酸化/刺激

酸化过程中基于氯化苄基喹啉衍生物的配方的缓蚀作用

开发和实施一种更有效、更环保的酸化腐蚀抑制剂,该抑制剂源自氯化苄基喹啉,以减轻金属钻井设备的快速腐蚀。

安装管道。
资料来源:ugurhan/Getty Images

由于高温下强酸对金属设备的腐蚀严重且快速,因此在酸化过程中需要使用高浓度的酸化缓蚀剂(ACI)。始终需要开发比现有产品更有效、更环保的 ACI。在这项工作中,提出了一种由新型主要成分获得的高效 ACI 及其与多聚甲醛 (PFA) 和碘化钾 (KI) 的协同效应。ACI是由氯化苄和喹啉以简单的方法合成的氯化苄基喹啉鎓衍生物(BQD)的粗产物制备的。这种新的 ACI 配方被命名为“协同中氮茚衍生物混合物”(SIDM),由 BQD、PFA 和 KI 组成,与市售 ACI 相比,显示出优异的缓蚀效果和温度稳定性。更重要的是,SIDM配方无需使用常用的剧毒增效剂(例如炔丙醇和As 2 O 3)。在 20 wt% 盐酸溶液中,添加 0.5 wt% SIDM 可将 N80 钢的腐蚀速率降低至 194°F 时的腐蚀速率低于 0.00564 lbm·ft- 2,而 320°F 时的腐蚀速率为 0.0546 lbm ·ft -2当添加 4.0 wt% SIDM 时。


本摘要摘自中国石油大学(华东)Z. Yang 和 Y. Wang 的论文 SPE 218374;J. Yang,中国石油大学(华东)和辽宁石油化工大学;J. Wang,中国石油大学(华东);和 M. Fin拧加尔,马里博尔大学。该论文已经过同行评审,并可在 OnePetro 的 SPE 期刊上以开放获取方式获取。

原文链接/jpt
Acidizing/stimulation

Corrosion Inhibition of Benzyl Quinoline Chloride Derivative-Based Formulation for Acidizing Process

Development and implementation of a more effective and environmentally friendly acidizing corrosion inhibitor derived from benzyl quinoline chloride to mitigate rapid corrosion of metal-based drilling equipment.

Installation piping.
Source: ugurhan/Getty Images

Due to the severe and rapid corrosion of metallic equipment by strong acids at high temperatures, a high concentration of acidizing corrosion inhibitors (ACIs) is required during acidizing processes. There is always a need to develop more effective and environmentally friendly ACIs than current products. In this work, a highly effective ACI obtained from a novel main component and its synergistic effect with paraformaldehyde (PFA) and potassium iodide (KI) is presented. The ACI was prepared from the crude product of benzyl quinolinium chloride derivative (BQD) synthesized from benzyl chloride and quinoline in a simple way. The new ACI formulation, named “synergistic indolizine derivative mixture” (SIDM), which consists of BQD, PFA, and KI, showed superior corrosion inhibition effectiveness and temperature stability compared with commercially available ACI. More importantly, the SIDM formulation eliminates the need for commonly used highly toxic synergists (e.g., propargyl alcohol and As2O3). In a 20 wt% hydrochloric acid solution, the addition of 0.5 wt% SIDM mitigates the corrosion rate of N80 steel down to less than 0.00564 lbm·ft−2 at 194°F, while the corrosion rate at 320°F is 0.0546 lbm·ft−2 when 4.0 wt% SIDM is added.


This abstract is taken from paper SPE 218374 by Z. Yang and Y. Wang, China University of Petroleum (East China); J. Yang, China University of Petroleum (East China) and Liaoning Petrochemical University; J. Wang, China University of Petroleum (East China); and M. Finšgar, University of Maribor. The paper has been peer reviewed and is available as Open Access in SPE Journal on OnePetro.