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粉尘污染治理

·弹匣式集尘机(横)

·弹匣式集尘机(立)

·布袋式集尘机

·旋风集尘机

·填料洗涤塔

·旋流板洗涤塔

·单机集尘机

·下吸式工作台

·除尘器工作站

·防爆型集尘机

·中央清扫系统(HV)

·高负压集尘系统

·空气过滤器

·袋进袋出

有机废气(VOC)治理

·蓄热式氧化炉(RTO)

·沸石转轮吸附+RTO/CO

·催化氧化炉(CO)

·蓄热式催化氧化炉(RCO)

·活性炭吸附+回收

·活性炭吸附+催化燃烧

酸碱废气治理

·逆流式洗涤塔

·卧式洗涤塔

·酸碱吸附塔

·化学过滤器

噪音污染治理

·噪音治理_网上官方赌场下注

粉尘爆炸防护

·爆炸隔离阀

·泄爆片

·无焰泄放

·火花探测和熄灭系统

·粉尘抑爆与隔离系统

·中断(换向)阀

通风管道工程

·镀锌螺旋管道

·模组式管道

·不锈钢管道

工业吸尘器

·防爆工业吸尘器

备品备件

·除尘滤筒

·褶式长滤筒

·扁平打褶滤芯

·除尘布袋

·除尘脉冲清灰配件

·压差表(变送器)

·粉位(液位)计

·破架桥装置

·旋转下料阀

·控制箱

·风机

·活性炭

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非标设备定制

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工程咨询设计

·粉尘治理工程咨询与设计

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< id="about_right"> < id="about_right_bt">沸石转轮吸附+RTO/CO < id="about_right_nr">

沸石转轮吸附+RTO/CO

< class="news_info">日期:2017-11-9 17:40:34 人气:13970 < id="art_content">

系统综述

    吸附浓缩是自主研发的新一代VOCs处理设备,是将吸附浓缩单元和热氧化单元有机地结合起来的一种方法,主要针对大风量、低浓度的有机废气,经吸附净化并脱附后转换成小风量、高浓度的有机废气,对其进行热氧化处理,并将有机物燃烧释放的热量有效利用。

工艺原理

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" 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技术特点

1、分子筛转轮+RTO组合工艺特点:

氧化温度~800℃

采用蓄热陶瓷作为换热器,换热效率>95%

处理效率90% ~ 99%

占地面积相对适中

最高耐温~1000℃

可处理含硫、卤素等有机物质,

适于连续运行 

2、分子筛转轮+CO组合工艺特点:

氧化温度~300℃ 

采用管式或板式作为换热器,换热效率~65% 

处理效率90% ~ 99% 

占地面积相对较小

最高耐温~500℃ 

不能处理含硫、卤素等有机物质, 

适于间歇运行 

适用范围

● 各种喷漆车间(汽车制造、造船、自行车制造、飞机制造、金属制品等)的排气处理

● 各种印刷车间(凹版印刷、建筑装潢材料印刷、其他各种印刷过程)的排气处理 

● 铝型材生产、镀膜加工工艺等的排气处理 

● 各种电子制品制造过程的排气处理 

● 半导体集成电路、液晶显示屏(LCD)制造过程的排气处理 

● 锂离子电池制造(电极形成工序、电解液充填工序)过程的排气处理 

● 树脂、橡胶、轮胎等制品生产过程的排气处理 

● 汽车维修店面、服装干洗店等分散源挥发性有机物排气处理 

● 废气中含有氮、硫、氯等杂质的排气处理 



< class="news_pre">上一个: 蓄热式氧化炉(RTO) < id="pro_next">下一个: 催化氧化炉(CO)
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