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    • 1. 发明申请
    • Activated carbon separation and reuse
    • 活性炭分离和再利用
    • US20100075830A1
    • 2010-03-25
    • US12586263
    • 2009-09-17
    • Jiann-Yang HwangXiaodi HuangRichard Kauppila
    • Jiann-Yang HwangXiaodi HuangRichard Kauppila
    • B01J20/34
    • B01J20/20B01D2253/102B01D2259/40094B01D2259/40098B01J20/3416B01J20/3441H05B6/78H05B6/784H05B6/786
    • A method of treating spent sorbent from power plants containing materials including mercury absorbed from emission gases comprising putting said spent sorbent in an atmosphere isolated container or furnace chamber and heating said sorbent by microwave, radio frequency and/or infrared irradiation. The sorbent is heated to a temperature of at least the boiling point of the major contaminant, including mercury. No air or purge gas is added except to maintain safe pressure conditions, to control combustion of the sorbent and increase efficiency. The resulting vapor is released through an exhaust port of the chamber that leads to a condenser where mercury is condensed and separated. Other residual vapors are led to a scrubber for further cleansing and may be returned to the power plant for other applications. The hot treated sorbent is cooled down prior to contacting with air for later reuse in the power plant.
    • 一种处理来自发电厂的废弃吸附剂的方法,其包含含有从排放气体吸收的汞的材料,包括将所述废弃的吸附剂放置在气体隔离容器或炉室中,并通过微波,射频和/或红外辐射加热所述吸附剂。 将吸附剂加热到至少主要污染物的沸点(包括汞)的温度。 除了保持安全的压力条件,以控制吸附剂的燃烧并提高效率之外,不添加空气或吹扫气体。 所产生的蒸汽通过室的排气口释放,该排气口通向冷凝器,其中汞被冷凝和分离。 其他残余蒸气被引导到洗涤器进行进一步清洁,并且可以将其返回到发电厂以用于其它应用。 热处理的吸附剂在与空气接触之前被冷却,以便在发电厂中再次使用。
    • 9. 发明授权
    • Antimicrobial exfoliated vermiculite composite material and methods for preparing the same
    • 抗微生物脱落蛭石复合材料及其制备方法
    • US09150453B1
    • 2015-10-06
    • US12928101
    • 2010-12-03
    • Bowen LiJiann-Yang Hwang
    • Bowen LiJiann-Yang Hwang
    • C04B20/06C04B20/04A01N59/16
    • A01N59/20A01N59/16C01B33/38C01B33/42C04B14/206C04B20/06A01N25/08A01N25/12A01N25/34C04B14/202
    • An antimicrobial exfoliated vermiculite composite material is synthesized by impregnating the interlayers of exfoliated vermiculite through cation exchange and surface absorption with at least one of the following metal species: copper, silver, zinc, and manganese. Alternately, the antimicrobial material is synthesized by impregnating interlayers of unexfoliated vermiculite with said metal species and exfoliating the product thereafter. The metal species can be in ionic state, nanometer particles, and in the form of metal oxides, metal hydroxides, metal nitrides, metal carbides, metal phosphates, metal silicates, metal borides, metal sulfides, metal halides, metal hydrides, metal nitrates, metal carbonates, and metal sulfadiazines. Any mixture of these metal species in the exfoliated vermiculite can provide protection against a broad spectrum of pathogens. This antimicrobial material in any desired form, in whole or as an additive, can effectively self-decontaminate various materials or products as the antimicrobial metal ions slowly diffuse to the surface of the products.
    • 通过使用铜,银,锌和锰中的至少一种金属物质浸渍通过阳离子交换和表面吸收的剥离蛭石的夹层来合成抗微生物剥离的蛭石复合材料。 或者,抗微生物材料是通过将未剥离的蛭石的夹层浸入所述金属物质并随后将产品剥离而合成的。 金属物质可以是离子状态,纳米颗粒,金属氧化物,金属氢氧化物,金属氮化物,金属碳化物,金属磷酸盐,金属硅酸盐,金属硼化物,金属硫化物,金属卤化物,金属氢化物,金属硝酸盐, 金属碳酸盐和金属磺胺嘧啶。 脱落的蛭石中的这些金属物质的任何混合物可以提供针对广谱病原体的保护。 任何所需形式的全部或作为添加剂的抗微生物材料可以随着抗微生物金属离子缓慢扩散到产品的表面而有效地自身去污各种材料或产品。