Espinoza-Montero Patricio J, Montero-Jiménez Marjorie, Rojas-Quishpe Stalin, Alcívar León Christian David, Heredia-Moya Jorge, Rosero-Chanalata Alfredo, Orbea-Hinojosa Carlos, Piñeiros José Luis
Escuela de Ciencia Químicas, Pontificia Universidad Católica del Ecuador, Quito 17012184, Ecuador.
Facultad de Ciencias Químicas, Universidad Central del Ecuador, Quito 170521, Ecuador.
Nanomaterials (Basel). 2023 Feb 1;13(3):593. doi: 10.3390/nano13030593.
Air transports several pollutants, including particulate matter (PM), which can produce cardiovascular and respiratory diseases. Thus, it is a challenge to control pollutant emissions before releasing them to the environment. Until now, filtration has been the most efficient processes for removing PM. Therefore, the electrospinning procedure has been applied to obtain membranes with a high filtration efficiency and low pressure drop. This review addressed the synthesis of polymers that are used for fabricating high-performance membranes by electrospinning to remove air pollutants. Then, the most influential parameters to produce electrospun membranes are indicated. The main results show that electrospun membranes are an excellent alternative to having air filters due to the versatility of the process, the capacity for controlling the fiber diameter, porosity, high filtration efficiency and low-pressure drop.
空气携带多种污染物,包括颗粒物(PM),这些污染物可引发心血管疾病和呼吸道疾病。因此,在将污染物排放到环境之前对其进行控制是一项挑战。到目前为止,过滤一直是去除颗粒物最有效的方法。因此,静电纺丝工艺已被用于制备具有高过滤效率和低压降的膜。本综述探讨了用于通过静电纺丝制备高性能膜以去除空气污染物的聚合物的合成。然后,指出了制备静电纺丝膜最具影响力的参数。主要结果表明,由于该工艺的多功能性、控制纤维直径和孔隙率的能力、高过滤效率和低压降,静电纺丝膜是空气过滤器的极佳替代品。