PRESSURIZED FLUIDIZED FURNACE EQUIPMENT
    4.
    发明申请
    PRESSURIZED FLUIDIZED FURNACE EQUIPMENT 有权
    加压流化炉设备

    公开(公告)号:US20160273762A1

    公开(公告)日:2016-09-22

    申请号:US14777797

    申请日:2014-02-14

    IPC分类号: F23C10/16 F23J15/00 F23G5/30

    摘要: Pressurized fluidized furnace equipment includes a fluidized bed furnace (1) that pressurizes combustion air (B) and combusts a material to be treated (A) while fluidizing the same; an air preheater (3) that exchanges heat between a combustion exhaust gas (C) discharged from the fluidized bed furnace (1) and the combustion air (B); a dust collector (4) that removes dust from the combustion exhaust gas (C); and first and second superchargers (5, 6) to which the combustion exhaust gas (C), having undergone the heat exchange in the air preheater (3) and the dust removal in the dust collector (4), is supplied to generate compressed air (D, E). The first compressed air (D) generated in the first supercharger (5) is supplied as the combustion air (B) to the fluidized bed furnace (1) by way of the air preheater (3), and the second compressed air (E) generated in the second supercharger (6) is made to have a higher pressure than that of the first compressed air (D). Accordingly, it is possible to prevent the equipment from having more superchargers than is necessary for normal use although a plurality of first and second superchargers are provided, and to efficiently use the surplus combustion exhaust gas.

    摘要翻译: 加压流化炉设备包括在使燃烧空气(B)加压并使待处理材料(A)进行流化的同时流化床炉(1); 在从流化床炉(1)排出的燃烧废气(C)和燃烧空气(B)之间进行热交换的空气预热器(3); 从燃烧废气(C)除去灰尘的集尘器(4); 并且供给在空气预热器(3)中进行了热交换的燃烧废气(C)和集尘器(4)中除尘的第一和第二增压器(5,6),以产生压缩空气 (D,E)。 在第一增压器(5)中产生的第一压缩空气(D)通过空气预热器(3)作为燃烧空气(B)供给到流化床炉(1),第二压缩空气(E) 在第二增压器(6)中产生的压力比第一压缩空气(D)的压力高。 因此,尽管设置了多个第一和第二增压器,但是可以防止设备具有比正常使用所需的更多的增压器,并且有效地使用多余的燃烧废气。

    Pressurized fluidized furnace equipment

    公开(公告)号:US09933156B2

    公开(公告)日:2018-04-03

    申请号:US14777797

    申请日:2014-02-14

    摘要: Pressurized fluidized furnace equipment includes a fluidized bed furnace (1) that pressurizes combustion air (B) and combusts a material to be treated (A) while fluidizing the same; an air preheater (3) that exchanges heat between a combustion exhaust gas (C) discharged from the fluidized bed furnace (1) and the combustion air (B); a dust collector (4) that removes dust from the combustion exhaust gas (C); and first and second superchargers (5, 6) to which the combustion exhaust gas (C), having undergone the heat exchange in the air preheater (3) and the dust removal in the dust collector (4), is supplied to generate compressed air (D, E). The first compressed air (D) generated in the first supercharger (5) is supplied as the combustion air (B) to the fluidized bed furnace (1) by way of the air preheater (3), and the second compressed air (E) generated in the second supercharger (6) is made to have a higher pressure than that of the first compressed air (D). Accordingly, it is possible to prevent the equipment from having more superchargers than is necessary for normal use although a plurality of first and second superchargers are provided, and to efficiently use the surplus combustion exhaust gas.