粉煤灰
焚化
浸出(土壤学)
焚烧炉底灰
废物管理
城市固体废物
萃取(化学)
氯化物
环境科学
制浆造纸工业
化学
底灰
工程类
有机化学
土壤科学
土壤水分
作者
Kaicheng Zhang,Yecheng Xue,Dongyan Liu,Jianfu Zhao,Marta Sibhat,Tong Yang
出处
期刊:ChemEngineering
[Multidisciplinary Digital Publishing Institute]
日期:2025-01-06
卷期号:9 (1): 6-6
被引量:1
标识
DOI:10.3390/chemengineering9010006
摘要
Municipal solid waste incineration (MSWI) fly ash, containing substantial amounts of calcium (Ca), chloride (Cl), and other valuable elements, offers promising potential as a raw material for carbon capture, utilization (CCU), and alkali production. Despite numerous approaches being explored to enhance calcium ion leaching from fly ash, the combined effects of salt and leaching conditions on ion extraction have not been thoroughly investigated. This study provides a comprehensive examination of various leaching conditions, including primary leaching—optimal for efficiency—secondary leaching, which achieved the highest leaching rate, and reverse secondary leaching, focusing on their impact on calcium extraction efficiency. Considering optimal leaching efficiency and resource utilization, this study identifies the most favorable industrial conditions as a 15 min leaching time, a stirring speed of 200 rpm, a temperature of 25 °C, and a 1:10 liquid-to-solid ratio (L/S ratio). The application of a 6% NaCl solution in salt-assisted leaching elevated the calcium ion concentration from 4101.5 mg/L to 4662.6 mg/L, indicating a substantial improvement in leaching performance. Additionally, in carbonate-assisted and ultrasound-assisted leaching, the introduction of CO2 further increased calcium extraction amounts, but it did not enhance efficiency, while ultrasonic intervention had minimal impact. This research investigates enhanced efficiencies through multiple optimized and assisted leaching conditions, advancing MSWI fly ash utilization in carbon capture applications while paving new pathways for sustainable industrial practices that could revolutionize waste management and support global environmental objectives.
科研通智能强力驱动
Strongly Powered by AbleSci AI