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评估一次性电化学生物膜测试试剂盒在监测排水污泥生物膜腐蚀及其杀菌剂处理方面的性能。

Assessing the performance of a disposable electrochemical biofilm test kit on monitoring drainage sludge biofilm corrosion and its biocide treatment.

作者信息

Xu Lingjun, Gu Chris, Wang Shaohua

机构信息

Department of Chemical and Biomolecular Engineering, Institute for Corrosion and Multiphase Technology, Ohio University, Athens, 45701, USA.

Department of Biomedical Sciences, Ohio University Heritage College of Osteopathic Medicine, Ohio University, Athens, OH, 45701, USA.

出版信息

Bioprocess Biosyst Eng. 2025 May 5. doi: 10.1007/s00449-025-03173-x.

Abstract

Drainage sludge is abundant with corrosive microbes which can contribute to soil corrosion of buried pipelines. In this work, the microbiologically influenced corrosion (MIC) of a drainage sludge biofilm against X65 carbon steel was confirmed by significant uniform corrosion (0.03 mm/a uniform corrosion rate) and more severe pitting corrosion (18% greater) on X65 coupons with nutrient enrichment without venting at 37 ℃ compared to the aerobic sludge at room temperature. A new biofilm/MIC test kit was employed to assess the aerobic sludge biofilm, and it was determined to be mildly corrosive against carbon steel after incubating 5 mL of aerobic sludge at room temperature for 7 d in the 10 mL biofilm test kit vial. Tetrakis-hydroxymethyl phosphonium sulfate (THPS), a green biocide was also tested in the biofilm/MIC test kit for its mitigation of the aerobic sludge biofilm and its corrosion against the X65 carbon steel working electrode. The biofilm test kit successfully monitored the sludge biofilm's sanitization efficacy. It was found that 100 ppm THPS was effective in inhibiting biofilm growth, and 400 ppm THPS in treating pre-established sludge biofilm by achieving 10% corrosion rate reduction. Thus, the biofilm/MIC test kit was found to be sensitive in detecting MIC and can be used as a convenient tool in assessing biofilm corrosivity and its mitigation efficacy.

摘要

排水污泥中富含腐蚀性微生物,这些微生物会导致埋地管道的土壤腐蚀。在本研究中,通过显著的均匀腐蚀(均匀腐蚀速率为0.03毫米/年)以及与室温下的好氧污泥相比,在37℃下未通气且营养富集的X65试片上更严重的点蚀(点蚀程度高18%),证实了排水污泥生物膜对X65碳钢的微生物影响腐蚀(MIC)。采用一种新型生物膜/MIC测试试剂盒来评估好氧污泥生物膜,在10毫升生物膜测试试剂盒小瓶中于室温下培养5毫升好氧污泥7天后,确定其对碳钢具有轻度腐蚀性。还在生物膜/MIC测试试剂盒中测试了绿色杀生剂硫酸四羟甲基鏻(THPS)对好氧污泥生物膜的缓解作用及其对X65碳钢工作电极的腐蚀情况。生物膜测试试剂盒成功监测了污泥生物膜的杀菌效果。结果发现,100 ppm的THPS能有效抑制生物膜生长,400 ppm的THPS通过使腐蚀速率降低10%来处理预先形成的污泥生物膜。因此,发现生物膜/MIC测试试剂盒在检测MIC方面很灵敏,可作为评估生物膜腐蚀性及其缓解效果的便捷工具。

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