Deepen the defoaming field, assist in efficient production, and provide one-stop foam solutions
Manufacture of desulfurization‑specific defoamers | Wholesale desulfurization‑specific defoamers — Nanjing Jin Yaoshi Manufacturer
Release Date:
2020-11-09
I. Category Name
For desulfurization use only Defoamer XPC-20A
II. In the field of thermal power generation, our company’s XPC‑20A product is used in the flue gas desulfurization process, with the following applications and objectives:
At present, most thermal power plants in China employ wet flue‑gas desulfurization. During the operation of the desulfurization system, the following factors can cause foaming of the absorber slurry, leading to overflow from the absorber.
1. In the absorption tower, the gas and liquid undergo high-velocity counter-current mixing.
2. Excessive particulate matter in imported flue gas, such as impurities containing large amounts of inert substances.
3. Poor coal quality, insufficient combustion in the boiler, or oil firing can result in oily flue gases at the inlet.
4. An increase in heavy metal ions in the absorber slurry leads to a rise in the slurry’s surface tension.
5. When limestone contains an excessive amount of MgO, the excess MgO not only reduces desulfurization efficiency but also reacts with sulfate ions.
Foam formation in the absorber slurry, caused by the aforementioned factors, leads to substantial losses of neutralizing agents and cooling water, while also significantly reducing the reaction rate and product recovery. This severely impacts operational performance and desulfurization efficiency. Moreover, excessive foam overflow contaminates the plant environment and poses significant safety risks to the motor room beneath the cooling tower, resulting in potential electrical losses.
If applied Defoamer Thus, within the desulfurization tower, the efficiency of cooling water and absorbent utilization can be effectively enhanced, significantly reducing both the frequency and number of circulating pump startups, thereby substantially increasing sulfate production. At the same time, this approach helps lower on-site labor‑intensive maintenance costs, leading to a marked improvement in overall economic benefits.
Since flue‑gas desulfurization in thermal power plants requires a desulfurizing agent—typically limestone or limestone slurry—practical trials and laboratory foam‑testing have shown that conventional defoamers are generally ineffective at suppressing the foam generated in the absorber slurry. Moreover, their performance varies under different foaming conditions; therefore, thorough testing of defoamers is essential to achieve optimal efficacy in specific applications.
III. Defoamer Applications in recirculating seawater systems
In production processes that use seawater as the circulating coolant, the high concentrations of shellfish and marine algae in seawater, combined with favorable ambient temperatures, can lead to rapid biological proliferation and severe pipeline blockages. Adding chlorine to the circulating water generates hypochlorous acid, which kills these organisms. However, the decomposition of decaying animal matter in the water, coupled with vigorous agitation, results in the continuous formation of large amounts of foam, contributing to marine pollution. Our company’s XPC‑20B product effectively eliminates such foam, enabling efficient settling of pollutants and thereby preventing further marine contamination.
Defoamer Its application in thermal power plants has effectively reduced environmental pollution.