Test Product ACF

A dedicated self-cleaning air filter specifically developed for nuclear power ventilation systems, which meets the stringent environmental requirements of nuclear power plants for high safety, high reliability and radiation resistance. During the operation of a nuclear power plant, the ventilation system needs to ensure the cleanliness of the air within the nuclear island, while also resisting complex conditions such as radiation, high temperature and high humidity.

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The bag filter is a pressure filter device, which mainly consists of a filter cylinder body, a filter cylinder cover, a quick-opening mechanism, a stainless steel filter bag reinforcing mesh and other main components. The filtrate flows into the filter bag from the side inlet pipe of the filter housing. The filter bag itself is installed in the reinforced mesh basket, and the liquid can obtain qualified filtrate by infiltrating the filter bag of the required fineness grade, and the impurity particles are intercepted by the filter bag. The machine is very convenient to replace the filter bag, and there is basically no material consumption for filtration. Bag filter has the following categories: single bag filter, multi-bag filter, rocker bag filter, high-precision bag filter, etc., the filter filtration precision is in the range of 1-10 microns.

Bag filter working principle

Technical Specification

自洁式空气过滤器技术参数选型
型号 处理风量

m³/h

过滤面积 滤筒数量 过滤精度 初阻损Pa 消耗功率W 反吹气

M³/min

结构形式 反吹气压

Mpa

尺寸

mm

LFZK-180 10800 180 9 过滤精度:

≥1μm/99.96%

≥2μm/99.99%

≥3μm/100%

≤150 150W/AC220V 0.2 单层单租

整体出厂

滤筒需现场安装

0.4-0.6 1610*1360*2660
LFZK-240 14400 240 12 1610*1780*2660
LFZK-320 19200 320 16 2030*1780*2660
LFZK-560 33600 560 28 3040*2030*2860
LFZK-800 48000 800 40 3600*2250*2800
LFZK-1200 72000 1200 60 5280*2200*2800
LFZK-1600 96000 1600 80 300W/AC220V 0.3 4400*3520*2800
LFZK-2000 120000 2000 100 单层或多层布局,多组模块,分体出厂,现场安装,拼装组焊 4400*4200*2800
LFZK-3200 192000 3200 160 ≤200 4400*3520*5600
LFZK-4000 240000 4000 200 4400*4200*5600
LFZK-4800 288000 4800 240 5280*4400*5600
LFZK-6000 360000 6000 300 600W/AC220V 0.5 4400*4200*7980
LFZK-7200 432000 7200 360 5280*4400*7980
LFZK-8400 504000 8400 420 5880*4400*7500
LFZK-9600 576000 9600 480 6720*4400*7980
LFZK-10800 648000 10800 540 7560*4400*7500
LFZK-12000 720000 12000 600 8400*4400*7500
LFZK-14400 864000 14400 720 8400*5280*7500

Title One

Reverse osmosis equipment mainly operates by relying on reverse osmosis membranes.
When water containing impurities is pressurized by a pump, it is sent to a reverse osmosis device. During this process, due to the pressure difference on both sides of the reverse osmosis membrane, water will permeate from the high concentration side to the low concentration side. The pore size of the reverse osmosis membrane is extremely small, usually between 0.0001 and 0.001 microns, and only water molecules can pass through these tiny pores.
The impurity molecules in water, such as salts, organic substances, colloids, and bacteria, due to their relatively large particle sizes, cannot pass through the reverse osmosis membrane and are retained on the feed water side. As the feed water continuously enters, the concentration of the retained impurities gradually increases, while the pure water that passes through the reverse osmosis membrane is collected on the other side, thus achieving the separation and purification of water. This principle enables reverse osmosis equipment to effectively remove over 95% to 99% of ions and impurities in water, producing high-quality pure water.

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Title Two

Reverse osmosis equipment can effectively remove various salts in water. The desalination rate is generally above 95% – 99%, and it has a remarkable effect on the removal of common salts such as sodium chloride. It can significantly reduce water hardness and decrease the formation of scale.
2. It can remove almost all suspended solids, colloids, organic matter, and microorganisms such as bacteria and viruses from water. For instance, it can effectively retain impurity particles with a diameter greater than 0.0001 micrometers, ensuring the purity of the effluent.
3. Its filtration process is relatively stable. As long as the equipment operates normally and is properly maintained, it can continuously and stably provide high-quality purified water, and is not greatly affected by fluctuations in the quality of the influent water. For instance, even when the salinity or pollutant concentration of the influent water slightly changes, the quality of the effluent water can still meet the requirements.
4. Most reverse osmosis equipment is equipped with advanced automatic control systems. They can achieve functions such as automatic start and stop, automatic flushing, automatic monitoring of water quality and pressure, etc. This not only reduces the complexity of manual operation but also enables timely detection and handling of problems during equipment operation.
5. No complex operational skills are required. Personnel who have received simple training can perform daily operations and basic maintenance of the equipment. The control panel of the equipment is designed to be simple and easy to understand, with all operating parameters clearly visible at a glance.
6. The structure of reverse osmosis equipment is relatively compact. Compared with traditional large-scale filtration equipment, it occupies less space when processing the same amount of water. This makes it possible to be well installed and used in places with limited space, such as small factory workshops and laboratories.
7. It can be combined with other water treatment equipment, such as ultrafiltration devices and activated carbon filters, for use. According to different water quality requirements and treatment goals, a variety of water treatment systems can be constructed to achieve the best treatment effect.
8. During the treatment process, no chemical agents are used for disinfection or sedimentation, thus avoiding secondary pollution to water quality caused by chemical agent residues. Moreover, it can reduce the harm of harmful substances in water to human health and the environment.
With the advancement of technology, new reverse osmosis equipment has seen significant improvements in energy utilization efficiency. Meanwhile, through reasonable design and operation, concentrated water can be recycled and reused, enhancing water utilization and reducing water waste.
It is applicable to a wide range of fields, including drinking water purification, the preparation of injection water in the pharmaceutical industry, the production of ultra-pure water in the electronics industry, water treatment in the food processing industry, and seawater desalination, among many others. It can meet the demands of various industries for high-quality pure water.

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