API PUBL 4761-2011 API Groundwater Arsenic Manual Attenuation of Naturally-Occurring Arsenic at Petroleum Impacted Sites《石油装载站自然出现的砷衰减的API地下水中砷手册》.pdf
《API PUBL 4761-2011 API Groundwater Arsenic Manual Attenuation of Naturally-Occurring Arsenic at Petroleum Impacted Sites《石油装载站自然出现的砷衰减的API地下水中砷手册》.pdf》由会员分享,可在线阅读,更多相关《API PUBL 4761-2011 API Groundwater Arsenic Manual Attenuation of Naturally-Occurring Arsenic at Petroleum Impacted Sites《石油装载站自然出现的砷衰减的API地下水中砷手册》.pdf(102页珍藏版)》请在麦多课文档分享上搜索。
1、 API Groundwater Arsenic Manual Attenuation of Naturally-Occurring Arsenic at Petroleum Impacted Sites PUBLICATION 4761 FEBRUARY 2011 Delivering sustainable solutions in a more competitive world API Groundwater Arsenic Manual Attenuation of Naturally-Occurring Arsenic at Petroleum Impacted Sites PUB
2、LICATION 4761 FEBRUARY 2011 ERMs Austin Office 206 E. 9thSt., Suite 1700 Austin, Texas 78701 T: 512-459-4700 F: 512-459-4711 Contributing Authors Richard A. Brown, Ph.D. Roger Lee, Ph.D. Katrina Patterson, P.G. Mitch Zimmerman, P.G. Franz Hiebert, Ph.D., P.G. ii SPECIAL NOTES API publications neces
3、sarily address problems of a general nature. With respect to particular circumstances, local, state, and federal laws and regulations should be reviewed. Neither API nor any of APIs employees, subcontractors, consultants, committees, or other assignees make any warranty or representation, either exp
4、ress or implied, with respect to the accuracy, completeness, or usefulness of the information contained herein, or assume any liability or responsibility for any use, or the results of such use, of any information or process disclosed in this publication. Neither API nor any of APIs employees, subco
5、ntractors, consultants, or other assignees represent that use of this publication would not infringe upon privately owned rights. API publications may be used by anyone desiring to do so. Every effort has been made by the Institute to assure the accuracy and reliability of the data contained in them
6、; however, the Institute makes no representation, warranty, or guarantee in connection with this publication and hereby expressly disclaims any liability or responsibility for loss or damage resulting from its use or for the violation of any authorities having jurisdiction with which this publicatio
7、n may conflict. API publications are published to facilitate the broad availability of proven, sound engineering and operating practices. These publications are not intended to obviate the need for applying sound engineering judgment regarding when and where these publications should be utilized. Th
8、e formulation and publication of API publications is not intended in any way to inhibit anyone from using any other practices. All rights reserved. No part of this work may be reproduced, stored in a retrieval system, or transmitted by any means, electronic, mechanical, photocopying, recording, or o
9、therwise, without prior written permission from the publisher. Contact the Publisher, API Publishing Services, 1220 L Street, N.W., Washington, D.C. 20005. Copyright 2012 American Petroleum Institute iii FOREWORD Nothing contained in any API publication is to be construed as granting any right, by i
10、mplication or otherwise, for the manufacture, sale, or use of any method, apparatus, or product covered by letters patent. Neither should anything contained in the publication be construed as insuring anyone against liability for infringement of letters patent. Suggested revisions are invited and sh
11、ould be submitted to the Director of Regulatory and Scientific Affairs, API, 1220 L Street, NW, Washington, DC 20005. v TABLE OF CONTENTS EXECUTIVE SUMMARY IX GLOSSARY XIV 1.0 INTRODUCTION 1 1.1 PURPOSE OF MANUAL 1 1.2 SOURCES OF ARSENIC OCCURRENCE AND DISTRIBUTION 2 1.2.1 Natural Sources of Arsenic
12、 2 1.2.2 Anthropogenic Sources Of Arsenic 3 1.3 FACTORS CONTROLLING ARSENIC FATE AND TRANSPORT 4 1.4 IMPACT OF PETROLEUM HYDROCARBON RELEASES ON ARSENIC MOBILITY 6 1.5 GOVERNING PRINCIPLES 8 1.6 ORGANIZATION OF MANUAL 10 2.0 FUNDAMENTALS OF ARSENIC GEOCHEMISTRY AND NATURAL ATTENUATION AS APPLIED TO
13、PETROLEUM IMPACTED SITES 12 2.1 FUNDAMENTALS OF ARSENIC GEOCHEMISTRY 12 2.1.1 Redox Chemistry of Arsenic 12 2.1.2 pH 14 2.2 MECHANISMS OF ARSENIC MOBILIZATION/SOLUBILIZATION AT PETROLEUM IMPACTED SITES 16 2.2.1 Microbiology of Petroleum Hydrocarbon Spills 16 2.2.2 Effect of Petroleum Biodegradation
14、on Arsenic Mobility 18 2.3 NATURAL ATTENUATION MECHANISMS FOR ARSENIC 21 2.3.1 Arsenic Oxidation 23 2.3.2 Arsenic Immobilization Through Sorption 24 2.3.3 Mineral Phase Formation 25 2.3.4 Precipitation 26 2.3.5 Stability and Reversibility 26 2.4 CONCEPTUAL MODELS FOR ARSENIC NATURAL ATTENUATION27 2.
15、4.1 Release and Plume Expansion 28 2.4.2 Steady-State Plume 30 2.4.3 Retreating Plume Conditions 30 3.0 ASSESSMENT AND SITE CHARACTERIZATION TO EVALUATE ARSENIC NATURAL ATTENUATION 34 3.1 DEVELOPMENT OF A SITE-SPECIFIC CONCEPTUAL MODEL 36 3.1.1 Defining Ambient Arsenic 36 3.1.2 Defining Overall Site
16、 Conditions 38 3.1.3 Defining Petroleum Hydrocarbons and Redox Processes 40 vi 3.1.4 Defining Attenuation Processes 43 3.1.5 Defining Risk 44 3.2 USES OF THE SSCM 47 4.0 REMEDIATION TECHNOLOGIES FOR ARSENIC IN GROUNDWATER IMPACTED BY PETROLEUM HYDROCARBONS 48 4.1 HYDROCARBON REMEDIATION TECHNOLOGIES
17、 49 4.2 ARSENIC TREATMENT TECHNOLOGIES 49 4.2.1 Phytoremediation 50 4.2.2 Precipitation/Coprecipitation 50 4.2.3 Adsorption 51 4.2.4 Permeable Reactive Barriers 51 5.0 CASE STUDIES FOR ARSENIC MOBILIZATION AND ATTENUATION AT PETROLEUM IMPACTED SITES 53 5.1 AN OPERATING OKLAHOMA REFINERY 53 5.1.1 Sit
18、e Description 53 5.1.2 Ambient Conditions 53 5.1.3 Hydrocarbon Impacts 55 5.1.4 Arsenic Mobilization 55 5.2 WEST TEXAS REFINERY 57 5.2.1 Site Description 57 5.2.2 Ambient Conditions 58 5.2.3 Hydrocarbon Impacts 58 5.2.4 Arsenic Mobilization 60 5.3 FORMER RESERVE PIT 63 5.3.1 Site Description and Geo
19、logy 63 5.3.2 Ambient Conditions 64 5.3.3 Hydrocarbon Impacts 64 5.3.4 Arsenic Mobilization 65 5.3.5 Remediation Actions and Arsenic Stabilization 65 5.4 FORMER FUEL STORAGE FACILITY 65 5.4.1 Site Description 66 5.4.2 Arsenic Mobilization 67 5.4.3 Hydrocarbon Impacts 67 6.0. CONCLUSIONS 70 7.0. REFE
20、RENCES 72 7.1 CITED REFERENCES 72 7.2 ADDITIONAL READING 77 vii TABLE OF CONTENTS (CONTD) List of Tables Table 1-1 Industrial and Agricultural Uses of Arsenic (Historic and Current) Table 1-2 Summary of Arsenic Concentration in 26 Crude Oils Table 2-1 Relative Solubilities of Arsenite and Arsenate T
21、able 2-2 Effect of Microbial Metabolic Pathways on pH Table 2-3 Solubility of Metal Arsenates Table 2-4 Factors Affecting Arsenic Mobilization for Plume Expansion Stage Table 2-5 Factors Affecting Arsenic Mobilization for the Steady State Stage Table 2-6 Factors Affecting Arsenic Mobilization for Re
22、treating Plume Stage Table 3-1 Key Groundwater Geochemical Parameters for Assessment of Natural Attenuation of Arsenic at Petroleum Hydrocarbon Sites Table 3-2 Key Microbiological Parameters for Assessment of Natural Attenuation of Arsenic at Petroleum Hydrocarbon Sites Table 3-3 Molecular Hydrogen
23、Concentrations Characteristic of Reducing Zones in Groundwater Table 3-4 Examples of Ecological Benchmark Screening Concentrations for Arsenic in Various Media Table 4-1 Hydrocarbon Remediation Technologies List of Figures Figure 1-1 Arsenic Concentrations in Groundwater Across the U.S. Figure 1-2 A
24、rsenic Speciation in Groundwater Regimes Figure 1-3 Conceptual Model of Biodegradation of a Petroleum Hydrocarbon Plume Figure 1-4 Attenuation of Petroleum Sites Figure 1-5 Conceptual Model of Arsenic Mobility and Attenuation at a Petroleum Hydrocarbon Plume Figure 2-1 Standard Electrode Potential f
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