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    • 54. 发明授权
    • 바이오매스 재연소 시스템 및 이를 구비한 재연소 설비
    • 生物质回收系统和退火设备
    • KR100959309B1
    • 2010-05-20
    • KR1020090092985
    • 2009-09-30
    • 한국생산기술연구원
    • 김세원이창엽신명철
    • F23B40/00F23G5/14
    • F23B1/36F23B10/00F23B40/02F23L7/00F23L2900/00001
    • PURPOSE: A biomass re-burning system and a re-burning facility with the same is provided to reduce the generation of carbon dioxide and the use of fossil energy by using biomass which utilizes waste corps and waste wood. CONSTITUTION: A biomass re-burning system(100) comprises a hollow combustion furnace(101), a combustor(110), a re-burn fuel supply module(330), an oxidizer supply module, and an oxidizer supply part(310). The combustor supplies main combustion fuel to the inside of the combustion furnace and creates flame. One or more re-burn fuel supply modules are positioned on the outer circumference of the combustion furnace. The re-burn fuel supply module sprays the biomass to the inside of the combustion furnace. The oxidizer supply module supplies oxidizer for a re-burn process. The oxidizer supply part supplies the oxidizer to the re-burn fuel supply module and the oxidizer supply module.
    • 目的:提供生物质再燃烧系统和具有相同功能的再燃设施,以减少二氧化碳的产生和利用废物团队和废木材的生物质使用化石能源。 构成:生物质再燃烧系统(100)包括中空燃烧炉(101),燃烧器(110),再燃燃料供应模块(330),氧化剂供应模块和氧化剂供应部分(310) 。 燃烧室向燃烧炉内部供给主燃料并产生火焰。 一个或多个再燃烧燃料供应模块位于燃烧炉的外圆周上。 再燃燃料供应模块将生物质喷射到燃烧炉内部。 氧化剂供应模块为氧化剂提供再燃烧过程。 氧化剂供应部件将氧化剂供应给再燃燃料供应模块和氧化剂供应模块。
    • 55. 发明授权
    • Furnace apparatus
    • 炉装置
    • US09518733B1
    • 2016-12-13
    • US15052227
    • 2016-02-24
    • Amen Dhyllon
    • Amen Dhyllon
    • F23G5/00F23G5/44F23G5/32
    • F23G5/442F23G5/085F23G5/14F23G5/24F23G5/32F23G5/444F23G2204/201F23G2205/18F23L2900/00001Y02P80/152
    • A furnace apparatus to incinerate solid waste comprises a chamber, a solid waste feed inlet, air inlet pipes, and air outlet pipes. The chamber includes an upper pyrolysis section and a lower combustion section, and the solid waste feed inlet is positioned at an upper portion of the chamber to feed solid waste to the lower combustion section. The air inlet pipes receive air for combustion of the solid waste within the lower combustion section. The air outlet pipes exhaust combusted air from the lower combustion section, where multiple magnets are operably attached on the air inlet pipes and the air outlet pipes. The paramagnetic oxygen present in the received air is concentrated via the magnets, and the concentrated oxygen is introduced into a plasma generated within the combustion section to accelerate the combustion process, and to oxidize toxic matter present in the solid waste.
    • 用于焚烧固体废物的炉装置包括室,固体废物进料入口,进气管和出气管。 该室包括上部热解段和下部燃烧段,并且固体废物进料入口位于室的上部,以将固体废物输送到下部燃烧段。 空气入口管接收下燃烧段内固体废物燃烧的空气。 出气管排出来自下部燃烧部分的燃烧空气,其中多个磁体可操作地连接在进气管和出气管上。 存在于接收空气中的顺磁性氧通过磁体浓缩,并且将浓缩的氧气引入到在燃烧部分内产生的等离子体中,以加速燃烧过程,并氧化存在于固体废物中的有毒物质。
    • 56. 发明申请
    • MELTING FURNACE USING ANION OXYGEN
    • 使用阴离子氧化物熔化炉
    • US20150308680A1
    • 2015-10-29
    • US14440120
    • 2013-06-10
    • ASINNETWORKS CO., LTD.
    • Sang-Jin LEE
    • F23G5/44F23L7/00
    • F23G5/44F23G5/442F23G2202/20F23G2900/50006F23J15/022F23J2217/50F23L7/00F23L7/007F23L2900/00001Y02E20/344
    • A waste melting furnace comprises: a furnace main body; an injection hole door; a discharge hole door; a dust collector; a punched plate; and an anion oxygen supply unit. The furnace main body has a waste injection hole and a cracked gas discharge hole which are formed in the top surface thereof and at least one ash discharge hole which is formed in a side surface. The injection hole door opens or closes the waste injection hole. The discharge hole door opens or closes the ash discharge hole. The dust collector is arranged in the cracked gas discharge hole and collects ashes which are contained in the cracked gas in the furnace main body so as to recover the same. The punched plate is disposed at a distance from the bottom surface of the furnace main body in the furnace main body. The anion oxygen supply unit supplies magnetized anion oxygen towards the upper side area of the punched plate which is disposed in the furnace main body.
    • 废熔炉包括:炉主体; 喷孔门; 排气孔; 集尘器 打孔板 和阴离子供氧单元。 炉主体具有形成在其顶面中的废气注入孔和破裂气体排出孔,以及形成在侧面中的至少一个排灰孔。 注入孔门打开或关闭垃圾注入孔。 排气孔门打开或关闭排灰孔。 集尘器设置在裂化气体排出孔中,收集炉主体内的裂解气体中含有的灰分,使其回收。 冲孔板配置在炉主体的炉主体的底面一定距离处。 阴离子供氧单元向设置在炉主体中的冲孔板的上侧区域供给磁化的阴离子氧。
    • 58. 发明授权
    • Waterless humidifier for residential and commercial furnaces
    • 无尘加湿器用于住宅和商业炉
    • US08591628B2
    • 2013-11-26
    • US13076514
    • 2011-03-31
    • Dexin WangWilliam E. LissRichard A. Knight
    • Dexin WangWilliam E. LissRichard A. Knight
    • B01D53/22
    • F23J15/00B01D53/266B01D53/268F23J15/06F23L2900/00001F24D5/04F24F6/02F24F2003/1435Y02E20/363
    • A method and apparatus for humidifying residential and commercial buildings in which a flue gas generated by a residential or commercial furnace is provided to one side of a porous liquid water transport membrane and habitable space air is provided to an opposite side of the porous liquid water transport membrane in an amount sufficient to provide a habitable space air to flue gas volume flow rate ratio of at least 8.3:1. At least a portion of the water vapor in the flue gas is condensed, providing condensed liquid water which is passed through the porous liquid water transport membrane to the habitable space air side of the porous liquid water transport membrane. On the habitable space air side of the membrane, the condensed liquid water is evaporated into the habitable space air, producing humidified habitable space air which is provided to the rooms of the residential and commercial buildings. Beneficially, no supplemental water source is required for the humidification process.
    • 一种用于加湿住宅和商业建筑物的方法和装置,其中在多孔液体输送膜和可居住的空间空气的一侧提供由住宅或商业炉产生的烟道气供应到多孔液体水输送的相对侧 膜的量足以提供可居住空间的烟气体积流量比至少为8.3:1。 烟道气中的至少一部分水蒸汽被冷凝,提供冷凝的液态水,其通过多孔液体水输送膜到多孔液体水输送膜的可居住的空气空气侧。 在膜的可居住的空气空气侧,冷凝的液体水被蒸发到可居住的空间空气中,产生提供给住宅和商业建筑物的房间的加湿的可居住的空间空气。 有利地,加湿过程不需要补充水源。
    • 60. 发明授权
    • Humidifier with louvered air intake
    • 加湿器带百叶窗进气口
    • US08006962B2
    • 2011-08-30
    • US12047606
    • 2008-03-13
    • Donald N. Jursich
    • Donald N. Jursich
    • B01F3/04
    • F24F6/043F23D14/68F23L2900/00001F23L2900/07008Y10S261/15
    • A humidification system includes a housing mountable into an air duct, that includes a base frame, a cover and at least one open end panel. The base frame is mountable to an opening in the air duct that is shaped and configured to align with the base frame. The cover attaches to the base frame with the open end panel between the base frame and cover. The air outlet is through the open end panel. An evaporative element is positioned between the air inlet and air outlet. Controlling humidity output provides moisture to the evaporative element when needed. The bypass frame includes louvers that are positioned within the air inlet, where the louvers are sized to extend into the air duct. The louvers are graduated in size. After passing through the housing, an air return directs humidified air from the open end panel to a low pressure air duct.
    • 一种加湿系统包括可安装到空气管道中的壳体,其包括底架,盖和至少一个开口端面板。 基座可安装到空气管道中的开口,其形状和构造成与基架对准。 盖子连接到基架上,开口端面板位于基架和盖板之间。 出风口通过开口端面板。 蒸发元件位于进气口和出气口之间。 控制湿度输出在需要时为蒸发元件提供湿气。 旁路架包括定位在空气入口内的百叶窗,其中百叶窗的尺寸设置成延伸到空气管道中。 百叶窗大小毕业。 通过外壳后,空气回流将加湿空气从开口端板引导到低压风道。