Environmental Protection Technology

Description

Flue Gas Treatment

DeSOx Technology

DeSOx Technology encompasses a range of advanced flue gas desulfurization (FGD) processes designed to efficiently remove sulfur oxides (SOx) and other impurities from industrial emissions. The technologies combine chemical absorption, oxidation, and recovery methods to minimize environmental impact while recovering valuable byproducts.

  • Wet DeSOx and Dust Collection Technology – A wet flue gas alkali washing process that simultaneously removes SOx and particulates. Its modular design allows flexible customization for different project requirements, ensuring both technical efficiency and cost-effectiveness.
  • M·Dwave® Reverse Jetting Technology – A simplified wet alkali washing system with low maintenance needs. It integrates flue gas desulfurization and wastewater treatment within a single column, maintaining stable performance even under fluctuating gas loads.
  • M·Sulfurp® Acid Gas Treatment / Waste Acid Recovery Technology – This process converts sulfur-containing gases into 98% concentrated sulfuric acid. It effectively handles a wide range of acid gas concentrations and complex impurities, offering a comprehensive waste-to-resource solution.
  • M·Sorb® Sulfur Dioxide Recovery Technology – Utilizes an organic solvent to absorb and recycle SO₂ from flue gas. The system includes pre-scrubbing, absorption, and solvent regeneration, enabling recovered SO₂ to be reused as a feedstock in sulfur and acid production plants.
  • M·HyPerO® Hydrogen Peroxide Oxidation DeSOx Technology – Employs hydrogen peroxide as an absorbent to oxidize and capture SO₂, producing valuable sulfuric acid. It is particularly suited for acid industry applications, including WSA gas emission cleaning.

H₂S Removal Technology

  • Complex Iron H₂S Removal – This wet oxidation technology utilizes complex iron as a catalyst to remove hydrogen sulfide (H₂S) from gas streams. It directly converts H₂S into elemental sulfur, reducing the treated gas content to below 10 ppm. The process offers a simple and reliable operation, high sulfur capacity, and outstanding environmental performance, making it a safe, non-toxic, and sustainable desulfurization solution.

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