ASTM E2531-2006(2014) Standard Guide for Development of Conceptual Site Models and Remediation Strategies for Light Nonaqueous-Phase Liquids Released to the Subsurface《开发排放到地下的轻非水相.pdf
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1、Designation: E2531 06 (Reapproved 2014)Standard Guide forDevelopment of Conceptual Site Models and RemediationStrategies for Light Nonaqueous-Phase Liquids Released tothe Subsurface1This standard is issued under the fixed designation E2531; the number immediately following the designation indicates
2、the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONThis guide provides a framework for developing a
3、 light nonaqueous phase liquid (LNAPL)conceptual site model (LCSM) and for using that LCSM in a corrective action decision framework.LNAPLs are most commonly petroleum or petroleum products liquids. Historically, subsurfaceLNAPL distribution has been conceptualized based on the thickness observed in
4、 monitoring wells.However, these conceptualizations often result in an insufficient risk analysis and frequently lead topoor remedial strategies. By using this guide, the user will be able to perform a more appropriateassessment and develop an LCSM from which better remedial decisions can be made.Th
5、e design of this guide is a “tiered” approach, similar to the risk-based corrective action (RBCA)process (Guides E1739 and E2081), where an increase in tiers results from an increase in the sitecomplexity and site-specific information required for the decision-making process. The RBCAguidesapply to
6、LNAPL and to dissolved and vapor phases. This guide supplements the RBCA guides byproviding more information about identifying LNAPL, linking the LCSM to the RBCA process, anddescribing how the presence of LNAPL impacts corrective action at sites.In addition to developing the LCSM, the components of
7、 this guide will support the user inidentifying site objectives, determining risk-based drivers and non-risk factors, defining remediationmetrics, evaluating remedial strategies, and preparing a site for closure. If the processes in this guideare adequately followed for sites with LNAPL, it is expec
8、ted that more efficient, consistent,economical, and environmentally protective decisions will be made.1. Scope1.1 This guide applies to sites with LNAPL present asresidual, free, or mobile phases, and anywhere that LNAPL isa source for impacts in soil, ground water, and soil vapor. Useof this guide
9、may show LNAPL to be present where it waspreviously unrecognized. Information about LNAPL phasesand methods for evaluating its potential presence are includedin 4.3, guide terminology is in Section 3, and technicalglossaries are in Appendix X7 and Appendix X8. Fig. 1 is aflowchart that summarizes th
10、e procedures of this guide.1.2 This guide is intended to supplement the conceptual sitemodel developed in the RBCA process (Guides E1739 andE2081) and in the conceptual site model standard (GuideE1689) by considering LNAPLconditions in sufficient detail toevaluate risks and remedial action options.1
11、.3 Federal, state, and local regulatory policies and statutesshould be followed and form the basis of determining theremedial objectives, whether risk-based or otherwise. Fig. 1illustrates the interaction between this guide and other relatedguidance and references.1.4 Petroleum and other chemical LN
12、APLs are the primaryfocus of this guide. Certain technical aspects apply to denseNAPL(DNAPL), but this guide does not address the additionalcomplexities of DNAPLs.1.5 The composite chemical and physical properties of anLNAPL are a function of the individual chemicals thatmake-up an LNAPL. The proper
13、ties of the LNAPL and thesubsurface conditions in which it may be present vary widelyfrom site to site. The complexity and level of detail needed inthe LCSM varies depending on the exposure pathways andrisks and the scope and extent of the remedial actions that areneeded. The LCSM follows a tiered d
14、evelopment of sufficient1This guide is under the jurisdiction ofASTM Committee E50 on EnvironmentalAssessment, Risk Management and Corrective Action and is the direct responsibil-ity of Subcommittee E50.04 on Corrective Action.Current edition approved Nov. 1, 2014. Published December 2014. Originall
15、yapproved in 2006. Last previous edition approved in 2006 as E2531061. DOI:10.1520/E2531-06R14.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1detail for risk assessment and remedial action decisions to bemade. Additional data collect
16、ion or technical analysis istypically needed when fundamental questions about theLNAPL cannot be answered with existing information.1.6 This guide does not develop new risk assessmentprotocols. It is intended to be used in conjunction with existingrisk-based corrective action guidance (for example,
17、GuidesE1739 and E2081) and regulatory agency requirements (forexample, USEPA 1989, 1991, 1992, 1996, 1997).1.7 This guide assists the user in developing an LCSM uponwhich a decision framework is applied to assist the user inselecting remedial action options.1.8 The goal of this guide is to provide s
18、ound technicalunderpinning to LNAPL corrective action using appropriatelyscaled, site-specific knowledge of the physical and chemicalprocesses controlling LNAPL and the associated plumes inground water and soil vapor.1.9 This guide provides flexibility and assists the user indeveloping general LNAPL
19、 site objectives based on theLCSM. This guide recognizes LNAPL site objectives aredetermined by regulatory, business, regional, social, and othersite-specific factors. Within the context of the Guide E2081RBCA process, these factors are called the technical policydecisions.1.10 Remediation metrics a
20、re defined based on the siteobjectives and are measurable attributes of a remedial action.Remediation metrics may include environmental benefits, suchas flux control, risk reduction, or chemical longevity reduction.Remediation metrics may also include costs, such as installa-tion costs, energy use,
21、business impairments, waste generation,water disposal, and others. Remediation metrics are used in thedecision analysis for remedial options and in tracking theperformance of implemented remedial action alternatives.1.11 This guide does not provide procedures for selectingone type of remedial techno
22、logy over another. Rather, itrecommends that technology selection decisions be based onthe LCSM, sound professional judgment, and the LNAPL siteobjectives. These facets are complex and interdisciplinary.Appropriate user knowledge, skills, and judgment are required.1.12 This guide is not a detailed p
23、rocedure for engineeringanalysis and design of remedial action systems. It is intended tobe used by qualified professionals to develop a remediationstrategy that is based on the scientific and technical informationcontained in the LCSM. The remediation strategy should beconsistent with the site obje
24、ctives. Supporting engineeringanalysis and design should be conducted in accordance withrelevant professional engineering standards, codes, and re-quirements.1.13 ASTM standards are not federal or state regulations;they are voluntary consensus standards.1.14 The following principles should be follow
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