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    • 1. 发明授权
    • Sewage water and solids treatment and disposal system
    • 污水和固体处理和处理系统
    • US5492621A
    • 1996-02-20
    • US216145
    • 1994-03-23
    • Robert L. Curtis
    • Robert L. Curtis
    • B01D1/00B01D3/42C02F1/04F23G7/00F23G7/06F23G7/07F26B17/20F26B23/02B01D1/14
    • F23G7/07B01D1/0017B01D3/42C02F1/048F23G7/001F23G7/066F26B17/20F26B23/024F23G2204/20F23G2207/114F23G2207/20F23G2207/40Y02P70/34Y02P70/40
    • Sewage water with entrained solids as an effluent is fed into the trough bottom shaped process tank that is a totally enclosed tank other than for inlets and outlets therefore. The system disposes of water from sewage effluents and also residual solids thereof and is fed sewage to a controlled depth in a tank trough with high temperatures used to sterilize the effluent. A two-speed motor driven mixer driven at low speed continually mixes and blend the sewage effluent at the same time air from a blower is bubbled through the mixture. Heat is added to increase water vapor saturation capability of the air flow through the system. The air/vapor mixture flows through a recuperative heat exchanger supported within the tank above the surface of sewage effluent contained therein, absorbing heat with flow, through a catalyst bed in a chamber with circulation through the heat exchanger and on out an exhaust vent with impurities oxidized and vented with air flow. Heating elements subject to power control heat the tank and the heat exchanger.
    • 因此,作为流出物的带有夹带固体的污水被输入到槽底形状的处理罐中,该槽是除了入口和出口之外的完全封闭的罐。 该系统处理来自污水流出物的水以及其残留固体,并将污水送入罐槽内的受控深度,高温用于对流出物进行灭菌。 以低速驱动的双速马达驱动混合器连续混合和混合污水流出物,同时来自鼓风机的空气鼓泡通过混合物。 添加热量以增加通过系统的空气流的水汽饱和能力。 空气/蒸气混合物流过容纳在其中的污水流出物表面之内的回热热交换器,其中包含的污水流出物表面吸收热量,通过室中的催化剂床,循环通过热交换器,并在排气口上带有杂质 氧化并通气。 受功率控制的加热元件加热罐和热交换器。
    • 10. 发明授权
    • Method of gasifying solid organic materials
    • 气固固体有机物的方法
    • US6120567A
    • 2000-09-19
    • US227897
    • 1994-04-15
    • Henry L. CordellDavid G. Galer
    • Henry L. CordellDavid G. Galer
    • F23G5/027F23G5/44F23K3/14F23G5/08
    • F23G5/444F23G5/027F23K3/14F23G2201/40F23G2202/103F23G2207/114F23G2207/20
    • A heating system for producing heat by the gasification of solid, organic biomass materials. A mass of such materials is maintained on a grate in a primary oxidation chamber of the catalytic type, and materials in such mass are gradually heated in a deficiency of oxidation for full oxidation of such materials to produce a gaseous, combustible effluent. The gaseous combustible effluent is transferred through an insulated exit duct to a secondary oxidation chamber where it is further oxidized to a fully oxidized state by burning. In one embodiment, the insulated exit duct has a restricted inlet portion within the primary oxidation chamber to serve as a flame deflector. The gaseous effluent from the secondary oxidation chamber is used as a heat source for a water tube boiler. A storage hopper is provided to store the biomass feed materials for delivery to the primary oxidation chamber. The bottom of the storage hopper is inverted and reciprocating plates are provided along the bottom of the storage hopper. The reciprocation of the reciprocating plates helps to keep the biomass feed materials in the storage hopper from bridging or compacting to promote the smooth flow of feed materials through the hopper. Counterrotating helical chipping blades can be provided within the hopper near the outlet thereof to reduce the size of any oversized or agglomerated portions of the biomass feed materials. The inner wall surface of the primary oxidation chamber is provided with a plurality of inwardly projecting members spaced along the periphery thereof for establishing a recirculating gaseous flow path in the primary oxidation chamber.
    • 一种通过固体有机生物质材料气化产生热量的加热系统。 这种材料的大量被保持在催化型初级氧化室中的炉排上,并且这种物质中的材料在氧化不足时被逐渐加热,以使这种材料完全氧化以产生气态的可燃性流出物。 气态可燃性流出物通过绝缘出口导管传递到二次氧化室,在其中通过燃烧将其进一步氧化成完全氧化状态。 在一个实施例中,绝缘出口管道在初级氧化室内具有限制的入口部分,用作火焰偏转器。 来自二次氧化室的气态流出物被用作水管锅炉的热源。 提供存储料斗以存储用于输送到一次氧化室的生物质进料。 存储料斗的底部倒置,沿储料斗底部设置往复板。 往复板的往复运动有助于保持储料斗中的生物质进料不被桥接或压实,以促进进料通过料斗的平稳流动。 逆向旋转的螺旋切屑刀片可以在其出口附近的料斗内设置,以减小生物质进料的任何过大或聚集的部分的尺寸。 主氧化室的内壁表面设置有沿其周边间隔开的多个向内突出的构件,用于在初级氧化室中建立再循环的气态流动路径。