石油化工安全环保技术 ›› 2026, Vol. 42 ›› Issue (2): 64-68.

• 清洁生产与综合治理 • 上一篇    

基于微电解工艺的钻井废水处理工艺分析

魏军波   

  1. 中国石油集团渤海钻探工程有限公司第二钻井工程分公司,河北 廊坊 065000
  • 收稿日期:2025-12-15 接受日期:2026-03-15 出版日期:2026-04-20 发布日期:2026-05-12
  • 作者简介:魏军波,男,2022年毕业于华东石油大学石油工程专业,现主要从事石油钻井安全管理工作,工程师。E-mail: 154662496@qq.com

Analysis of Drilling Wastewater Treatment Process Based on Micro-Electrolysis Technology

Wei Junbo   

  1. The Second Drilling Engineering Branch of CNPC Bohai Drilling Engineering Company, Langfang, Hebei, 065000
  • Received:2025-12-15 Accepted:2026-03-15 Online:2026-04-20 Published:2026-05-12

摘要: 为高效处理油气开采行业产生的钻井废水,提出采用铁碳微电解工艺进行处理。通过单因素实验,系统考察了初始pH值、铁碳比、曝气量及反应时间对COD去除率和色度去除率的影响规律,在此基础上,建立了以COD去除率和色度去除率为响应值的二次多项式回归模型,并对模型进行了方差分析与残差正态性检验,最后采用满意度函数法进行多目标优化。结果显示,微电解工艺处理钻井废水的最佳运行参数为初始pH值3.5,铁碳比2.4,曝气量0.91 L/min,反应时间46 min,此时模型预测的COD与色度去除率分别可达90.6%与94.1%。研究结果可为钻井废水的无害化处理提供理论依据。

关键词: 钻井废水, 微电解, 中心复合设计, COD, 色度

Abstract: ?Iron-carbon micro-electrolysis process is proposed for efficient treatment of drilling wastewater in the oil and gas extraction industry. ?Single-factor experiments were conducted to systematically investigate the effects of initial pH, iron-carbon ratio, aeration rate, and reaction time on COD removal rate and color removal rate. On this basis, a quadratic polynomial regression model was established with COD removal rate and color removal rate as response variables, followed by analysis of variance (ANOVA) and residual normality testing, and finally multi-objective optimization was performed using the satisfaction function method. The results show that the optimal operating parameters for treating drilling wastewater by the micro-electrolysis process are an initial pH of 3.5, an iron-carbon ratio of 2.4, an aeration volume of 0.91L/min and a reaction time of 46 min. At this time, the COD and color removal rates predicted by the model can reach 90.6% and 94.1% respectively. The research results can provide a theoretical basis for the harmless treatment of drilling wastewater.

Key words: drilling wastewater, micro-electrolysis, central composite design, COD, chromaticity