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Energy Saving Thermal Incinerator with Ceramic Heat Accumulator

机译:带陶瓷蓄热器的节能热焚烧炉

摘要

The present invention relates to a ceramic thermal incinerator system energy-efficient for the complete oxidation was initiated in the combustion of only the ceramic heating above discloses combustion without using the organic catalyst used gas is not preheated to combustion temperature of the combustion chamber temperature.; Saving the conventional way to open the furnace (Thermal Oxidizer) is a burner (5) open and the by flame organic gas flowing into the furnace, but the oxidation burning of organic matter in the incoming gas after being raised to the combustion temperature progression of the energy ceramic thermal incinerator is to be initiated at the combustion start ceramic layer 18, the burn-up start the organic substance oxidation combustion initiation ceramic layer 18 by maintaining the temperature of the ceramic layer 18 to more than the oxidation temperature of the organic material placed in the furnace.; Used ceramic (21) material has a high heat storage efficiency can be accumulated heat to initiate combustion of ceramic layer 18 due to its heat capacity. Inlet organics are burned in a combustion initiation ceramic layer 18, part of the heat of combustion that is transferred to the combustion start the ceramic layer 18 to maintain the temperature at any minimum ignition temperature of a part of the even during the low-concentration gas inlet for combustion initiation ceramic layer 18 by using only those columns that may supply sikimyeo initiate the combustion of the organic gas to be completely burned in the combustion initiation ceramic layer 18, the rear end chamber 19, thereby resulting in lower energy costs compared to the conventional flame thermal incinerator.; Energy saving ceramic thermal incinerator system the furnace, the heat exchanger 1, 11 and 13, the heat exchanger 2 (15), made of a blower 10, such as the furnace has a burner chamber 16, a combustion initiation ceramic layer 18, a combustion chamber It is composed of 19.
机译:本发明涉及一种陶瓷热焚化炉系统,其能为完全氧化而引发的燃烧仅在陶瓷加热时才开始燃烧,上面披露了燃烧时不使用有机催化剂,所用气体未预热到燃烧室的燃烧温度。节省打开炉子的常规方法(热氧化器)是打开燃烧器(5),并通过火焰将有机气体流入炉子,但是将进入气体中的有机物氧化燃烧后升高到燃烧温度级数。能量陶瓷热焚烧炉将在燃烧开始陶瓷层18处启动,通过将陶瓷层18的温度保持在有机材料的氧化温度以上,从而开始燃烧有机物氧化燃烧开始陶瓷层18放在炉子里。废旧的具有高储热效率的陶瓷(21)材料由于其热容量而可以累积热量以引发陶瓷层18的燃烧。入口有机物在燃烧引发陶瓷层18中燃烧,转移到燃烧的一部分燃烧热开始陶瓷层18,以将温度保持在低浓度气体中一部分的最小点火温度。燃烧引发陶瓷层18的入口仅通过使用可提供sikimyeo引发的有机气体进行燃烧的柱子来完全燃烧,该有机气体在燃烧引发陶瓷层18的后端腔室19中燃烧,因此与常规火焰热焚烧炉。节能陶瓷热焚烧炉系统的炉子,热交换器1、11和13,由鼓风机10制成的热交换器2(15)(例如炉子)具有燃烧室16,燃烧引发陶瓷层18,燃烧室它由19。

著录项

  • 公开/公告号KR100490381B1

    专利类型

  • 公开/公告日2005-05-17

    原文格式PDF

  • 申请/专利权人

    申请/专利号KR20030032734

  • 发明设计人 오석인;

    申请日2003-05-23

  • 分类号F23G5/00;

  • 国家 KR

  • 入库时间 2022-08-21 22:03:47

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