化学氧气需求 (COD) 通过凝结-花和吸附减少织工业废水
Soufiane Youcef1, Meriem Chebbi2, Leila Youcef2
1Civil Engineering and Hydraulic Department, LARHYSS Laboratory, Mohamed Khider University, Biskra, Algeria. soufiane.youcef@univ-biskra.dz.
Environmental monitoring and assessment
|April 10, 2025
概括
这项研究表明,将铁化物 (FeCl3) 凝结-花块与生物炭吸附相结合,可以有效地处理织废水. 这种混合方法通过使用较低的化学剂量,显著降低化学氧气需求 (COD) 和度.
科学领域:
- 环境化学环境化学
- 水处理技术水处理技术
背景情况:
- 织行业的废水由于高化学氧气需求 (COD) 和度而带来了重大环境挑战.
- 传统的处理方法往往需要大量的化学投入,可能不完全有效.
研究的目的:
- 评估化铁 (FeCl3) 凝结-花和生物炭 (OSB) 吸附的有效性,单独或组合,用于处理织工业废水.
- 确定最佳条件并评估组合处理过程的成本效益.
主要方法:
- 使用不同剂量的FeCl3.Cl,进行凝结-花块化.
- 使用实验室制备的OSB生物炭进行吸附,并分析动力模型.
- 连续应用凝血-花,然后吸附.
主要成果:
- 增加FeCl3剂量显著降低了COD和度,最佳剂量为2500 mg/L,从最初的1520 mg/L达到240 mg/L的COD.
- 通过OSB生物炭吸附,实现了83.65%的COD降低,其中化学吸附是主要的机制.
- 与单个处理相比,联合工艺需要显著降低FeCl3 (100 mg/L) 和OSB (2 g/L) 的剂量,显示出更高的效率.
结论:
- 结合FeCl3凝结-花块和OSB生物炭吸附的组合是织废水处理的高效和成本效益的方法.
- 这种综合方法提供了优越的污染物去除,减少了化学和吸附剂的要求.
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