China Suppliers Factory for Purification Equipment: Deacidification, Dehydration & Heavy Hydrocarbon Removal Solutions

Understanding the hazards and control of feedstock impurities is crucial in the pre-treatment process. Our factory in China specializes in providing effective solutions to manage feedstock quality, ensuring that suppliers receive only the highest standard materials. By addressing impurities upfront, we enhance the efficiency of production processes and guarantee superior final products. Partner with us to navigate the challenges of feedstock management while benefiting from our expertise and resources as one of the leading suppliers in the industry.

Product Description

Detailed Description

1. Pre-treatment: hazards and control of feedstock impurities
In the gas treatment process, the impurities contained in the raw gas, such as liquid free water, solid particles, H₂O, acid gas (CO₂, H₂S), etc., not only accelerate the corrosion of the equipment and clogging of the pipeline, but also may affect the stability of the subsequent process and the quality of the product, so it is necessary to strictly control the impurity indicators. Pre-treatment adopts a step-by-step purification strategy, firstly, the use of alcohol and amine method to efficiently remove the acidic gas, and then with the help of molecular sieve adsorption technology, to further remove water, heavy hydrocarbons, mercury and other impurities, in order to lay the foundation for the subsequent treatment.
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2. Acid gas removal: multiple technologies and customised solutions
There are many different technologies for acid gas removal, including molecular sieve adsorption method, alcohol-amine method, modified hot potassium method, sulfone-amine method and so on. The selection of solvents and process design for different technologies requires comprehensive consideration of the composition of the raw gas, pressure conditions, product quality standards, and overall costs and operating expenses. With rich experience in the industry, the deacidification plant is customized based on ethanolamine method to ensure efficient acid gas removal according to the characteristics of the gas components and the working conditions at the site.
3. Dewatering: Efficient solutions to fit the scenario
Natural gas dehydration mainly adopts absorption and adsorption methods. For small-scale projects, the molecular sieve adsorption method has the advantage of efficient dewatering even under low partial pressure of water vapour due to its strong adsorption performance, while further removing residual acid gas. In addition, the device is easy to operate, compact and occupies a small space, which is highly suitable for small-scale projects. It is worth mentioning that the regas of the molecular sieve system comes from the BOG after recovering the cooling capacity of the re-liquefaction unit, so as to achieve the recycling of energy.
4. Removal of trace mercury and aromatic hydrocarbons: a guarantee of precision purification
In order to ensure that the gas quality meets the stringent standards, the purification equipment adopts targeted technology to deal with trace pollutants. Specialised sulphur-impregnated coal-based activated carbon is used to effectively adsorb and remove possible trace amounts of mercury, while special adsorbents are used for in-depth purification of aromatic hydrocarbons. Through these precise treatment measures, trace impurities in the gas are efficiently removed, and the gas purification effect is guaranteed in all aspects.

Frequently Asked Questions

What are the hazards of impurities in raw gas during pre-treatment?
Impurities such as liquid free water, solid particles, H₂O, and acid gases (CO₂, H₂S) can accelerate equipment corrosion and pipeline clogging, potentially affecting subsequent process stability and final product quality.
Which technologies are commonly used for acid gas removal?
Common technologies include the molecular sieve adsorption method, alcohol-amine method, modified hot potassium method, and sulfone-amine method, chosen based on gas composition, pressure, and cost.
How are deacidification solutions customized?
Deacidification plants are customized based on the ethanolamine method, tailoring the design to the specific gas component characteristics and the site's working conditions to ensure efficient acid gas removal.
Why is molecular sieve adsorption suitable for small-scale dewatering?
It provides highly efficient dewatering even under low partial pressure of water vapour, removes residual acid gas, is easy to operate, and features a compact design that saves space.
How is energy recycled in the dewatering system?
The regeneration gas used in the molecular sieve system is sourced from the BOG (Boil-Off Gas) after recovering the cooling capacity of the re-liquefaction unit.
How are trace mercury and aromatic hydrocarbons removed?
Trace mercury is removed using specialized sulphur-impregnated coal-based activated carbon, while aromatic hydrocarbons are targeted with special adsorbents for deep purification.

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