工业水处理 ›› 2024, Vol. 44 ›› Issue (7): 185-189. doi: 10.19965/j.cnki.iwt.2023-1102

• 工程实例 • 上一篇    下一篇

丁二烯法尼龙66盐生产废水深度处理工程实例

刘政(), 杨龙, 周作绪, 张磊, 吉训胜   

  1. 北京铭泽源环境工程有限公司,北京 100020
  • 收稿日期:2024-05-23 出版日期:2024-07-20 发布日期:2024-07-31
  • 作者简介:

    刘政(1984— ),硕士。E-mail:

An advanced treatment project of wastewater from PA66 salt producted by butadiene process

Zheng LIU(), Long YANG, Zuoxu ZHOU, Lei ZHANG, Xunsheng JI   

  1. Beijing Ming Zeyuan Environmental Engineering Co. , Ltd. , Beijing 100020, China
  • Received:2024-05-23 Online:2024-07-20 Published:2024-07-31

摘要:

针对某企业丁二烯法尼龙66盐生产废水生化出水,研发特定的臭氧催化剂,采用高效沉淀+前臭氧催化氧化+两级前置反硝化+后臭氧催化氧化处理工艺进行深度处理。运行结果表明,系统处理效果稳定,出水COD≤40 mg/L、氨氮≤2 mg/L、总氮≤5 mg/L,远优于《城镇污水处理厂污染物排放标准》(GB 18918—2002)一级A排放标准。生化池细菌培养期间,后臭氧催化氧化池对于氨氮、总氮平均去除率分别为81.1%、63.7%,表现出优异的同步去除氨氮、总氮性能,前臭氧催化氧化池对COD去除效果较好,平均臭氧消耗量与COD去除量的质量比为1.64∶1。高效沉淀+前臭氧催化氧化+两级前置反硝化+后臭氧催化氧化处理工艺处理丁二烯法尼龙66盐生产废水吨水运行成本4.86元,具有较好的经济性,为类似行业废水处理提供参考。

关键词: 丁二烯, 尼龙66, 深度处理, 臭氧催化氧化

Abstract:

To make advanced treatment of wastewater from butadiene-based PA66 salt production, the research of ozone catalyst was conducted, and a combined process of high-efficiency sedimentation+pre-ozone catalytic oxidation+two-stage pre-denitrification+post-ozone catalytic oxidation was introduced. The results showed that the treatment effect of the whole process was in a relatively stable condition. The effluent with COD≤40 mg/L, NH3-N≤2 mg/L, and TN≤5 mg/L was better than first class A effluent index of Pollutant Emission Standards for Urban Sewage Treatment Plants(GB 18918-2002). In the process of bacterial culture, post-ozone catalytic oxidation had NH3-N removal rate of 81.1% and TN removal rate of 63.7%, showing great performance in NH3-N and TN removal. Meanwhile, pre-ozone catalytic oxidation had a better performance in COD removal, and the mass ratio between ozone consumption and COD removal was 1.64∶1. The operating cost of the whole process for treating wastewater from PA66 salt producted by butadiene was 4.86 yuan/t. The whole process was cost-effective compared to deep treatment project. It provides reference for similar wastewater treatment.

Key words: butadiene, PA66, advanced treatment, ozone catalytic oxidation

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