A method for stabilizing waste incineration fly ash
A technology for waste incineration fly ash and stabilization treatment, which is applied in the field of environmental engineering to achieve the effects of low product price, low treatment cost, and reducing the risk of re-pollution of the environment
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0041] Take 100g of incineration fly ash sample A, and dissolve 1g of potassium dipropyldithiophosphate and 0.1g of aluminum sulfate in 90mL of water, add the stabilizer solution to the fly ash, and stir the above mixture for 20 minutes to make the heavy metals in the fly ash Completely react with dipropyl potassium dithiophosphate to form a thick mortar mixture, and then dry the above mixture under natural ventilation conditions and landfill safely. The weight ratio of fly ash to potassium dipropyl dithiophosphate is 100:1. According to GB5086.2-1997, the leaching toxicity test was carried out on the stabilized fly ash. The leaching concentration of lead exceeding the standard was 1.2mg / L, the leaching concentration of cadmium was 0.28mg / L, and the leaching concentration of chromium was 1.6mg / L. L, the leaching concentration of zinc is 5.0mg / L, meeting the hazardous waste identification standard and hazardous waste landfill pollution control standard.
Embodiment 2
[0043] Take 100g of incineration fly ash sample A, and dissolve 2.5g of diisopropyl ammonium dithiophosphate in 80mL of water, add the stabilizer solution to the fly ash, and stir the above mixture for 40 minutes to make the heavy metal in the mortar and diisopropyl ammonium Ammonium dithiophosphate reacts completely to form a thick mortar mixture. Then dry the above mixture under natural ventilation conditions and landfill safely. The weight ratio of fly ash to ammonium diisopropyldithiophosphate is 100:2.5. According to GB5086.2-1997, the leaching toxicity test was carried out on the stabilized fly ash. The leaching concentration of lead exceeding the standard was 1.0mg / L, the leaching concentration of cadmium was 0.19mg / L, and the leaching concentration of chromium was 1.4mg / L. L, the leaching concentration of zinc is 4.3mg / L, meeting the hazardous waste identification standard and hazardous waste landfill pollution control standard.
Embodiment 3
[0045]Take 100g of incineration fly ash sample B, take 1.0g of sodium dipropyldithiophosphate, 1.0g of potassium diisopropyldithiophosphate and 0.12g of polyaluminum chloride and dissolve it in 85mL of water, add the stabilizer solution to the fly ash In the ash, stir the above mixture for 25 minutes, so that the heavy metal in the mortar reacts completely with sodium dipropyl dithiophosphate and potassium diisopropyl dithiophosphate to form a thick mortar mixture. Then dry the above mixture under natural ventilation conditions and landfill safely. The weight ratio of fly ash to sodium dipropyldithiophosphate+potassium diisopropyldithiophosphate is 100:2.0. According to GB5086.2-1997, the leaching toxicity test was carried out on the stabilized fly ash. The leaching concentration of lead exceeding the standard was 1.1mg / L, the leaching concentration of cadmium was 0.20mg / L, and the leaching concentration of copper was 5.0mg / L. L, meet the hazardous waste identification standa...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com