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基本訊息

型號

RTO

類型

環境監測儀器

品牌

雷德桑特

狀態

新的

清潔效率

99.8%

應用

化工

主要功能

廢氣去除

商標

雷德桑特

運輸套餐

薄膜包裹

起源

中國 浙江

產品描述

杭州瑞德森機械有限公司;,;有限公司;專業開發製造創新粉末冷卻造粒機械及相關工業廢氣處理設備。具有近20年的生產歷史;我們在中國20多個省份擁有良好的市場;部分產品出口沙烏地阿拉伯、新加坡、墨西哥、巴西,;西班牙,;美國,;俄羅斯和韓國; ETC。

規格:;

* 比現有設施更緊湊 
* 營運成本低 
* 設施使用壽命長 
* 壓力無變化

目的:;

燃燒揮發性有機化合物(VOC)的節能係統;利用熱量產生廢氣;採用陶瓷蓄熱材料(催化劑)收集99.;8%以上的廢氣餘熱;表面積大,壓力損失低;

應用:;

1.;塗裝乾燥工藝
2.;金屬印刷工藝
3.;纖維乾燥過程
4.;膠帶工藝
5.;廢棄物處理工藝
6.;半導體製造工藝
7.;抽煙,;糖果和烘焙過程
8.;石化過程; 
9.;醫藥和食品製造過程; 
10.;其他VOC產生過程

優點:;

 * 比現有設施更緊湊
 * 壓力無變化
 * 熱回收率高(95%以上);
 * 完善的VOC處理(99.;8%以上);
  * 設施使用壽命長
  * 營運成本低
  * 可製作圓形或四邊形

一般描述與特點:; 

1.;工作原理
 透過旋轉旋轉閥連續改變流量的操作方法

2.;過程壓力變化
  由於旋轉閥的旋轉,風向會發生順序變化,因此壓力不會變化

3.;投資成本
 約 70% 的床型

4.;安裝空間
 它是單一容器,因此結構緊湊,需要的安裝空間較小。

5.;維護
 由於旋轉閥是唯一的 1 個移動部件,因此易於維護。
 旋轉閥由於旋轉速度低,密封件很少磨損;

6.;穩定
在此過程中沒有風險,因為即使旋轉閥出現故障,它也始終打開。

7.;處理效率
 即使長時間運行,密封件也很少磨損,處理效率得以維持;

 

地址:浙江省杭州市經濟開發區振新中路3號

業務類型: 製造商/工廠, 貿易公司

業務範圍:化工、電氣電子、製造加工機械、安全防護

管理系統認證:ISO 9001

主要產品:造粒機、刨片機、造粒機、造粒機、化學造粒機、Vocs

公司簡介:杭州瑞德森機械有限公司,前身為杭州新特塑膠機械廠,是一家專業生產創新塑膠回收機械的企業。憑藉近20年的經驗,我們在國內20個省市自治區擁有良好的市場,部分產品出口到印尼、俄羅斯、越南等。管材撕碎回收生產線、連續退火鍍錫機、QX型PET、PE及皮殼清洗生產線、SDP雙軌塑膠回收破碎機、SJ熱切造粒機組、PVC管(五葉)生產線、PVC異型材產品門窗生產線、水中顆粒生產線以及塑膠和回收粉碎機。我們獲得了5項技術專利。

本公司注重技術改造,引進國內外先進技術,不斷開發新產品。我們的宗旨是挑戰高品質,提供最好的產品。我們正在努力實現我們的口號。讓客戶滿意是我們永恆的追求。

我們正在尋找海外客戶或代理商。如果您對我們的提案感興趣,請讓我們知道我們的哪種產品最有可能吸引您或您的客戶。如果您能給我們一些關於我們產品的市場前景的想法,我們將不勝感激。我們希望盡快收到您的有利訊息!我們的目標是希望現在或不久的將來能與您建立良好的關係。如果您有任何問題或要求,請隨時與我們聯繫。

我們也真誠歡迎您來本公司洽談業務、洽談業務。為進一步拓展市場與客戶,本公司以全新的經營理念-品質、榮譽、服務,以全新的品牌姿態迎接國內外客戶。我們正在尋找 ISO 90001 管理品質系統來滿足客戶的要求!

蓄熱式熱氧化器

Are regenerative thermal oxidizers suitable for controlling particulate matter emissions?

Regenerative thermal oxidizers (RTOs) are primarily designed for the destruction of volatile organic compounds (VOCs) and hazardous air pollutants (HAPs). While RTOs are highly effective in treating gaseous pollutants, they are not specifically designed for controlling particulate matter emissions.

Here are some key points to consider regarding the suitability of RTOs for controlling particulate matter emissions:

  • Particulate Matter (PM) Removal Mechanism: RTOs primarily operate based on the thermal oxidation of pollutants. They rely on high temperatures to break down and destroy gaseous pollutants, but they do not have a dedicated mechanism for capturing and removing particulate matter. The design of RTOs does not incorporate features such as filters or electrostatic precipitators that are commonly used for effective particulate matter control.
  • Limited Particulate Matter Destruction: While RTOs can provide some incidental removal of fine particulate matter through mechanisms like thermal decomposition and agglomeration, the removal efficiency for particulate matter is generally low compared to dedicated particulate control devices. The focus of RTOs is primarily on the destruction of gaseous pollutants rather than the capture and removal of particulates.
  • Supplementary Particulate Control: In certain cases, supplementary particulate control devices may be integrated with RTOs to address particulate matter emissions. These devices, such as bag filters or electrostatic precipitators, can be installed downstream of the RTO to capture and remove particulates. This combination of an RTO with a separate particulate control device can help achieve comprehensive air pollution control for both gaseous pollutants and particulate matter.
  • Consideration of Particulate Characteristics: When evaluating the suitability of RTOs for a specific application involving particulate matter emissions, it is crucial to consider the characteristics of the particulates, such as size, composition, and concentration. RTOs may be more effective in controlling certain types of coarse particulates compared to fine or ultrafine particulate matter.
  • Alternative Technologies: For industries with significant particulate matter emissions, other air pollution control technologies specifically designed for particulate removal, such as fabric filters (baghouses), electrostatic precipitators, or wet scrubbers, may be more suitable and efficient.

In summary, while regenerative thermal oxidizers are highly effective for the destruction of gaseous pollutants, they are not specifically designed for controlling particulate matter emissions. If particulate matter control is a significant concern, supplementary particulate control devices or alternative technologies should be considered to ensure comprehensive air pollution control.

蓄熱式熱氧化器

蓄熱式熱氧化器如何處理系統中顆粒物的堆積?

蓄熱式熱氧化器 (RTO) 採用各種機制來處理系統中顆粒物的堆積。灰塵、煙灰或其他固體顆粒等顆粒物會隨著時間的推移而積累,並可能影響 RTO 的性能和效率。以下是 RTO 處理顆粒物堆積的一些方法:

  • 預過濾: RTO 可以採用預過濾系統,例如旋風分離器或袋式過濾器,以在較大的顆粒物質進入氧化器之前將其去除。這些預過濾器捕獲並收集顆粒,防止它們進入 RTO 並減少積聚的可能性。
  • 自潔效果: RTO 的設計目的是對熱交換介質具有自清潔作用。在 RTO 運作期間,熱廢氣流過介質會導致顆粒燃燒或分解,從而最大限度地減少顆粒的累積。高溫和湍流有助於保持介質表面清潔,並降低大量顆粒堆積的風險。
  • 吹掃週期: RTO 通常將吹掃循環作為其操作的一部分。這些循環涉及將少量清潔空氣或氣體引入系統以清除任何殘留的顆粒物質。吹掃空氣有助於去除或燒掉任何黏附在介質上的顆粒,確保介質的持續清潔。
  • 定期維護: 定期維護對於防止 RTO 中顆粒物堆積過多至關重要。維護活動可能包括檢查和清潔熱交換介質,檢查和更換任何磨損的墊圈或密封件,以及監控系統是否有任何顆粒積聚的跡象。定期維護有助於確保最佳性能,並最大限度地降低與顆粒物堆積相關的操作問題的風險。
  • 監控與警報: RTO 配備了監控系統,可追蹤壓力差、溫度和流量等各種參數。這些系統可以檢測任何可能表明顆粒物堆積的異常情況或過度壓力降。可以觸發警報和警報來通知操作員,提示他們採取適當的行動,例如啟動維護或清潔程序。

值得注意的是,用於處理顆粒物堆積的具體策略可能會根據 RTO 的設計和配置以及所處理的顆粒物的特性而有所不同。 RTO製造商和營運商應考慮這些因素並採取適當的措施,以確保系統中顆粒物的有效管理。

透過結合預過濾、利用自清潔效應、實施吹掃循環、進行定期維護以及採用監控系統,RTO 可以有效處理和減少顆粒物積聚,從而長期保持其性能和效率。

蓄熱式熱氧化器

How efficient are regenerative thermal oxidizers in destroying volatile organic compounds (VOCs)?

Regenerative thermal oxidizers (RTOs) are highly efficient in destroying volatile organic compounds (VOCs) emitted from industrial processes. Here are the reasons why RTOs are considered efficient in VOC destruction:

1. High Destruction Efficiency: RTOs are known for their high destruction efficiency, typically exceeding 99%. They effectively oxidize VOCs present in the industrial exhaust streams, converting them into less harmful byproducts, such as carbon dioxide and water vapor. This high destruction efficiency ensures that the majority of VOCs are eliminated, resulting in cleaner emissions and compliance with environmental regulations.

2. Residence Time: RTOs provide a sufficiently long residence time for the combustion of VOCs. In the RTO chamber, the VOC-laden air is directed through a ceramic media bed, which acts as a heat sink. The VOCs are heated to the combustion temperature and react with the available oxygen, leading to their destruction. The design of RTOs ensures that the VOCs have ample time to undergo complete combustion before being released into the atmosphere.

3. Temperature Control: RTOs maintain the combustion temperature within a specific range to optimize VOC destruction. The operating temperature is carefully controlled based on factors such as the type of VOCs, their concentration, and the specific requirements of the industrial process. By controlling the temperature, RTOs ensure that the VOCs are efficiently oxidized, maximizing destruction efficiency while minimizing the formation of harmful byproducts, such as nitrogen oxides (NOx).

4. Heat Recovery: RTOs incorporate a regenerative heat recovery system, which enhances their overall energy efficiency. The system captures and preheats the incoming process air by utilizing the heat energy from the outgoing exhaust stream. This heat recovery mechanism minimizes the amount of external fuel required to sustain the combustion temperature, resulting in energy savings and cost-effectiveness. The heat recovery also helps maintain the high destruction efficiency of VOCs by providing a consistent and optimized operating temperature.

5. Catalyst Integration: In some cases, RTOs can be equipped with catalyst beds to further enhance VOC destruction efficiency. Catalysts can accelerate the oxidation process and lower the required operating temperature, improving the overall efficiency of VOC destruction. Catalyst integration is particularly beneficial for processes with lower VOC concentrations or when specific VOCs require lower temperatures for effective oxidation.

6. Compliance with Regulations: The high destruction efficiency of RTOs ensures compliance with environmental regulations governing VOC emissions. Many industrial sectors are subject to stringent air quality standards and emission limits. RTOs provide an effective solution for meeting these requirements by reliably and efficiently destroying VOCs, reducing their impact on air quality and public health.

In summary, regenerative thermal oxidizers (RTOs) are highly efficient in destroying volatile organic compounds (VOCs). Their high destruction efficiency, residence time, temperature control, heat recovery capabilities, optional catalyst integration, and compliance with regulations make RTOs a preferred choice for industries seeking effective and sustainable solutions for VOC abatement.

China best Regenerative Thermal Oxidizer
editor by CX 2023-10-13

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