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    • 6. 发明公开
    • 열 공급장치
    • 热供应装置
    • KR1020130118797A
    • 2013-10-30
    • KR1020130042854
    • 2013-04-18
    • 린나이코리아 주식회사린나이가부시기가이샤
    • 지카마와리미노루
    • F24H9/20F24D19/10F24D12/02G05D23/19
    • F24H9/2007F23N2037/08F24D12/02F24D19/1009F24D2200/32G05D23/1951
    • PURPOSE: A heat supply device is provided to perform hot water supply or heating operations only using a hot water heating unit by automatically shifting from a normal operation mode to a gas operation mode when sensing power failure. CONSTITUTION: A heat supply device comprises an electrical heating source, a gas type heating source, and a control unit. The electrical heating source generates heat using electricity. The gas type heating source generates heat using gas. The control unit controls the operation of the electrical heating source and the gas type heating source. The control unit selects a gas operation mode without electrical heating source usage. [Reference numerals] (12) Remote controller (display unit); (14) Controller; (30) Storage tank; (40) Heat pump (electrical heat source); (50) Hot-water supply heating unit (gas type heat source); (54) Battery power supply; (56) Blackout detection; (70) Heating terminal; (90) Bathtub; (AA,DD) Common electricity; (BB) Gas; (CC) Hot water supply; (EE) Water supply
    • 目的:提供一种供热装置,用于在检测到电源故障时,仅使用热水加热装置自动从正常运行模式转换到气体运行模式,进行热水供应或加热操作。 构成:供热装置包括电加热源,气体型加热源和控制单元。 电加热源利用电力产生热量。 气体类型的加热源产生使用气体的热量。 控制单元控制电加热源和气体型加热源的操作。 控制单元选择没有电加热源使用的气体运行模式。 (附图标记)(12)遥控器(显示单元); (14)控制器; (30)储罐; (40)热泵(电热源); (50)热水供热单元(气体型热源); (54)电池电源; (56)停电检测; (70)加热终端; (90)浴缸; (AA,DD)普通电力; (BB)气; (CC)热水供应; (EE)供水
    • 9. 发明公开
    • 농축된 석탄 스트림의 NOx 감소성 연소 방법
    • 浓缩煤气的NOx还原燃烧方法
    • KR1020040007278A
    • 2004-01-24
    • KR1020030046288
    • 2003-07-09
    • 프랙스에어 테크놀로지, 인코포레이티드
    • 코바야시,히사시부울,로렌스이.3세스나이더,윌리암제이.
    • F23D14/24F23D14/32
    • F23C5/32F23C6/045F23C6/047F23C7/004F23C2201/101F23C2201/20F23C2900/06041F23C2900/99004F23D1/00F23D14/24F23D2900/00006F23D2900/01001F23L7/007F23L2900/07006F23L2900/07007F23N2037/08F23N2037/28Y02E20/344
    • PURPOSE: An NOx(Nitrogen Oxide) reduction combustion method of concentrated coal streams is provided to reduce NOx formation in the combustion of solid hydrocarbonaceous fuel as coal by obtaining the streams having a ratio of fuel solids to air that is higher than the feed stream from the incoming feed stream of the fuel solids and air and injecting the obtained stream and a small amount of oxygen to a burner where the fuel solids are burned. CONSTITUTION: An NOx reduction combustion method comprises steps for supplying a feed stream of pulverulent solid hydrocarbonaceous fuel in a gaseous carrier; obtaining from the feed stream at least one obtained stream comprising the fuel and a carrier to have a ratio of fuel to a carrier that is higher than the ratio of fuel to the carrier of the feed stream; feeding the obtained stream and air from a burner(3) to a combustion chamber(1); injecting oxygen into the obtained stream at or near the burner; and burning the coal in the obtained stream in the combustion chamber with the air and oxygen in a flame(6) that has a fuel-rich flame zone. The amount of the oxygen is less than 25% of the stoichiometric amount required for complete combustion of the fuel and keeps the zone fuel-rich. The combustion method reduces the amount of air fed through the burner by an amount containing sufficient oxygen that the overall combustion zone stoichiometric ratio varies by not more than 10% compared to the stoichiometric ratio without adding oxygen.
    • 目的:提供浓缩煤流的NOx(氮氧化物)还原燃烧方法,以通过获得燃料固体与空气的比例高于原料流的比例来减少作为煤的固体烃类燃料燃烧中的NOx形成 燃料固体和空气的输入进料流,并将获得的流和少量氧气注入到燃烧固体燃烧的燃烧器中。 构成:NOx还原燃烧方法包括在气态载体中供应粉状固体烃类燃料的进料流的步骤; 从进料流中获得至少一种所获得的包含燃料和载体的料流以使燃料与载体的比例高于进料流中的燃料与载体的比例; 将获得的流和空气从燃烧器(3)供给到燃烧室(1); 在燃烧器处或附近将氧气注入所得流中; 并在燃烧室内的所得料流中燃烧煤,其中空气和氧气具有富燃料火焰区域的火焰(6)。 氧气的量小于燃料完全燃烧所需的化学计量量的25%,并保持燃料浓度。 该燃烧方法通过使含有足够的氧的量减少通过燃烧器供给的空气的量,使总燃烧区化学计量比在不添加氧的情况下与化学计量比相比变化不超过10%。
    • 10. 发明公开
    • 유독가스 소각용 복사 버너
    • 用于有毒气体焚烧的辐射燃烧器
    • KR1020170092547A
    • 2017-08-11
    • KR1020177014304
    • 2015-11-02
    • 에드워즈 리미티드
    • 시레이앤드류
    • F23G7/06F23D14/14F23N1/02F23N5/02
    • F23G7/065F23D14/145F23D2203/1012F23D2203/1055F23D2203/106F23D2212/103F23D2212/201F23G2207/101F23G2209/142F23G2900/50007F23N1/02F23N1/022F23N5/022F23N2025/16F23N2037/08
    • 복사버너(80) 및방법이개시된다. 복사버너(8)는제조공정툴로부터노즐(12)을통해공급된배출가스스트림을처리하기위한것이고, 소결금속섬유슬리브(20)로서, 이소결금속섬유슬리브의내부연소면(20의일부분) 근방에서의연소를위해연소물질이소결금속섬유슬리브를통과하는, 상기소결금속섬유슬리브와, 소결세라믹섬유로제조되고소결금속섬유슬리브를둘러싸며연소물질이통과하는절연슬리브(20의일부분)를포함한다. 이렇게하여, 버너가꺼지는빈번한아이들단계에의해야기된급속사이클로인해부서지지않는복사버너(8)가제공된다. 또한, 절연슬리브를제공하는것에의해, 복사버너(8) 내에서의온도및 복사버너(8)의외부면의온도는기존의세라믹버너와유사한상태로있다. 이는복사버너(8)가, 공정툴의이러한빈번하고짧은휴지기간동안, 부서지지않는현장교체용부품으로서기존의세라믹버너를대신하도록할 수있다.
    • 公开了一种辐射燃烧器(80)和方法。 如果拷贝燃烧器(8)是制造过程的内燃,烧结金属纤维套筒20是用于通过喷嘴12从工具处理所述提供的废气流,异结果金属纤维套筒(20 uiil部) 包括向燃烧产物的附近eseoui燃烧通过烧结金属纤维套筒,由烧结金属纤维套管的绝缘套管(20 uiil部分)和,烧结所述陶瓷纤维通过围绕所述烧结金属纤维套筒燃烧材料通过 的。 以这种方式,提供了一种辐射燃烧器8,其由于燃烧器关闭的频繁空转阶段而导致的快速循环不会破裂。 此外,通过设置在绝缘套管,复制所述燃烧器(8)的拷贝eseoui温度和燃烧器8令人惊奇的脸是在类似于常规陶瓷燃烧器的状态下的温度。 这允许辐射式燃烧器8在处理工具的这种频繁且短暂的停机时间期间替换现有的陶瓷燃烧器作为非断裂式现场更换部件。