Rodaev Vyacheslav V, Razlivalova Svetlana S, Tyurin Alexander I, Vasyukov Vladimir M
Institute for Nanotechnology and Nanomaterials, Derzhavin Tambov State University, Internatsionalnaya Str. 33, 392000 Tambov, Russia.
Nanomaterials (Basel). 2022 May 14;12(10):1677. doi: 10.3390/nano12101677.
The nanofibrous CaO sorbent for high-temperature CO capture was fabricated by the calcination of electrospun composite filaments containing calcium acetylacetonate and polyacrylonitrile as a calcium-oxide precursor and a binder polymer, respectively. The calcination was carried out in air to prevent PAN carbonization and to obtain pure CaO nanofibers. The resulting mats of CaO nanofibers with the average diameter of 130 nm were characterized by a specific surface area of 31 m/g, a CO-uptake capacity of 16.4 mmol/g at the carbonation temperature of 618 °C, a hardness of 1.87 MPa, and the indentation Young's modulus of 786 MPa. The low decarbonation temperature makes the fabricated sorbent promising, for example, for the calcium-looping technology of CO removal from the hot exhaust gases of fossil-fueled power plants.
用于高温二氧化碳捕集的纳米纤维氧化钙吸附剂,是通过煅烧电纺复合长丝制备而成的,该复合长丝分别含有乙酰丙酮钙和聚丙烯腈,作为氧化钙前驱体和粘结聚合物。煅烧在空气中进行,以防止聚丙烯腈碳化并获得纯氧化钙纳米纤维。所得平均直径为130纳米的氧化钙纳米纤维毡的比表面积为31平方米/克,在618℃的碳酸化温度下二氧化碳吸收容量为16.4毫摩尔/克,硬度为1.87兆帕,压痕杨氏模量为786兆帕。较低的脱碳温度使得制备的吸附剂具有应用前景,例如用于从化石燃料发电厂的热废气中脱除二氧化碳的钙循环技术。