使用非化石减光剂处理泄漏残留物
Minna Rämä1, Lassi Klemettinen1, Marja Rinne1
1School of Chemical Engineering, Department of Chemical and Metallurgical Engineering, Aalto University, 02150 Espoo, Finland.
ACS omega
|June 26, 2023
概括
生物炭在高温下有效地降低了泄露残留渣渣中的金属. 添加MgO提高了效率,使得有价值的金属可以回收,可以清除适用于建筑材料的污渣.
科学领域:
- 金工程 金工程 金工程
- 可持续材料科学科学 可持续材料科学
背景情况:
- 泄露残留物对金属回收和废渣处置构成挑战.
- 传统方法通常依赖化石燃料,影响环境可持续性.
研究的目的:
- 评估生物炭作为一种非化石减碳剂,用于处理浸残留物.
- 为了优化金属回收的条件,并产生稳定的废渣,以便潜在的重复使用.
主要方法:
- 在1200-1350°C的实验室规模的金实验.
- 氧化化,然后使用生物炭进行减少.
- 优化温度 (1300°C),快速火,并添加MgO (5-10重量%).
- 在废渣中分析金属度 (Zn,Pb).
主要成果:
- 生物炭证明了作为减少剂的可行性,性能优于化石焦炭.
- 在10分钟内,增加10%重量MgO达到目标Zn (<1%重量) 和接近目标Pb (<0.03%重量) 度.
- 5重 % MgO 需要30-60分钟才能充分减少 Zn,并达到0.09重 % Pb.
结论:
- 生物炭是一种有前途的可持续性减少剂,用于浸残留物处理.
- 添加MgO显著提高了渣渣清洗效率和金属回收.
- 该过程产生了适合建筑材料等应用的干净渣.
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