About

The 10th China International Petroleum and Petrochemical Corrosion and Protection Technology Exchange Conference

Main Content

(1) Oil & Gas Field Enterprises
1. Digital twin and AI-enabled intelligent monitoring and early warning technologies for corrosion risks in oil and gas field pipelines/wellbores; 2. Whole-life-cycle corrosion integrity management and risk assessment systems for oil and gas field equipment and facilities;
3. Corrosion mechanisms and control technologies for wellbore and surface systems under CCUS/supercritical CO₂ conditions; 4. Novel corrosion-resistant materials for oil and gas wells in extreme environments with high sulfur/high salt/ultra-deep/high-temperature and high-pressure conditions (bimetallic composite pipes, corrosion-resistant alloys, non-metallic composite materials);
5. Applications of corrosion big data, large-scale models, and intelligent diagnosis in oil and gas field anti-corrosion decision-making; 6. Digital and intelligent monitoring and remote control technologies for cathodic protection of oil and gas field pipelines/storage tanks/stations;
7. Intelligent detection of corrosion failure for oil and gas fields (robotic scanning, electromagnetic ultrasonic, optical fiber sensing) and life prediction; 8. Remediation of corrosion-related hidden hazards and intelligent upgrading of aging oil and gas field pipeline networks/facilities;
9. Greening and long-acting innovation of corrosion inhibitors, anti-corrosion coatings, and lining technologies for oil and gas fields; 10. Integrated corrosion prevention technology roadmaps, standard systems, and gene library construction for oil and gas fields;
11. New technologies and processes for plastic-lined steel and composite materials for surface and downhole equipment and facilities in oil and gas fields; 12. Intelligent fault diagnosis technologies for large-scale engineering equipment in oil (gas) fields;
13. New technologies for failure detection and analysis of non-metallic pipelines; 14. Fitness-for-service assessment and service life prediction technologies for non-metallic pipelines;
15. Green and low-carbon, low-surface-preparation, bio-based anti-corrosion coatings, and green surface engineering technologies.
(2) Refining and Chemical Enterprises
1. Corrosion challenges, control strategies, and development trends for refining units amid crude oil deterioration and long-cycle operation challenges; 2. Investigation of corrosion-related hidden hazards, intelligent upgrading, and safety control of extended-service equipment for aging refining units;
3. Integrated "monitoring-management-control" approach for corrosion leakage and upgrading of traditional anti-corrosion technologies; 4. Construction of corrosion big data platforms, large-scale models, intelligent diagnosis, and whole-process anti-corrosion decision-making systems for the refining industry;
5. Rotating equipment condition monitoring, fault diagnosis, and predictive maintenance technologies and applications; 6. Equipment safety risk assessment, hierarchical risk control, hidden hazard investigation and remediation, and standardized management;
7. Research and application of integrated whole-life-cycle corrosion prevention technologies for equipment under insulation; 8. Analysis of typical corrosion failure cases and mitigation strategies;
9. Long-term application and performance evaluation of anti-corrosion linings, coatings, and surface engineering technologies; 10. Whole-life-cycle corrosion integrity management and construction of dual prevention mechanisms for refining and chemical equipment and facilities;
11. Development and deployment of digital twin, AI-enabled intelligent monitoring and early warning, and digital and intelligent control platform for refining units; 12. Detection and mitigation of corrosion under insulation (CUI), microbiologically influenced corrosion (MIC), and stress corrosion cracking (SCC) in refining equipment.
(3) Oil & Gas Storage and Transportation
1. New advances in corrosion mechanisms, monitoring technologies, and risk assessment for oil and gas pipelines; 2. Key technologies for detection, evaluation, and repair of external coatings of long-distance pipelines;
3. Intelligentization, digitalization, and whole-life-cycle management of cathodic protection (CP); 4. Internal corrosion control technologies for pipelines, including CO₂/H₂S corrosion, and microbiologically influenced corrosion (MIC);
5. Pipeline corrosion protection technologies in complex environments such as marine, high-salt, and high-humidity conditions; 6. Corrosion big data, AI monitoring, and intelligent operation and maintenance systems for oil and gas pipelines;
7. International pipeline corrosion control standards, regulatory benchmarking, and compliance management; 8. Innovations in novel anti-corrosion materials, coatings, corrosion inhibitors, and joint repair technologies for pipelines;
9. Corrosion defect assessment, residual life prediction, and integrity management for in-service pipelines; 10. Whole-life-cycle corrosion integrity management and risk assessment systems for long-distance/gathering pipelines;
11. Corrosion mechanisms and control technologies for CCUS/supercritical CO₂ and hydrogen transportation pipelines; 12. Impact of AC/DC stray current interference on pipeline network corrosion and intelligent mitigation technologies;
13. Applications of corrosion-resistant alloys, composite pipes, green corrosion inhibitors, and long-acting coatings in pipeline networks; 14. Innovative applications of corrosion big data and intelligent diagnosis models in pipeline anti-corrosion decision-making.