API PUBL 4681-1999 Fugitive Emissions from Refinery Process Drains Volume III Process Drain Emission Calculator APIDRAIN Version 1.0《流体排放量从炼油过程中的排水渠.第3卷.过程中流失的排放计算器 apidrain 1.0版的磁.pdf
《API PUBL 4681-1999 Fugitive Emissions from Refinery Process Drains Volume III Process Drain Emission Calculator APIDRAIN Version 1.0《流体排放量从炼油过程中的排水渠.第3卷.过程中流失的排放计算器 apidrain 1.0版的磁.pdf》由会员分享,可在线阅读,更多相关《API PUBL 4681-1999 Fugitive Emissions from Refinery Process Drains Volume III Process Drain Emission Calculator APIDRAIN Version 1.0《流体排放量从炼油过程中的排水渠.第3卷.过程中流失的排放计算器 apidrain 1.0版的磁.pdf(83页珍藏版)》请在麦多课文档分享上搜索。
1、 Access to Additional Content for PUBL 4681 (Click here to view the publication) This Page is not part of the original publication This page has been added by IHS as a convenience to the user in order to provide access to additional content as authorized by the Copyright holder of this document Clic
2、k the link(s) below to access the content and use normal procedures for downloading or opening the files. Files associated with PUBL 4681 Information contained in the above is the property of the Copyright holder and all Notice of Disclaimer however, it is suggested that the user consider purchase o
3、f the entire set to gain a complete understanding of fugitive emissions from refinery process drains. I STD=API/PETRO PUBL 4bBL-ENGL 1994 U7322qU 0626785 983 E ABSTRACT Emissions from refinery process drains are under increasing regulatory scrutiny, particularly with respect to volatile organic comp
4、ounds (VOCs) and hazardous air pollutants (HAPS). Drain emissions are currently estimated using EPAs AP-42 factor for non-methane hydrocarbons. The factor is now considered obsolete because it does not reflect design modifications that have resulted in significant reductions in emissions. As a resul
5、t, the AP-42 factor over-predicts emission rates in many cases. API has recently sponsored projects that investigate emissions from process drains and that develop mechanistic models to predict VOC and HAP emission rates based on mass transfer fundamentals and conservation of mass. In this project,
6、API has funded the development of a user-friendly model called APIDRAIN that incorporates a suite of procedures for estimating emission rates from refinery process drains. In addition to the mass transfer model, APIDRAIN also provides an option to estimate emission rates using emission factors, corr
7、elation equations, and a stripping efficiency estimation procedure. Users may create process units, and within each process unit, specify the drain estimation procedure used. The level of detail in reports generated ranges from a simple facility overview to a detailed categorization of emission rate
8、s of specific chemical compounds from individual drains within each process unit. The APIDRAIN model will enable users to easily categorize drains and report drain emission rates in various process units based on the quality of collected analytical data of contaminants in process liquid or gas phase
9、 streams. Previous page is blank. STDmAPIIPETRO PUBL 461-ENGL 1999 I 0732290 06267b BIT = TABLE OF CONTENTS Section Page I INTRODUCTION 1-1 1 . 1 I . 2 I . 3 1.4 I . 5 1.6 2 2 .I BACKGROUND . 1-1 PRINCIPLES OF USE AND SYSTEM REQUIREMENTS . 1-2 INSTALLATION . 1-3 SAVING APIDRAIN FILES 1-4 BITING FROM
10、 APIDRAIN . 1-4 TECHNICAL SUPPORT 1-4 USING APIDRAIN 2-1 START-UP . 2-1 2.2 FACILITY DESCRIPTION 2-3 2.3 APIDRAIN TOOLBAR ICONS 2-5 2.4 PROCESS DATA ENTRY 2-7 2.4.1 Creating Process Units and Drains . 2-7 2.4.2 Use of AP-42 Zero/Pegged Factors 2-11 2.4.3 2.4.4 Use of Stripping Efficiency Factor Esti
11、mation Method . 2-14 2.4.5 Use of the UT Drain Model 2-19 REPORT SET-UP AND PRINTING . 2-24 Use of OVA Screening Values 2-13 2.5 3 3.1 3.2 MODEL EQUATIONS . 3- 1 USE OF STRIPPING EFFICIENCY FACTORS . 3-1 MODELING EQUATIONS FOR THE UT DRAIN MODEL . 3-5 3.2.1 Sealed Drain . 3-5 3.2.2 Unsealed (Open) D
12、rain . 3-10 Previous page is blank . STD-APIIPETRO PUBL 4681-ENCL 1999 m 0732290 0626787 75b = 3.3 TEMPERATURE-CORRECTED FACTORS . . 3-1 3 3.3. I 3.3.2 Diffusion Coefficients . . . . . . . . . . . . . . 3-1 3 Viscosities . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 5 3.3.3 Phase Densiti
13、es 3-16 4 4.1 4.2 MODEL “WORK-AROUNDS” FOR EXCELm 97 . 4-1 WARNING DISPLAY FOR CHE-NAMELIST FORMULA REFERENCE . 4-1 INITIATION OF STRIPPING EFFICIENCY MODEL 4-1 5 REFERENCES 5-1 Appendix A COMPARISON OF METHODS FOR CALCULATING HENRYS LAW COEFFICIENTS A-I Appendix B ESTIMATION OF DIFFUSION COEFFICIEN
14、TS BY DIFFERENT CORRELATIONS . . . B-1 Appendix C CONVERSION FACTORS . C-I STD-API/PETRO PUBL 468L-ENGL 1999 0 0732270 Ohtb7BB b92 Fiaure Figure 2.1 Figure 2.2 Figure 2.3 Figure 2.4 Figure 2.5 Figure 2.6 Figure 2.7 Figure 2.8 Figure 2.9 LIST OF FIGURES Page Enable Macro Dialog Box 2-1 APIDRAIN Start
15、-up Dialog Box. . 2-2 New Facility Worksheet . 2-2 Author Information . 2-3 General Facility Information Sheet 2-4 Facility Operation Sheet 2.5 Contact Information Sheet . 2-5 Add Process Unit Dialog 1 . 2-7 Process Unit Worksheet Prior to Drain Entry . 2-8 Figure 2.1 O Add New Drain Dialog Box . 2-
16、9 Figure 2.1 I Example of Drain I.D. After Use of Arrow Key to Edit Name 2-9 Figure 2.12 Process Unit Worksheet After Drain Emission (Zero Default Value) 2-10 Figure 2.13 Process Unit Characterized by 3 AP-42 Zero/Pegged Factors . 2-12 Figure 2.14 Facility Sheet After a Drain Has Been Added . 2-13 F
17、igure 2.1 5 Drain Emissions from AP-42 and OVA Methods 2-14 Figure 2-16 Facility Worksheet Summary with OVA Correlation Method Added . 2-15 Figure 2.1 7 Stripping Efficiency Model Data Entry Screen 2-16 Figure 2.1 8 Drain Worksheet Displaying Scroll List of Chemicals . 2-18 Figure 2.19 Drain Workshe
18、et Showing Summary of Emission Rates from Each Influent . 2-19 Figure 2.20 UT Model Drain Characterization Worksheet . 2-21 Figure 2.21 UT Drain Worksheet Showing Emission Summary for Each Chemical Compound 2-23 Figure 2.22 UT Model Worksheet with Unhidden Chemical Properties . 2-24 Figure 2.23 Dial
19、og Box for Selection of OVA Correlation in Report Output . 2-25 Figure 2.24 Example of Emission Report Screen in APIDRAIN 2-26 Figure 2.25 Printer Options Toolbar 2-27 Figure 2.26 Page Set-up Options 2-27 STD-APIIPETRO PUBL 4681-ENGL 1999 0732290 Ob26787 529 m Figure 2.27 Figure 2.28 Figure 2.29 Fig
20、ure 3.1 Figure 3.2 Figure 4.1 Figure 4.2 Figure 4.3 Example of Facility Emission Summary Report 2.28 Process Unit Emission Report 2.28 Drain Emission Summary Report . 2.29 Schematic Representations of Unsealed and Sealed Drains 3-2 Modeled Density of Water by Non-Linear Least Squares Regression Tech
21、nique 3-17 Dialog Box with Che-Namelist Formula Reference 4.1 Stripping Efficiency Model Worksheet with “#NAME? Notation 4.2 Stripping Efficiency Model Worksheet After Saving Procedure 4-3 sTD.API/PETRO PUBL 468L-ENGL 1999 = 0732290 Ob26790 240 LIST OF TABLES Paqe Table 1-1 Applicability of Drain Em
22、ission Estimation Procedures in APIDRAIN Model . 1-2 Table 2-1 AP-42 Zero and Pegged Emission Factors .2-1 I Table 3-1 Table 3-2 Stripping Efficiency Factors for High Volatility Compounds .3-4 Table 3-3 Table 34 Table A-I Comparison of Henrys Law Coefficient Estimation Methods with Measured Data . A
23、-3 Table B-I Comparison of Diffusion Coefficients by Gilliland and Wilke-Chang Correlations Using Molar Volume at Compound Boiling Point and at 20 OC . B-3 Examples of Compound Volatility in Stripping Efficiency Model 3-3 Stripping Efficiency Factors for Moderate Volatility Compounds . 34 Stripping
24、Efficiency Factors for Low Volatility Compounds 3-5 STD.API/PETRO PUBL 4b82-ENGL 1777 m 0732270 Ob2b79L 287 m Section 1 INTRODUCTION 1.1 BACKGROUND Emissions from refinery process drains are under increased regulatory scrutiny, particularly with respect to volatile organic compounds (VOCs) and hazar
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