Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
Double alkali desulfurization project
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  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project
  • Double alkali desulfurization project

Double alkali desulfurization project

Our formula desulfurization process mainly uses limestone gypsum method and double alkali method for desulfurization
  • Commodity name: Double alkali desulfurization project
  • Detailed description
  • Product Introduction
    A desulfurization tower is a tower type equipment used for desulfurization treatment of industrial waste gas. Its function is to reduce environmental pollution by absorbing and decomposing sulfides such as sulfur dioxide in flue gas.
    Fiberglass desulfurization tower has the advantages of good corrosion resistance, easy processing, rust resistance, no scaling, no blockage, wear resistance, easy operation, management and maintenance, and high operating efficiency.
    KELIN specializes in designing and manufacturing fiberglass desulfurization towers, including limestone slurry method, double alkali method, magnesium oxide method, ammonia method and other desulfurization processes, which meet the emission standards of sulfur content of 10mg/m³ and dust content of 5mg/m³ or less. The spray layer can choose 3-5 layers, with a temperature resistance of 150 ° C. The defogger can choose structures such as swirl plate, flat plate, tube bundle, etc. The flue gas flow rate is not recommended to exceed 2m/s. Both in tower and out of tower circulation, flue gas distributor, flue gas guide ring, side stirring, clean water spray layer, oxidized air pipe, etc. can be selected. Please provide detailed flue gas parameters and emission standards, FYGRP, Provide you with detailed design scheme and construction requirements to meet environmental protection requirements. Please provide local natural condition data and process data, including wind speed, earthquake level, rain and snow conditions, maximum temperature and minimum temperature, etc. Through reasonable design, the thickness of 5mm thick wear-resistant layer reinforcement layer inside the desulfurization tower is designed according to the actual situation, and the external surface is painted with anti-aging gel coat resin to ensure that it will not change color in ten years. Please provide the sulfur content, exhaust gas treatment capacity, dust content, emission temperature, and required environmental emission standards of the flue gas. KELIN's engineers will provide the most reasonable construction plan and provide a turnkey project.

    Working Principle
    Double alkali desulfurization refers to a desulfurization method that uses two alkaline substances, NaOH and lime, as desulfurizers. The main desulfurizer consumed is lime. This process has the advantages of low operating costs and low investment. The principle of this process is that the circulating pump transports sodium alkali to the desulfurization tower, and the desulfurization slurry reacts with the flue gas inside the desulfurization tower. The purified flue gas is discharged through the outlet to the chimney. After the reaction, the desulfurization waste liquid enters the reaction regeneration tank through the bottom return ditch of the desulfurization tower and reacts with the added lime slurry. The replaced sodium hydroxide, sodium sulfite, calcium sulfate, calcium carbonate, etc. enter the sedimentation tank together. The upper layer of sodium alkali solution overflows to the circulation pool for recycling, and the insoluble calcium salts deposit at the bottom of the sedimentation tank and are transported to the slag treatment system for treatment by the slurry pump.


    Technical Advantages
    1. The desulfurization efficiency is over 95%, and the operational reliability is high.
    2. Simple, compact, and specialized system design with a small footprint.
    3. The optimal tower size minimizes capital investment and operating costs, making it suitable for flue gas desulfurization of any coal with sulfur content.
    4. Special nozzle design, better absorption effect, abundant lime resources as absorbent, cheap and easy to obtain, desulfurization by-product gypsum is convenient for comprehensive utilization, and the economic effect is significant.
    5. The absorption tower liquid redistribution device effectively avoids the occurrence of flue gas wall climbing, improves economy, and reduces energy consumption. The slurry pool separation technology is beneficial for gypsum crystallization and sulfur dioxide absorption.

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