详情描述

Wash various heat exchangers, condensers, industrial pipelines, boilers, and steam power equipment condensers - GlanChem offers reliable collaboration.

Jining Green Chemical Technology Co., Ltd. (简称 Jining Green Cleaning Co.) was established in 2010 and is a professional company specializing in the cleaning of various industrial heat exchange equipment. The company boasts comprehensive business philosophy and the capability to develop industrial equipment cleaning technologies. We undertake cleaning services for industrial, private enterprise, corporate chemical equipment, power plant equipment, condensers, boilers, and economizers, as well as air conditioning units, heat exchangers, and mechanical and chemical equipment. We also handle cleaning of refrigeration and heating equipment for scale removal.
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Jining Green Cleaning Co. stocks dozens of cleaning machines ranging from 10mpa to 250mpa, as well as over a dozen chemical cleaning pump stations. Our main services include power plants, chemical factories, oil mills, food factories, corporate and institutional units, heating equipment, etc. The company also provides long-term industrial heat exchanger cleaning and solution design services for industry clients.

Our company has newly acquired domestic cleaning machines and imported cleaning equipment. We have hired experienced technical specialists in the cleaning industry to achieve standardized and standardized cleaning of heat exchange equipment.

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Chemical descaling process:

Recirculating Closed Circuit Cleaning

Recirculating cleaning utilizes two original parallel deslagging pipelines to form a loop, which together with the cleaning pump station creates a circulation system. A certain concentration of acidic solution is added, allowing it to circulate and clean within the sludge water pipelines. As the acid cleaning process reduces the acidity to a certain level, more acid is continuously added. For short-distance single sludge water pipelines, if conditions permit, a temporary pipeline can be installed to form a recirculating loop for cleaning. This process must be carried out while the system is shut down, and it is complex and costly.
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Breakthrough Cleaning

No two ash pipes should form a loop during cleaning; only a single ash pipe should be used for open-circuit cleaning. The method involves connecting one end of the ash pipe to the cleaning unit, continuously preparing a specific concentration of cleaning solution in the mixing tank, and then injecting it into the ash pipe either continuously or intermittently. This process requires the addition of cleaning equipment during shutdown, which increases costs.
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Continuous Operation Cleaning

The process involves continuously injecting a specific amount of acidic fluid while also introducing a certain quantity of cleaning inhibitor for the ash conveying pipes and a pipeline descaling agent, performing an open-loop cleaning. The primary function of the cleaning aids is to promote the reaction between the acidic fluid and the ash scale at a certain concentration and flow rate, simultaneously enhancing its solubility in water and reducing the formation of air blockages, thereby ensuring the quality of ash pipe cleaning.

Operation procedure: Before cleaning, first estimate the required acid amount based on the total scale in the pipeline. Then, calculate the acid addition rate and the flow rate for adding the descaling agent and pipeline cleaner based on the sludge water flow and acidity. During the cleaning process, collect and test the acidity at the sampling point at the front end of the sludge pipe every 30 minutes, and strictly control the acidity by adjusting the acid flow rate. In the later stage of cleaning, test the pH value at the end of the sludge pipe every 15 minutes. When the pH value reaches a certain level and remains unchanged for 30 minutes, the cleaning can be deemed complete.
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2. High-pressure water jet cleaning equipment
High-pressure water jet cleaning offers advantages such as high efficiency, low cost, non-damaging to workpieces, environmental protection, ease of operation, and safety.
High-pressure water technology boasts the following advantages.

(1) Excellent Cleaning Quality: The high-pressure water jet cleaning of pipe and heat exchanger bores can thoroughly remove scale and obstructions inside, revealing the metal substrate. With immense energy and moving at supersonic speeds, the high-pressure water jet is fully capable of destroying hard scale and obstructions without causing any damage to the metal.

Since the pressure of high-pressure water is less than the pressure strength grade of metal, high-pressure cleaning will not damage the base material being cleaned.
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(2) Fast Cleaning Speed: Due to the combined action of jet washing, wedge splitting, shearing, and grinding, scale can be quickly broken and removed, making the cleaning process several to ten times faster than traditional chemical methods, sandblasting, simple mechanical, and manual methods.

Components cleaned with high-pressure water jetting do not require secondary cleaning; however, after chemical cleaning, the surface must be rinsed with clean water.
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(3) No Environmental Pollution: Since high-pressure water jet cleaning uses pure water as the medium, it does not generate a large amount of dust like sandblasting, shot blasting, or simple mechanical cleaning, which can pollute the atmosphere and harm health. It also does not produce a large volume of waste liquid like some chemical cleaning methods, which can contaminate rivers, soil, and water quality. The water jet cleaning with pure water as the medium is odorless, tasteless, and non-toxic. After atomization, it can also reduce the dust concentration in the work area, lowering atmospheric dust from 80mg/m³ with other methods to below the national safety standards, thus causing no pollution.

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3. Pipe Scale

(1) Categorized by chemical composition, it includes carbonate scale, sulfate scale, silicate scale, and mixed scale, among others. The main components of carbonate scale are calcium carbonate and magnesium carbonate; the main components of sulfate scale and silicate scale are calcium sulfate and silicate compounds, respectively.

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(2) Categorized by physical properties, there are two types: water scale that is firmly adhered to the pot body and tube walls, and sediment that is loosely textured and easy to detach.
Lime scale primarily forms due to the salts, such as calcium and magnesium, present in the boiler feed water that precipitate and adhere to the metal surface upon heating. Lime scale has a very low thermal conductivity, approximately 2-5 times that of ordinary steel. When lime scale accumulates on the boiler's heat transfer surface, it significantly worsens the heat transfer efficiency and affects the boiler's performance; it can also easily damage metal materials due to localized overheating, potentially leading to pipe explosion accidents; it accelerates galvanic corrosion, causing pipeline lime scale corrosion, and hastens the deterioration of the heat transfer surface. Once lime scale forms, it should be promptly removed using mechanical or chemical methods.

Heat Exchanger & Refrigeration Equipment Cleaning - Choose Green Chemical for Confidence