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    • 7. 发明申请
    • METHOD FOR PREPARING ULTRAHIGH-PURITY SILICON CARBIDE POWDER
    • 制备超高纯度碳化硅粉末的方法
    • US20170073233A1
    • 2017-03-16
    • US15072724
    • 2016-03-17
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Sang Whan PARKMi Rae YOUMSung Il YOUNGyoung Sun CHO
    • C01B31/36
    • C01B31/36C01B32/956C01P2004/51C01P2004/60
    • The present invention relates to a method for preparing an ultrahigh-purity silicon carbide powder, more particularly to a method for preparing an ultrahigh-purity silicon carbide granular powder by preparing a gel wherein a silicon compound and a carbon compound are uniformly dispersed via a sol-gel process using a liquid state silicon compound and a solid or liquid state carbon compound of varying purities as raw materials, preparing a silicon dioxide-carbon (SiO2—C) composite by pyrolyzing the prepared gel, preparing a silicon carbide-silicon dioxide-carbon (SiC—SiO2—C) composite powder via two-step carbothermal reduction of the prepared silicon dioxide-carbon composite, adding a silicon metal and then conducting carbonization and carbothermal reduction at the same time by heat treating, thereby growing the synthesized silicon carbide particle with an increased yield of the silicon carbide.
    • 本发明涉及一种制备超高纯度碳化硅粉末的方法,更具体地说,涉及通过制备其中硅化合物和碳化合物通过溶胶均匀分散的凝胶制备超高纯度碳化硅颗粒粉末的方法 使用液态硅化合物和不同纯度的固体或液态碳化合物作为原料,通过热解制备的凝胶制备二氧化硅 - 碳(SiO 2 -C)复合物,制备碳化硅 - 二氧化硅 - 碳(SiC-SiO2-C)复合粉末通过二次碳热还原制备的二氧化硅 - 碳复合材料,加入硅金属,然后通过热处理同时进行碳化和碳热还原,从而生长合成碳化硅 具有增加的碳化硅产率的颗粒。
    • 8. 发明申请
    • CARBON FELT IMPREGNATED WITH INORGANIC PARTICLES AND METHOD FOR PRODUCING THE SAME
    • 用无机颗粒浸渍的碳纤维毡及其制造方法
    • US20150255796A1
    • 2015-09-10
    • US14476907
    • 2014-09-04
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Chang-Sam KIMSang Whan PARKByung Won CHOKyoung Ran LIM
    • H01M4/62H01M4/80H01M4/04
    • H01B1/04B01J13/0034B01J13/0039B01J13/0047H01M4/0416H01M4/1397H01M4/663H01M4/664H01M4/667H01M4/806H01M4/96H01M10/3909H01M10/3954
    • Disclosed is a carbon felt impregnated with inorganic particles. The impregnated carbon felt can be used together with sulfur in a cathode of a sodium-sulfur (Na—S) battery. Also disclosed is a method for producing the impregnated carbon felt. According to exemplary embodiments, the problem of the prior art can be solved in which inorganic particles such as alumina particles are not directly adhered to carbon felts, thus necessitating complicated processes. In addition, a slurry including an inorganic binder and alumina particles can be used to directly coat the alumina particles on the surface of a carbon felt, making the production procedure very simple. Furthermore, the use of the carbon felt surface coated with the alumina particles in a Na—S battery increases the wicking of sodium polysulfides, suppresses the accumulation of sulfur as an insulator on the surface of beta-alumina as an electrolyte, and inhibits non-uniform aggregation of sulfur or sodium polysulfides on the carbon felt, so that the concentration polarization of charges can be reduced without a significant increase in the internal resistance of the battery, achieving high utilization efficiency of sulfur as a reactant.
    • 公开了用无机颗粒浸渍的碳毡。 浸渍的碳毡可以与硫磺一起在钠 - 硫(Na-S)电池的阴极中使用。 还公开了一种生产浸渍碳毡的方法。 根据示例性实施例,可以解决现有技术的问题,其中诸如氧化铝颗粒的无机颗粒不直接粘附到碳毡上,因此需要复杂的工艺。 此外,可以使用包含无机粘合剂和氧化铝颗粒的浆料直接涂覆在碳毡表面上的氧化铝颗粒,使得生产过程非常简单。 此外,使用在Na-S电池中涂覆有氧化铝颗粒的碳毡表面增加多硫化钠的芯吸,抑制作为电解质的β-氧化铝表面上作为绝缘体的硫的积聚, 在碳毡上均匀聚集硫或多硫化钠,从而可以降低电荷的浓度极化,而不会显着提高电池内阻,实现硫作为反应物的高利用率。