, contribute to resource consumption and waste emissions, and are unable to meet the public’s demand for environmental protection and energy conservation. For the first time, we report environmentally friendly biobased biodegradable polybutyrolactam (also known as PA4) electrospun air filters with superior mechanical properties and high interception efficiency. Compared with the commercial particulate filtration efficiency of 95% polypropylene melt-blown nonwoven fabric (PFE95), the successfully prepared green biobased degradable PA4 electrospun microfiber membrane has a lighter texture (<3 mg/cm2) and high porosity (>80%) with as high as 99.85% for PM 2.5 filtration performance. In addition, the PA4 electrospun microfiber membranes also have very stable outstanding mechanical properties especially on tensile strength (≥4.25 MPa) and Young’s modulus (≥34.82 MPa) at the same time. The biodegradability of PA4 electrospun microfiber membranes in campus soil was investigated, and the weight loss was approximately 88% within 49 days. This would not only make it a promising candidate for green and pollution-free air filtration but also provide insights into the design and development of composite membranes for multifuntionalities for various applications.

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GB/T 7714-2015 [1] Fangke Zhan, Ziying Wang, Junyu Shi, et al. ACS Applied Polymer Materials, 2024(6). DOI:10.1021/acsapm.3c02128.
MLA [1] Fangke Zhan, et al., ACS Applied Polymer Materials, no. 6, 2024, https://doi.org/10.1021/acsapm.3c02128.
APA [1] Fangke Zhan, Ziying Wang, Junyu Shi, Di Zhang, Mingda Wang, Zhenwei Yi, & Liming Zhao. (2024). ACS Applied Polymer Materials(6). https://doi.org/10.1021/acsapm.3c02128
IEEE [1] Fangke Zhan, Ziying Wang, Junyu Shi, Di Zhang, Mingda Wang, Zhenwei Yi, and Liming Zhao, ACS Applied Polymer Materials, no. 6, 2024, doi: 10.1021/acsapm.3c02128. keywords: {biobased degradable;polybutyrolactam;electrospun;air filtration;PM 2.5}