NACE 08113-2013 Corrosion Problems and Renewal Technologies in Municipal Wastewater Systems (Item No 24251).pdf
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1、NACE International 1 Item No. 24251NACE International Publication 08113 This Technical Committee Report has been prepared by NACE3 International Task Group (TG) 466,* “Identifying Corrosion Problems and Mitigation Strategies in Wastewater Systems.” Corrosion Problems and Renewal Technologies in Muni
2、cipal Wastewater Systems November 2013, NACE International This NACE International (NACE) technical committee report represents a consensus of those individual members who have reviewed this document, its scope, and provisions. Its acceptance does not in any respect preclude anyone from manufacturin
3、g, marketing, purchasing, or using products, processes, or procedures not included in this report. Nothing contained in this NACE report is to be construed as granting any right, by implication or otherwise, to manufacture, sell, or use in connection with any method, apparatus, or product covered by
4、 letters patent, or as indemnifying or protecting anyone against liability for infringement of letters patent. This report should in no way be interpreted as a restriction on the use of better procedures or materials not discussed herein. Neither is this report intended to apply in all cases relatin
5、g to the subject. Unpredictable circumstances may negate the usefulness of this report in specific instances. NACE assumes no responsibility for the interpretation or use of this report by other parties. Users of this NACE report are responsible for reviewing appropriate health, safety, environmenta
6、l, and regulatory documents and for determining their applicability in relation to this report prior to its use. This NACE report may not necessarily address all potential health and safety problems or environmental hazards associated with the use of materials, equipment, and/or operations detailed
7、or referred to within this report. Users of this NACE report are also responsible for establishing appropriate health, safety, and environmental protection practices, in consultation with appropriate regulatory authorities if necessary, to achieve compliance with any existing applicable regulatory r
8、equirements prior to the use of this report. CAUTIONARY NOTICE: The user is cautioned to obtain the latest edition of this report. NACE reports are subject to periodic review, and may be revised or withdrawn at any time without prior notice. NACE reports are automatically withdrawn if more than 10 y
9、ears old. Purchasers of NACE reports may receive current information on all NACE International publications by contacting the NACE FirstService Department, 1440 South Creek Drive, Houston, Texas 77084-4906 (telephone +1 281-228-6200). Foreword An increasing number of wastewater structures, systems,
10、and components are experiencing extreme corrosion and deterioration. Hydrogen sulfide (H2S) corrosion and microbiologically influenced corrosion (MIC) are principal contributors to the problems. The purpose of the report is to increase awareness of the problem of corrosion, and to provide a high-lev
11、el overview of the current state-of-the-practice and current state-of-the-art renewal technologies for rehabilitation, repair, and replacement of existing systems, structures, and components in wastewater systems. This report is intended for use by design engineers, decision makers, and other stakeh
12、olders in municipalities who are involved with the management, design, construction, maintenance, and/or operation of potable, sewer, and storm water systems, components, and structures. Chair Eric Dupr, Southern Trenchless Solutions, Houston, TX. NACE International 2 NACE Task Group (TG) 466, Ident
13、ifying Corrosion Problems and Mitigation Strategies in Wastewater Systems, prepared this technical committee report. TG 466 is administered by Specific Technology Group (STG) 08, Corrosion Management, and it is sponsored by STG 03, Coatings and Linings, ProtectiveImmersion and Buried Service. This t
14、echnical committee report is issued by NACE under the auspices of STG 08. NACE technical committee reports are intended to convey technical information or state-of-the-art knowledge regarding corrosion. In many cases, they discuss specific applications of corrosion mitigation technology, whether con
15、sidered successful or not. Statements used to convey this information are factual and are provided to the reader as input and guidance for consideration when applying this technology in the future. However, these statements are not intended to be recommendations for general application of this techn
16、ology, and must not be construed as such. Table of Contents Definitions 3 Section 1: Introduction . 4 1.1 Background 4 1.2 Purpose of This Report 4 1.3 RenewalRepair, Rehabilitation, and Replacement Terminology . 4 Section 2: Wastewater System Issues . 5 2.1 General Discussion 5 2.2 Summary of Waste
17、water Issues 6 Section 3: Hydrogen Sulfide Corrosion 7 3.1 Significance of Hydrogen Sulfide Corrosion in Wastewater Systems . 7 3.2 Basic Mechanisms of Hydrogen Sulfide Corrosion 7 3.2.1 Sulfuric Acid Corrosion 7 3.2.2 Direct Hydrogen Sulfide Attack of Metals 9 3.3 Factors Affecting Corrosion 9 3.4
18、Major Hydrogen Sulfide Corrosion Target Areas . 10 3.4.1 Gravity Sewers 11 3.4.2 Pump Stations and Force Mains . 11 3.4.3 Wastewater Treatment Facilities . 12 3.5 Approaches for Identifying Existing or Potential Corrosion Problems 12 Section 4: Characteristics of Wastewater and Renewal Technologies
19、14 4.1 Sewer Mains 14 4.2 Sewer Laterals . 22 4.3 Manholes . 26 4.4 Ancillary Structures 29 4.5 Force Mains . 30 Section 5: Additional Technology Considerations 33 5.1 Construction and Life-Cycle Costs . 33 5.2 Description of Selected Current, Emerging, and Novel Technologies 34 5.3 Long-Term Perfor
20、mance and Testing 41 5.4 Other Typical Design Considerations . 41 5.5 Decision Support for Choice of Rehabilitation vs. Replacement, and Choice of Rehabilitation Systems . 43 Section 6: Cross-Cutting Innovations . 43 6.1 New Materials 44 6.2 Wastewater Innovations . 44 6.3 Decision Support 44 6.4 Ac
21、celerating Adoption of New Technologies 45 6.5 Observations on Successful Programs 47 Section 7: Brief Overview of Condition Assessment 48 7.1 Brief General Description of Condition Assessment 48 7.2 Dynamics of Wastewater System Failure . 48 7.3 Inspection Technologies 49 7.4 Gaps in Current Knowle
22、dge . 49 Section 8: Summary . 51 References. 51 Additional Resources . 52 Appendix A: Selected NACE/SSPC Standards for Surface Preparation of Infrastructures 52 NACE International 3 Definitions Access pits or insertion pits: Pits to allow proper access for equipment or personnel to enter a buried pi
23、pe or structure. Comminutor: A machine that breaks up solids. Cured-in-place pipe (CIPP): A hollow cylinder consisting of a polyester- and/or glass-reinforced plastic fabric tube with cured thermosetting resin. The CIPP is formed within an existing pipe and takes the shape of the pipe. Fines: Partic
24、les smaller than average in a mixture of particles varying in size. Folded pipe: Pipe that has been manufactured and calibrated in a round shape, and then subsequently cooled and deformed into a folded shape for insertion into the existing pipe. Formed pipe: A folded pipe that has been inserted into
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