首页> 外国专利> SELF-REGENERATIVE INTEGRATED DEVICE FOR SYNERGETIC OXIDATION OF LOW-CONCENTRATION GAS AND VENTILATION GAS IN COAL MINE

SELF-REGENERATIVE INTEGRATED DEVICE FOR SYNERGETIC OXIDATION OF LOW-CONCENTRATION GAS AND VENTILATION GAS IN COAL MINE

机译:煤矿低浓度瓦斯和通风气协同氧化的自蓄式综合装置

摘要

Disclosed is a self-regenerative integrated device for the synergetic oxidation of low-concentration gas and ventilation gas in a coal mine. The integrated device comprises a metal shell (5). A honeycomb ceramic oxidation bed (13) is arranged within the metal shell (5) and divided into a regenerative section (40) and an oxidation section (41) by a heat exchange chamber (14). A first cavity between the regenerative section (40) and the inner wall of the metal shell (5) is divided into a first inlet chamber (6) and an exhaust chamber (8) by an inlet partition plate (7), a second cavity between the oxidation section (41) and the inner wall of the metal shell (5) is divided into a second inlet chamber (22) and a mixing chamber (20) by a partition plate (21) for averaging gas, and a plurality of gas nozzles (28) are provided on the partition plate (21) for averaging gas. An internal heat exchanger (35) is arranged within the heat exchange chamber (14), and a heat exchanger inlet (16) and a heat exchanger outlet (15) of the internal heat exchanger (35) are respectively connected with a boiler drum (18). The first inlet chamber (6) is connected with an inlet (1) of the ventilation gas through a proportional control valve (38), the second inlet chamber (22) is connected with an inlet (31) for extracting the low-concentration gas through a proportional mixer (33), and the proportional control valve (38) is connected with the proportional mixer (33) through a connecting pipeline (36). The two ends of an inlet preheating pipe (9) on the honeycomb ceramic oxidation bed (13) are respectively communicated with the first inlet chamber (6) and the mixing chamber (20).
机译:公开了一种用于煤矿中的低浓度气体和通风气体的协同氧化的自蓄热式集成装置。集成装置包括金属壳(5)。蜂窝陶瓷氧化床(13)布置在金属壳(5)内,并通过热交换室(14)分为再生部分(40)和氧化部分(41)。再生部(40)与金属壳(5)的内壁之间的第一腔室由入口隔板(7)划分为第一进气室(6)和排气室(8),第二腔室氧化部(41)和金属壳(5)的内壁之间的隔板被用于平均气体的隔板(21)划分为第二进气室(22)和混合室(20),并且多个在隔板(21)上设有用于平均气体的气体喷嘴(28)。在该热交换室(14)内配置有内部热交换器(35),该内部热交换器(35)的热交换器入口(16)和热交换器出口(15)分别与锅炉鼓( 18)。第一进气室(6)通过比例控制阀(38)与通气气体的进气口(1)连接,第二进气室(22)与用于抽出低浓度气体的进气口(31)连接。通过比例混合器(33),比例控制阀(38)通过连接管道(36)与比例混合器(33)连接。蜂窝状陶瓷氧化床(13)上的入口预热管(9)的两端分别与第一入口室(6)和混合室(20)连通。

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