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    • 73. 发明申请
    • WASTE MATERIAL FLOW CONTROL FEATURES
    • 废物流动控制特性
    • WO1995013504A1
    • 1995-05-18
    • PCT/US1994013103
    • 1994-11-14
    • ESHLEMAN, Roger, D.
    • F23G05/00
    • F23G5/0276F23G5/10F23G5/16F23G2203/803F23G2207/101F23G2207/103F23G2207/20F23G2209/20
    • A material processing apparatus (10) includes a casing (26) having a pyrolysis chamber (14) for receiving and pyrolyzing feed materials therein into a gaseous material and solid ash residue, a mass (36) of refractory material contained in the casing (26) upon a bottom (22B) thereof, being spaced below a top (22A) and extending between opposite sides (22C, 22D, 22E, 22F) thereof, and including an inclined upper surface (46) defining the bottom of the pyrolysis chamber (14) and having a lower terminal edge (46B) being spaced from one of the opposite sides (22C, 22D) of the casing (26) for defining a solid ash residue collection region (44) therein, and a pusher mechanism (52) disposed in the pyrolysis chamber (14) for engaging and moving feed materials down the inclined upper surface (46) of the refractory mass (36) toward the lower terminal edge (46B) thereof.
    • 一种材料处理装置(10)包括具有热解室(14)的壳体(26),用于将进料中的原料接收和热解成气态物质和固体灰分残渣,容纳在壳体(26)中的耐火材料块(36) )在其底部(22B)上,在顶部(22A)下方间隔开并在其相对侧(22C,22D,22E,22F)之间延伸,并且包括限定热解室底部的倾斜上表面(46) 并且具有与壳体(26)的相对侧(22C,22D)中的一个隔开的下端部边缘(46B),用于在其中限定固体灰渣收集区域(44),以及推动器机构(52) 设置在所述热解室(14)中,用于将所述耐火材料(36)的倾斜上表面(46)向下的端部边缘(46B)接合和移动。
    • 76. 发明申请
    • CASING AND HEATER CONFIGURATION
    • 外壳和加热器配置
    • WO1994014006A1
    • 1994-06-23
    • PCT/US1993011954
    • 1993-12-09
    • ESHLEMAN, Roger, D.
    • F23G05/00
    • H05B3/64F23G5/0276F23G5/10F23G2201/303F23G2201/304
    • A material processing apparatus (10) includes a casing (52) including an outer wall (54) having a substantially one-sided figure eight configuration, a plurality of upper inner walls (116, 118, 120, 122) disposed inside of the outer wall (54) and being spaced apart and having substantially concentric cylindrical configurations, and a lower inner wall (124) disposed inside of the outer wall (54) and disposed below the upper inner walls (116-122). The upper inner walls (116-122) define an upper airtight vessel (12) which defines a heat exchanger (46), while the lower inner wall (124) defines a lower airtight vessel (12) containing a material processing chamber (16). The apparatus (10) also includes a heater unit (22) having a plurality of elongated electric heating elements which are mounted through spaced side portions of the outer wall (54) and lower inner wall (56) of the casing (52) so as to extend across the material processing chamber (16) in an orientation positioned intermediately between vertical and horizontal orientations.
    • 材料处理装置(10)包括壳体(52),壳体(52)包括具有基本上单面图形八构造的外壁(54),多个上内壁(116,118,120,122)设置在外侧 壁(54)并且间隔开并且具有基本同心的圆柱形构造,以及设置在外壁(54)内部并设置在上内壁(116-122)下方的下内壁(124)。 上部内壁(116-122)限定了限定热交换器(46)的上部密封容器(12),而下部内壁(124)限定包含材料处理室(16)的下部气密容器(12) 。 装置(10)还包括加热器单元(22),其具有多个细长的电加热元件,该多个细长的电加热元件通过壳体(52)的外壁(54)和下内壁(56)的间隔开的侧部安装,以便 以在垂直和水平取向之间定位的取向延伸穿过材料处理室(16)。
    • 77. 发明申请
    • MATERIAL CONTROLLED PROCESSING APPARATUS AND METHOD
    • 材料控制处理装置及方法
    • WO1994014005A1
    • 1994-06-23
    • PCT/US1993011951
    • 1993-12-09
    • ESHLEMAN, Roger, D.STEVERS, Paul, H.
    • F23G05/00
    • F23N5/006F23G5/0276F23G5/10F23G5/46F23G5/50F23G2201/303F23G2201/304F23G2207/101F23G2207/103F23G2207/30F23G2209/20F23N2025/16F23N2033/04F23N2035/06F23N2037/16Y02E20/12
    • A material processing apparatus (10) includes a coolant jacketed vessel (12) defining a first pyrolysis chamber (14) and a second oxidation chamber (16), first heating elements (18) to pyrolyze materials in the first chamber (14), second heating elements (22) to oxidize materials in the second chamber (16), an induction fan (26), airflow inlet valves (28, 30) and an air intake proportioning valve (31) for producing separate variable flows of primary and secondary air into and through the first and second chambers (14, 16), first sensors (32, 34, 36) mounted on the vessel (12) for sensing the temperatures in the first and second chambers (14, 16) and in the coolant, a second sensor (40) mounted on the vessel (12) for sensing the proportion of a predetermined gas in the discharge gases, and a control system (44) responsive to the temperatures sensed in the first and second chambers (14, 16) and the coolant and to the proportion of the predetermined gas sensed in the discharge gases for controlling the induction fan (26) and air intake proportioning valve (31).
    • 材料处理装置(10)包括限定第一热解室(14)和第二氧化室(16)的冷却剂套管容器(12),第一加热元件(18)以热解第一室(14)中的材料,第二加热装置 加热元件(22)以氧化第二室(16)中的材料,感应风扇(26),气流入口阀(28,30)和进气比例阀(31),用于产生一次和二次空气的单独可变流量 安装在容器(12)上的第一和第二腔室(14,16)中的第一传感器(32,34,36),用于感测第一和第二腔室(14,16)和冷却剂中的温度, 安装在容器(12)上用于感测放电气体中的预定气体的比例的第二传感器(40)以及响应于在第一和第二腔室(14,16)中感测到的温度的控制系统(44)和 冷却剂和在c的排出气体中检测到的预定气体的比例 安装感应风扇(26)和进气比例阀(31)。