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    • 7. 发明授权
    • Method of generating heat using catalytic material
    • 使用催化材料产生热量的方法
    • US5626689A
    • 1997-05-06
    • US536198
    • 1995-09-29
    • Jack H. Taylor, Jr.
    • Jack H. Taylor, Jr.
    • B01D53/94B01J21/14B01J21/16B01J23/00B01J23/02B01J23/745B01J29/00C10L1/12C10L10/02C21D9/00C21D6/00C21D5/00
    • B01J23/745B01J21/14B01J21/16B01J23/002B01J23/02B01J29/00C10L1/12C10L10/02B01D2255/906C10L1/1233C10L1/1291
    • This invention relates to a catalytic fuel composition capable of reducing pollutants in the combustion gasses generated upon combustion of the same. A catalytic material is combined with a liquid, petroleum-based fuel, mixed and solid particles are separated out to give the catalytic fuel product. The catalytic material predominantly comprises a plagioclase feldspar belonging mainly to the albiteanorthite series, and contains small amount of mica, kaolinite and serpentine, and optionally contains magnetite. An alloy material is also disclosed, comprising a mixture of the above-described catalytic material and a metal. The alloy material exhibits unique properties relative to the metal component alone, such as increased tensile strength, improved heat resistance, improved acid resistance, improved corrosion resistance, as well as exhibiting unusual conductive properties. The catalytic material in either its native state, a state from which magnetite has been removed, or in an alloy form is also capable of generating heat upon being subjected to reduced (sub-atmospheric) pressure conditions in a controlled environment.
    • 本发明涉及一种催化燃料组合物,其能够减少在其燃烧时产生的燃烧气体中的污染物。 催化材料与液体石油基燃料组合,混合和固体颗粒被分离出来以产生催化燃料产物。 催化材料主要包括主要属于白云母长石型系列的斜长石长石,含有少量云母,高岭石和蛇纹石,并且任选地含有磁铁矿。 还公开了一种合金材料,其包括上述催化材料和金属的混合物。 合金材料相对于单独的金属组分具有独特的性能,例如增加的拉伸强度,改善的耐热性,改善的耐酸性,改进的耐腐蚀性以及显示出不寻常的导电性能。 在其天然状态,从中除去磁铁矿的状态或合金形式的催化材料也可以在受控环境中经受还原(亚大气压)压力条件时产生热量。