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Corrosion Inhibition by Co-Immobilized Lysozyme and Lipase in Circulating Cooling Water System 被引量:3

Corrosion Inhibition by Co-Immobilized Lysozyme and Lipase in Circulating Cooling Water System
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摘要 The corrosion inhibition performance of co-immobilized lysozyme and lipase was investigated in a recirculating cooling water system. Four methods were carried out in co-immobilization, and the operating parameters were optimized by using the respond surface methodology(RSM). The corrosion inhibition performance of co-immobilized lipase and lysozyme was evaluated by weight loss measurements and electrochemical measurements. The results revealed that the optimal co-immobilization method should be the sequential immobilization of lysozyme and then lipase. The inhibition efficiency was 86.10% under the optimal co-immobilized conditions. Electrochemical data showed that co-immobilized lysozyme and lipase was a mixed-type inhibitor and the corrosion inhibition efficiency was 81%. The corrosion inhibition performance of co-immobilized lysozyme and lipase was investigated in a recirculating cooling water system. Four methods were carried out in co-immobilization, and the operating parameters were optimized by using the respond surface methodology(RSM). The corrosion inhibition performance of co-immobilized lipase and lysozyme was evaluated by weight loss measurements and electrochemical measurements. The results revealed that the optimal co-immobilization method should be the sequential immobilization of lysozyme and then lipase. The inhibition efficiency was 86.10% under the optimal co-immobilized conditions. Electrochemical data showed that co-immobilized lysozyme and lipase was a mixed-type inhibitor and the corrosion inhibition efficiency was 81%.
出处 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2017年第2期21-32,共12页 中国炼油与石油化工(英文版)
基金 financially supported by the National Natural Science Foundation of China (project 21077133) the Natural Foundation of Shandong Province and the Top Talent Project of China University of Petroleum (16RC17040003)
关键词 CIRCULATING cooling water CO-IMMOBILIZATION LYSOZYME LIPASE corrosion INHIBITION circulating cooling water co-immobilization lysozyme lipase corrosion inhibition
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