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    • 3. 发明授权
    • Method of recycling mixed colored cullet into amber, green, or flint
glass
    • 将混合的彩色碎玻璃回收成琥珀色,绿色或火石玻璃的方法
    • US5718737A
    • 1998-02-17
    • US683353
    • 1996-07-18
    • Duane A. Mosch
    • Duane A. Mosch
    • C04B35/00C03B5/16C03B23/00C03C1/00C03C1/02C03C1/10C03C3/078C03C3/087C03C6/00C03C6/02C03C6/04C03C6/06C03C6/08C03C6/10C03C8/14C03C15/00
    • C03C1/022C03C1/002C03C1/10
    • Mixed colored cullet glass, which generally contains amounts of green, amber and flint (colorless) glasses, is recycled into amber colored glass by regulating the additive amounts of amounts of iron, carbon, sulfur, and sulfur compounds in the mixture to impart the desired reddish-brown hue. The color green may be selectively decolorized from the mixed colored cullet and the mixed colored cullet may be colorized for the color amber, thereby rendering the decolorized mixed colored cullet substantially amber colored for use in amber colored glass production, such as carbon-sulfur soda lime amber glass. The technique of the invention is also used to produce recycled green or flint glass from unsorted mixed colored cullet glass. The invention is particularly useful in producing amber colored containers or bottles for beverages that require protection from the deteriorating effects of light, such as beer.
    • 通常含有绿色,琥珀色和燧石(无色)玻璃的混合色玻璃玻璃通过调节混合物中铁,碳,硫和硫化合物的添加量而被再循环到琥珀色玻璃中,以赋予所需的 红棕色色调。 颜色绿可以从混合的彩色碎玻璃中选择性地脱色,并且混合的彩色碎玻璃可以着色为琥珀色,从而使脱色的混合着色的碎玻璃基本上是琥珀色的,用于琥珀色的玻璃生产,例如碳 - 苏打石灰 琥珀色玻璃 本发明的技术还用于从未排序的混合着色的玻璃碎片玻璃生产回收的绿色或火石玻璃。 本发明特别可用于生产用于饮料的琥珀色的容器或瓶子,其需要防止诸如啤酒的光的劣化影响。
    • 4. 发明授权
    • Improving the life of a catalyst used to process hydrocarbon containing
feed streams
    • 改善用于处理含烃进料流的催化剂的寿命
    • US4715948A
    • 1987-12-29
    • US581458
    • 1984-02-17
    • Edward L. Sughrue, IISimon G. KukesRobert J. Hogan
    • Edward L. Sughrue, IISimon G. KukesRobert J. Hogan
    • C10G45/04C10G45/08C10G45/00C03C6/08
    • C10G45/08C10G45/04
    • In a hydrofining process, the life of a catalyst composition comprising a support selected from the group comprising alumina, silica and silica-alumina and a promoter comprising at least one metal selected from Group VIB, Group VIIB, and Group VIII of the periodic table is improved by mixing a decomposable compound of molybdenum with the hydrocarbon-containing feed stream prior to contacting the hydrocarbon-containing feed stream with the catalyst composition. The molybdenum in the decomposable compound is in valence state of zero. A sufficient quantity of the decomposable compound of molybdenum is added to the hydrocarbon-containing feed stream to result in a concentration of molybdenum in the range of about 1 to about 60 ppm. The introduction of the decomposable compound of molybdenum may be commenced when the catalyst is new, partially deactivated or spent with a beneficial result occurring in each case.
    • 在加氢精制方法中,包含选自氧化铝,二氧化硅和二氧化硅 - 氧化铝的载体的催化剂组合物和包含选自元素周期表第VIB族,第VIIB族和第Ⅷ族中的至少一种金属的促进剂的催化剂组合物的寿命是 在将含烃进料流与催化剂组合物接触之前,通过将钼的可分解化合物与含烃进料流混合来改进。 可分解化合物中的钼的价态为零。 将足够量的可分解钼的化合物加入到含烃进料流中,导致钼浓度在约1至约60ppm的范围内。 当催化剂是新的,部分失活的或者在每种情况下都会产生有益结果的情况下,可以开始引入可分解的钼化合物。
    • 6. 发明授权
    • Charging load for making TFT glass and method of making same
    • 制作TFT玻璃的充电负载及其制作方法
    • US09102560B2
    • 2015-08-11
    • US14080910
    • 2013-11-15
    • SIBELCO ASIA PTE. LTD.
    • Chen Tsung ChouClaud Eric Westbrook, III
    • C03C6/08C03B1/00C03C3/087C03C1/02C03B1/02
    • C03B1/00C03B1/02C03C1/026C03C3/087Y02P40/57Y10T428/2982
    • A charging load and a method of making the same wherein the charging load includes at least three diverse mineral raw materials in pre-selected percentages, the charging load being transformable into an aluminosilicate glass product by heating to a temperature of at least 1,200° C. and being a mass of structurally stabilized individual beads, where each of the beads is a composite of the at least three diverse mineral raw materials made non-friable by a partial sintering process, each bead of the mass containing a homogeneous mixture of ground and sized particles of the at least three diverse mineral raw materials, where the particles have a controlled maximum particle size of less than 30 microns and are mixed in each of the beads at the pre-selected percentages.
    • 一种充电负载及其制造方法,其中充电负载包括预选百分比中的至少三种不同的矿物原料,充电负载可通过加热至至少1,200℃的温度转化成铝硅酸盐玻璃制品。 并且是结构稳定的单个珠粒的质量,其中每个珠粒是通过部分烧结方法制成不易碎的至少三种不同的矿物原料的复合物,每个珠粒包含地面和尺寸的均匀混合物 所述至少三种不同矿物原料的颗粒,其中所述颗粒具有小于30微米的受控最大粒度,并以预选百分比混合在每个珠粒中。