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S'.:?*?;. ' V- 3M Organic Vapor Monitor Sampling Guide Organic Vapor Monitqri#350C}| Organic Vapor Monitor With BacR-Up Section #352H December, 1982 , ' & ; ' . Ut V.V;& -S; V# i 411 ' ft.1 , t'A'Xv., ' i>' ` , * SiANOTHER STEP TOWARDS BETTER OCCUPATIONAL HEALTH AND SAFI ; f A'.- 'V ^Occupational Health and Safety Products Divisl n/3M ^ 220-7W 3M Center >. C St. Paul, Minnesota 55144 3M 002252 Kr Use of the Sampling Guide Tables: The following table summarizes OSHA standards, 3M monitor sampling information and recommended sampling procedures for a variety of organic compounds for which the 3M Organic Vapor Monitors can be used to acccurately determine the environmental exposures. The table is not exhaustive and will be updated periodically. To obtain periodic updates, return the registration card contained in every box of monitors to 3M Company. A. OSHA Standards The OSHA TWA-PEL's (Time Weighted Average) given as workshift time weighted averages are taken from the Federal Register as found in 29 CRF 1910.1000 as of 1 January 1977 and are summarized in the "NIOSH/OSHA Pocket Guide to Chemical Hazards." Also included in parentheses are the current ACGIH (American Conference of Governmental Industrial Hygienist) values in cases where they differ from OSHA TWA's. These values are subject to change and appropriate publications should be consulted for the most current information. B. Monitor Samples Information * Sampling Rate All sampling rates have an accuracy of 5%. The (*) compounds in the Sampling Guide tables have been subjected to an extensive amount of laboratory work to verify the sampling rate. The sampling rates given for the remaining compounds in this table were determined from empirical relationships as outlines in a publication on Sampling Rate Validation. The sampling rates are tabulated as cubic centimeters/minute and micrograms/ppm-hour. The publication on Sampling Rate Validation Protocol can be obtained upon request from 3M Company. The top section of the #3520 (containing the primary absorbent) has the same geometric dimension as the 3M Organic Vapor Monitor #3500. Therefore, the sampling rates are the same, and also have an accuracy of 5%. * Capacity The capacity of the monitor for each individual compound is a function of molecular structure, vapor pressure, environmental conditions, etc. The capacity values are tabulated in Section II - Analysis Guide, and are used to determine the length of a recommended sampling period. Because of the backup section, the effective sampling capacity of the Organic Vapor Monitor #3520 is four times greater than the values listed for the Organic Vapor Monitor #3500/3510. When sampling environments containing contaminant mixtures on environments with high relative humidity, it is difficult to accurately define the diffusions! sampling capacity. Therefore, under these conditions, the weight (Ws) collected by the secondary absorbent of the backup section can be compared with the weight (Wp) collected by the primary absorbent to determine sample validity. The ration Ws/Wp must be equal to or less than 0.50. C. Length of Sampling Period 1. General 3500/3510 When sampling for organic contaminants, full workshift sampling periods are recommended as the most comprehensive measures of worker exposure. When sampling some organic contaminants, sampling periods shorter than a full workshift are required in order to sample within the recommended capacity of the monitor. Under these circumstances, sequential sampling with several monitors can be performed. 3520 For those compounds where the recommended length of the sampling period for the Organic Vapor Monitor 3500/3510 is less than a full workshift, the length of the sampling period can be increased by a factor of four when using the Organic Vapor Monitor #3520. Because of the increased effective capacity of the Organic Vapor Monitor #3520, sampling periods longer than a full workshift are possible. The preferred recommendation is for full workshift sampling periods. 1 3H 002253 2. Effect on Humidity Recommended sampling periods have been tabulated for concentration ranges from .1 to .5 times the PEL and from .5 to 3 times the PEL for relative humidities less than or greater than 70%. These recommended sampling periods should not be exceeded when using OVM #3500/3510. 3. 'Minimum Sampling Time To confirm quantitatively the presence and concentration of a contaminant in the atmosphere, most analysts must have a minimum of 10 micrograms for G.C. analysis. A sampling period of at least 15 minutes is recommended even when 10 micrograms of the contaminant could be collected In a shorter period. For a contaminant at a low concentration level, the sampling rate of micrograms/ppm-hr. should be used to verify a sampling period during which at least 10 micrograms of the contaminant would be collected. D. Short Term Exposure Limit (STEL) The ACGIH has recommended a short-term exposure limit (STEL) as a maximum concentration to which workers can be exposed for a period up to 15 minutes continuously. No more than four (4) such excursions per day are permitted, with at least 60 minutes between exposure periods, provided that the recommended ACGIH daily TLV-TWA also is not exceeded. The STEL values summarized in the following tables can be found in the "Threshold Limit Values for Chemical Substances in Workroom Air Adopted by ACGIH for 1980." The monitor is recommended for STEL sampling If, during the 15 minute sampling period, the monitor will collect a minimum of 10 micorgrams of the contaminant when sampling at the STEL concentrations. E. Unsuitable Compounds The OVM is not recommended for the compounds listed below because of adverse or inadequate interactions with the sorbent material. This list Is representative of classes of compounds not suitable for use with the OVM. Compounds not on this list or the Compound Guide should be handled by consultation with OH&SP Technical Service. Compounds Ammonia Carbon Monlxide (1) Ethylene Oxide (2) Formaldehyde (3) Hydrogen Sulfide Isocyanates Methane, Ethane, Propane Methyl Alcohol (Methanol) Methyl Chloride Methyl, Dimethyl, Trimethyl Amines Organic Solids Sulfur Dioxide (D Carbon Monlxide can be monitored using 3M Monitor #3400 (2) Ethylene Oxide can be monitored using 3M Ethylene Oxide Monitor #3550/3551 (3) Formaldehyde can be monitored using 3M Formaldehyde Monitor #3750/3751 F. Compounds Printed in Bold Type All compounds listed in bold type In the OVM Sampling Guide will be analyzed by 3M for the OVM #3510. fFor more information contact your 3M Sales Representative or your local OH&SP Safety Products Distributor. tPre-paid analysis for up to three compounds. 2 3M 002254 COMPOUND Acetone* Acetonitrile* Acrylonitrile Ally! Alcohol Allyl Chloride n-Amyl Acetate* s-Amyl Acetate n-Amyl Alcohol* 1-Amyl Alcohol* s-Amyl Alcohol Benzene* Benzyl Chloride Bromoform Butadiene n-Butyl Acetate s-Butyl Acetate t-Butyl Acetate Butyl Acrylate Butyl Alcohol* s-Butyl Alcohol t-Butyl Alcohol Butyl Cellosolve* (2-Butoxyethanol) Butyl Glycldyl Ether (BGE) p-tert-Butyltoluene* Camphor Carbon Disulfide Carbon Tetrachloride* Cellosolve* (2-Ethoxyethanol) Cellosolve Acetate* (2-Ethoxyethyl Acetate) Chlorobenzene* o-Chlorostyrene 0- Chlorotoluene Chlorobromomethane* Chloroform* 1- Chloro-1-nltropropane Chloroprene (2-Chloro-l,3-butadiene) Cumene* Cyclohexane* Cyclohexanol* Cyclohexanone* Cyclohexene* Dlacetone Alcohol* o-Dichlorobenzene* p-Dichlorobenzene* 1.1- Dlchloroethane 1.2- Dlchloroethylene* 1,1-Dichloro-l-nltroethane ichloroethyl Ether Diisobutyl Ketone* (DIBK) Sampling Guide RECOMMENDED SAMPLING PERIOD (Hrsj RH< 70% RH > 70% SHORTTERM EXPOSURE LIMIT (15 min.) -1-.S .5-3 -1-.5 .5-3 STEL PEL PEL PEL PEL (ppm) 1 0.5 1 0.5 82 61 82 61 88 86 88 86 88 88 88 88 88 84 84 84 84 84 88 86 88 86 88 86 0.4 NR 0.4 NR 87 63 85 84 88 63 63 86 1250 60 -- 2 2 150 -- 125 -- 25 -- -- 1250 200 250 250 OVM Usage Yes Yes No No Yes Yes Yes Yes Yes Yes Yes 88 84 86 87 88 88 88 88 82 88 85 63 63 86 86 86 86 61 86 83 -- 150 Yes 150 Yes -- 20 Yes 3 No _ 20 Yes 150 Yes 88 84 150 Yes 8a 88 85 86 -- 75 Yes 88 86 75 Yes 8 1.5 6 1.5 84 63 250 50 Yes Yes 88 88 86 64 -- -- 88 83 88 88 86 62 86 86 75 Yes 375 Yes -- -- 83 88 88 88 62 86 86 86 -- 75 Yes -- 110 Yes 8 1.5 4 1.5 250 Yes 1 0.2 1 0.2 88 86 88 86 250 10 10 Yes Yes Yes 88 86 -- OSHA Standard TWA-PEL ( ) ACGIH TLV C-Celllng (ppm) SAMPLING RATE (cc/mln.) Microoram ppmftir. 1000 40 2 2 1 100 125 (100) 100 (100) 10 1 0.5 1000 150 200 200 (10) 100 (50) 150 100 50 50 10 2 20 10 200 (100) 100 40.1 48.2 43.8 40.4 35.1 26.0 27.2 31.4 32.3 32.3 35.5 27.2 29.3 42.8 31.6 28.6 29.4 28.7 34.3 34.8 35.2 28.2 27.0 20.7 21.4 42.8 30.2 32.4 26.6 5.71 4.85 5.70 5.75 6.63 7.36 8.68 6.78 6.98 6.98 6.78 8.48 18.19 5.67 9.00 8.14 8.37 9.01 5.55 6.32 6.39 8.15 8.61 7.51 7.11 7.88 11.41 7.14 8.60 75 (50) (50) 200 50 (10) 20 25 (10) 50 300 50 50 300 50 50 75 100 (200) 200 10 15 (5) 50 29.3 26.0 27.3 34.4 33.5 30.4 32.2 24.5 32.4 29.5 28.9 32.3 282 27.8 27.8 33.2 35.2 28.5 26.1 24.6 8.12 8.87 8.51 10.89 9.78 9.25 7.03 8.82 6.67 7.24 6.94 6.49 7.15 10.03 10.03 8.07 8.38 10.07 9.16 8.56 3 3H 002255 Sampling Guide COMPOUND RECOMMENDED SAMPLING PERIOD (HimJ RH<70% RH >70% .1.5 .5*3 .1-.5 .5-3 PEL PEL PEL PEL Dimethyl Formamide (DMF) p-Dloxane 88 88 88 84 Dlpropylene Glycol Methyl Ether Enflurane (2-Chloro-1,1,2 trifluoroethyl dlfluoromethyl ether) Eplchlorohydrin (1 -Chloro-2,3-epoxy-propane) Ethyl Acetate* Ethyl Acrylate Ethyl Alcohol Ethyl Benzene Ethyl Bromide* Ethyl Butyl Ketone (3-Heptanone) Ethyl Ether Ethyl Formate Ethylene Chlorohydrln (2-Chloroethanol) Ethylene Dlbromide* (1,2-Dlbromomethane) Ethylene Dlchloride* (1,2-Dichloroethane) Furfural Furfuryl Alcohol 88 88 84 86 88 86 71 41 88 64 4 0.5 4 0.5 88 84 1 0.2 1 0.2 88 86 0.3 NR 0.3 NR 3 0.5 3 0.5 88 86 88 86 88 88 88 64 88 86 Glycldol (2,3-Epoxy-l-propanol) Halothane (2-Bromo-2-chloro-1,1,1 trifluoroethane) Heptane* 8 8 8 8 8 2 86 64 42 Hexach loroethane Hexane* 88 88 8 1.5 4 1.5 s-Hexyl Acetate Isoamyl Acetate Isoamyl Alcohol* Isobutyl Acetate* Isobutyl Alcohol* 88 88 88 88 88 84 84 84 84 84 Isophorone* 88 86 Isopropyl Acetate Isopropyl Alcohol 82 82 62 62 Isopropyl Ether 5 0.8 4 0.8 Isopropyl Glycidyl Ether Mesityl Oxide* Mesitylene* (Trimethyl Benzene) Methyl Acetate* Methyl Acrylate Methylal (Dimethyoxymethane) Methyl Amyl Ketone (2-Heptanone) Methyl Bromide 88 88 88 86 86 86 3 0.5 3 0.5 87 63 0.3 NR 0.3 NR 88 84 4 0.5 3 0.5 SHORTTERM EXPOSURE LIMIT (IS min.) STEL (PPn) 20 -- 150 -- OVM Usage Yes Yes 5 No ___ -- -- 125 250 Yes Yes 75 Yes 500 Yes 150 Yes __ 15 Yes 15 Yes 10 Yes 75 Yes 500 3 125 _ 125 125 187 75 -- 310 500 310 75 -- 35 250 ___ 1250 150 Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes OSHA Standard TWA-PEL ( ) ACGIH TLV C-Celling (PPn) SAMPLING RATE (cc/mln.) Microgram ppm/hr. 10 100 (50) 100 (2) 5 (2) 400 25 1000 100 200 50 400 100 5 20 32.4 34.5 25.3 28.3 29.6 34.5 .32.2 51.2 27.3 36.4 28.0 36.8 38.8 33.9 29.6 5.8 7.45 9.19 12.81 6.76 7.45 7.90 5.78 7.10 9.74 7.83 6.68 7.04 6.66 13.66 50 (10) 5 50 (5) 50 (2) 500 (400) 1 500 (100) 50 100 100 150 100 (50) 25 (5) 250 400 (250) 500 (250) 50 25 25 200 10 1000 100 20 (15) 33.2 34.3 32.6 37.1 30.2 28.9 26.7 32.0 28.1 27.2 32.3 31.0 35.9 21.7 31.7 39.4 31.2 29.1 31.2 26.3 37.9 35.8 37.9 27.9 46.5 8.07 8.08 6.98 6.74 14.63 7.08 15.53 6.74 9.93 8.68 6.98 8.82 5.81 7.34 7.93 5.17 7.81 8.28 7.49 7.73 6.72 7.56 7.07 7.81 10.84 4 3M 002256 Sampling Guide COMPOUND RECOMMENDED SAMPUNG PERIOD (Hra.) RH < 70% RH >70% SHORTTERM EXPOSURE LIMIT (15 min.) 1-.5 .5-3 .1-.5 .5-3 STEL OVM PEL PEL PEL PEL (ppm) Usage Methyl Butyl Ketone* (2-Hexanone) Methyl Isobutyl Ketone* (Hexanone) Methyl Cellosolve* (2-Methoxyethanol) Methyl Cellosolve Acetate* (Ethylene Qlycol Methyl Ether Acetate) Methyl Chloroform* Methyl Cyclohexane* Methyl Cyclohexanol 8 8 8 8 6 8 8 88 88 88 88 14 2.5 6 88 4 4 6 6 1 2 4 50 Yes 125 Yes 35 Yes 35 Yes 450 Yes 500 Yes 75 Yes Methyl Ethyl Ketone* (2-Butanone) Methyl Formate 5-Methyl-3-heptanone (Ethyl Amyl Ketone) Methyl Iodide Myethyl Isobutyl Carblnol (Methyl Amyl Alcohol) Methyl Isoamyl Ketone Methyl Methacrylate Alpha Methyl Styrene* Methylene Chloride* (Dlchloromethane) Naphtha (VM&P)* Naphthalene Nonane* Octane* Pentane* 83 62 0.7 NR 0.7 NR 88 86 61 88 41 86 88 88 88 8 8 8 1 0.2 1 4 4 4 0.2 82 88 85 62 86 63 83 2.5 0.4 62 2.5 0.4 300 150 -- 10 40 150 125 -- 250 400 15 250 375 750 Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes 2-Pentanone* (Methyl Propyl Ketone) 85 Perchloroethylene (Tetrachloroethylene) 8 7 Phenyl Ether 88 Phenyl Glycidyl Ether 88 n-Propyl Acetate* n-Propyl Alcohol* Propylene Dichloride* (1,2-Dlchloropropane) Propylene Glycol Monomethyl Ether 84 88 88 88 63 63 86 86 83 64 64 84 250 150 2 15 250 250 110 150 n-Propyl Nitrate Stoddard Solvent 88 84 84 63 40 125 Styrene* 1,1,2,2-Tetrachloroethane 1,1,1,2-Tetrachloro-2,2-difluoroethane 1,1,2,2-Tetrachloro-l ,2-difluoroethane Tetrahydrofuran Toluene* 1,1,2-Trichloroethane* Trichloroethylene * 88 84 125 88 86 10 5 0.75 4 0.75 625 5 0.75 4 0.75 625 82 86 88 88 42 63 66 86 250 150 20 150 Yes Yes No Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes Yes 1,1,2-Trich loro-1,2,2-trifluoroethane 1,2,3-Trlchloropropane Vinyl Acetate 0.5 NR 0.5 NR 1250 88 88 86 64 75 20 Yes Yes Yes Vinyl Bromide Vinyl Chloride* 22 22 22 2 1.5 -- Vlnylidene Chloride Vinyl Toluene Xylene* 22 22 20 Yes 88 64 150 Yes 88 64 150 Yes OSHA Standard TWA-PEL ( ) ACQIH TLV C-Celllng (ppm) SAMPLING RATE i ec/mln.) Mlcrocram ppmmr. 100 29.7 100 30.0 25 36.3 25 29.0 7.29 7.35 6.76 8.38 350 500 100 (50) 200 100 25 30.9 28.9 28.8 36.3 45.0 26.4 10.09 6.94 8.06 6.41 6.33 7.39 5 25 100 100 100 500 (200) 300 10 (200) 500 1000 (600) 200 100 1 10 200 200 75 (100) 25 500 (100) 100 5 500 500 200 200 10 100 (50) 1000 50 (10) (5) 1 (5) (10) 100 100 36.7 29.2 28.0 31.8 25.0 37.9 33.2 24.6 24.6 26.6 35.3 33.0 28.3 24.1 20.8 30.1 39.7 30.6 32.4 33.3 24.3 26.8 28.4 29.7 28.2 37.2 31.4 29.7 31.1 31.4 27.4 35.8 41.0 40.9 38.6 26.8 27.3 12.79 6.51 7.83 7.80 7.24 7.91 8.15 6.88 7.71 7.43 5.56 6.95 11.53 10.05 7.71 7.53 5.21 8.49 6.09 7.27 8.59 6.83 11.71 14.87 14.12 6.57 7.08 9.69 10.00 14.41 9.88 7.56 10.77 6.22 9.19 7.75 7.09 5 3H 002257 3M Organic Vapor Monitor # 3500 Analysis Guide ANOTHER STEP TOWARDS BETTER OCCUPATIONAL HEALTH AND SAFETY R35AG<611.)R Occupational Health and Safety Products Divisi n/3M 220-7W.3M Center St. Paul, Minnesota 55144 Utho In U.SA 3M 3M 002258 H I .v , ,**-<) H, *' p 11 ; ' *: ' ' 1 ., . , ,vV! V$,VfVi ^V,V" ' ,i. ;: v . 7Y7;,v,7-,M; ."V ?'. *7 .-^7:. 3M Organic Vapor Monitor Analysis Guide USE OF THE ANALYSIS GUIDE TABLES: The Analysis Guide is designed for the customer involved in the analysis of the 3M #3500 Organic Vapor Monitor by the gas chromatograph. The following tables summarize the 3M monitor sampling rate, capacity, recovery coefficient and calculation constants. The analysis guide provides the necessary information to calculate the time-weighted-average concentration in parts per million (ppm) or milligrams per cubic meter (mg/m3). A. Monitor Sample Information Sampling Rate The (*) compounds in the Sampling Guide tables have been subjected to an extensive amount of laboratory work to verify the sampling rate. The sampling rates given for the remaining compounds in this table were determined from empirical relationships as outlined in a publication on Sampling Rate Validation. All sampling rates have an accuracy of 5%. The sampling rates are tabulated as either cubic centimeters/minute or micrograms/ppm-hour. Capacity The capacity of the monitor for each individual compound is a function of molecular structure, vapor pressure, environmental conditions, etc. The capacity is stated in terms of weight (milligrams). For a single contaminant, if the analyst finds the weight collected by the monitor is greater than the defined capacity, then the validity of the sample should be questioned. When sampling multiple contaminants, the combined weights of the contaminants collected should not exceed the defined value for the single contaminant with the lowest capacity. Recovery Coefficients (Desorption Efficiency) The collected sample is removed from the activated carbon wafer for analysis by desorption with carbon disulfide (CS2) or other suitable solvents. In order for the laboratory analyst to determine accurately the amount of contaminant collected by the adsorbent, it is necessary to know the efficiency of the desorption process. The recovery coefficient or desorption efficiency is determined by adding a known weight of contaminant onto the adsorbent and measuring the weight of contaminant in the desorbing solvent. The recovery coefficient is calculated by dividing the recovered weight by the known weight. It is recommended that each analytical laboratory determine recovery coefficients according to the procedure outlined by the 3M laboratory contained in the Analysis Guide as "Recommended Procedure for Determination of Recovery Coefficients." Recovery coefficients determined by the 3M laboratory are tabulated in the following tables. B. Procedure to Calculate Contaminant Concentrations The time-weighted-average concentration of the environment sampled can be calculated by knowing the length of the sampling period, the contaminant weight determined by gas chromatography, the recovery coefficient and the calculation constant either A or B. The calculation constant A is used to calculate the concentration when expressed in units of milligrams per cubic meter (mg/m3) and constant B when expressed in units of parts per million (ppm). The calculation constant A and B have been determined for every contaminant in the Analysis Guide by the following expressions: A = 1000 Sampling Rate B _ 1000 x(24.45) (Sampling Rate) x (Molecular Weight) 1 3M 002259 The contaminant concentration can be calculated with the following information: Sampling Information Contaminant Length of Sampling Period (min.) t Contaminant Information from Tables in Analysis Guide Calculation Constant A or B Analytical Results Contaminant weight recovered W (Micrograms) Recovery Coefficient (r) The time-weighted-average concentration in milligrams per cubic meter of the contaminant in the environment sampled can be calculated from the following expression: C(mg/m3) = W (microgmms) r x t (minutes) xA The time-weighted-average concentration in parts per million (ppm) of the contaminant can be calculated from the following expression: C(ppm) = W (micrograms) rxt (minutes) xB The above expressions calculate the time-weighted-average concentrations at a sampling temperature of 25C (298K) and pressure of 760 mm. When sampling at other environmental conditions, the above expressions need to be corrected only for variations in temperature. The above expressions can be multiplied by the following temperatures correction factors (CFT) for samples collected at temperatures other than 25C (77F). Sampling (C) 44 37 31 25 19 13 7 2 -3 -8 Temperature (F) 111 99 88 77 66 55 45 36 27 18 Temperature Correction Factor (CFT) .97 .98 .99 1.00 1.01 1.02 1.03 1.04 1.05 1.06 From the above table, every 10-11 above or below 77F requires a one percent correction to the calculated time-weighted-average concentration. If the temperature correction is desired, the time weighted average concentration can be calculated by the following expression: C(mg/m3) = ___ WlQ3lPrP.9raTMs)___ xAxCFT r x t (minutes) C(ppm) = _.,,.W (micrograms) r x t (minutes) x B x CFT 3H 002260 2 Exampl Calculation Contaminant Length of Sampling Period (t) Temperature (T) Calculation Constant A or B Contaminant Weight Recovered (W) Recovery Coefficient(r) Benzene 420 minutes 75F 28.2 8.83 27.2 micrograms 1.02 Using Calculation Constant A: C(mg/m3) = ______ __________ (1.02) (420) x 28.2 C = 1.79 mg/m3 Using Calculation Constant B: C (ppm) = ______ 272 (1.02) (4.20) C = .56 ppm x 8.83 3H 002261 3 Acetone* Acetonitrile Acrylonitrile Ally! Alcohol Allyl Chloride n-Amyl Acetate* s-Amyl Acetate n-Amyl Alcohol* i-Amyl Alcohol* s-Amyl Alcohol Benzene* Benzyl Chloride Bromotorm Butadiene n-Butyl Acetate s-Butyl Acetate t-Butyl Acetate Butyl Acrylate Butyl Alcohol* s-Butyl Alcohol t-Butyl Alcohol Butyl Cellosolve* (2-Butoxyethanol) Butyl Glycidyl Ether (BGE) p-tert-Butyltoluene* Camphor Carbon Disulfide Carbon Tetrachloride* Cellosolve* (2-Ethoxyethanol) Cellosolve Acetate* (2-Ethoxyethyl Acetate) Chlorobenzene* o-Chlorostyrene o-Chlorotoluene Chlorobromomethane* Chloroform 1 -Chloro-1 -nitropropane Chloroprene (2-Chloro-1,3-butadiene) Cumene* Cyclohexane* Cyclohexanol* Cyclohexanone* Cyclohexene* Diacetone Alcohol* o-Dichlorobenzene* p-Dichlorobenzene* 1,1 Dichloroethane 1,2 Dichloroethylene* 1,1 Dichloro-1-nitroethane Dichloroethyl Ether + Methylene Chloride as the solvent ANALYSIS GUIDE Sampling Rate (cc/min) 40.1 + .9 48.2 43.8 40.4 35.1 26.0 .5 27.2 31.2 .4 32.3 .4 32.3 35.5 .6 27.2 29.3 42,8 31.6 28.6 29.4 28.7 34.3 .7 34.8 35.2 28.2 .6 27.0 20.7 .4 21.4 42.8 30.2 .4 32.4 + .9 26.6 .4 29.3 .6 26.0 27.3 34.4 .9 33.5 30.4 32.2 24.5 .9 32.4 .7 29.5 .3 28.9 .3 32.3 .4 28.2 .4 27.8 .6 27.8 .6 33.2 35.2 .5 28.5 26.1 Capacity (mg) 3 14 11 20 1 >25 >25 >25 >25 >25 13 >25 ' >25 .4 25 >25 19 >25 >25 19 13 >25 >25 >25 >25 1 14 >25 >25 >25 >25 >25 10 7 >25 5 >25 22 >25 >25 22 >25 >25 >25 4 1 >25 >25 Recovery Coefficient .87 -- -- -- -- 1.08 -- 1.00 + .99 + .99 + 1.02 1.05 1.05 -- 1.04 1.07 1.05 -- .98 + .97 + -- .86 -- 1.10 -- -- 1.05 .78 1.03 1.00 -- -- 1.00 .98 -- _ .96 1.07 1.00 + .97 1.02 1.04 + .95 .95 -- .99 -- -- Calculation Constant A (mg/m3) B (ppm) 24.9 10.51 20.8 12.37 22.8 10.53 24.75 28.5 10.43 9.05 38.6 7.26 36.8 6.91 32.1 8.91 31.0 8.63 31.0 8.60 28.2 8.83 36.8 7.08 34.1 3.30 23.4 10.53 31.7 6.67 35.0 7.37 34.0 7.17 34.8 6.66 29.2 9.63 28.7 9.44 28.4 9.39 35.5 7,35 37.0 6.97 48.3 7.98 46.7 7.52 23.4 7.52 33.1 5.26 30.9 8.39 37.6 6.96 34.1 7.38 38.5 6.77 36.6 7.05 29.1 5.51 29.9 6.13 32.9 6.49 31.1 8.53 40.8 8.32 30.9 8.98 32.7 8.48 34.6 8.63 31.0 9.23 35.5 7.47 36.0 5.98 36.0 5.98 30.1 7.44 28.4 7.16 35.1 5.96 38.3 6.55 3H 002262 4 Diisobutyl Ketone* Dimethyl Formamide p-Dioxane Dipropylene Glycol Methyl Ether Enflurane (2-Chloro-1,1,2 trifluoroethyl difluoromethyl ether) Epichlorohydrin (1 -Chloro-2,3-epoxy-propane) Ethyl Acetate* Ethyl Acrylate Ethyl Alcohol Ethyl Benzene Ethyl Bromide* Ethyl Butyl Ketone (3-Heptanone) Ethyl Ether Ethyl Formate Ethylene Chlorohydrin (2-Chloroethanol) Ethylene Dibromide* (1,2-Dibromomethane) Ethylene Dichloride* (1,2-Dichloroethane) Furfural Furfuryl Alcohol Glycidol (2,3-Epoxy-1 -propanol) Halothane (2-Bromo-2-chloro-l ,1,1 trifluoroethane) Heptane* Hexachloroethane Hexane* s-Hexyl Acetate Isoamyl Acetate Isoamyl Alcohol* Isobutyl Acetate* Isobutyl Alcohol* Isophorone* Isopropyl Acetate Isopropyl Alcohol Isopropyl Ether Isopropyl Glycidy! Ether Mesityl Oxide* Mesitylene* (Trimethyl Benzene) Methyl Acetate* Methyl Acrylate Metnylal (Dimethyoxymethane) Methyl Amyl Ketone (2-Heptanone) Methyl Bromide Methyl Butyl Ketone* (2-Hexanone) Methyl Isobutyl Ketone* (Hexanone) Methyl Cellosolve* (2-Methoxyethanol) + Methylene Chloride as the solvent ANALYSIS GUIDE Sampling Rata (cc/mln) 24.6 .8 32.4 34.5 25.3 Capacity (mg) >25 >25 >25 >25 28.3 29.6 34.5 .6 32.2 51.2 27.3 36.4 .3 28.0 36.8 38.8 33.9 29.6 .4 33.2 .7 34.3 32.6 37.1 30.2 28.9 .7 26.7 32.0 .7 28.1 27.2 32.3 .4 31.0 .3 35.9 .7 21.7 .7 31.7 39.4 31.2 29.1 31.2 1.2 26.3 .7 37.0 .6 35.8 37.9 27.9 46.5 29.7 .7 30.0 .4 36.3 .4 s 4 >25 10 19 12 >25 1 >25 .4 1 >25 >25 18 >25 >25 >25 4 >25 >25 18 >25 >25 >25 >25 >25 >25 15 17 10 >25 >25 >25 2 11 1 >25 .5 >25 >25 >25 Recovery Coefficient 1.07 -- -- -- Calculation Constant A (mg/m3) B (ppm) 40.7 7.00 30.9 10.34 29.0 8.05 39.5 6.53 35.3 4.68 .95 33.8 8.88 1.01 29.0 8.05 -- 31.1 7.59 -- 19.5 10.38 -- 36.6 8.45 1.03 27.5 6.16 _ 35.7 7.66 -- 27.2 8.98 -- 25.8 8.52 _ 29.5 8.90 1.04 33.8 4.39 1.02 30.1 7.44 -- 32.8 8.35 -- 30.7 7.65 _ 27.0 8.91 1.08 -- 1.05 -- -- 1.03 + -- 1.02 + 1.03 + 1.05 + -- -- -- .99 1.06 1.00 -- -- _ -- 1.00 1.06 .75 33.1 34.6 37.5 31.3 35.6 36.8 31.0 32.3 27.9 46.1 31.5 25.4 33.0 34.4 32.1 38.0 27.0 27.9 26.4 35.8 21.5 33.7 33.3 1 27.5 5.96 8.46 3.86 8.88 6.04 8.64 8.60 6.80 9.20 8.16 7.56 10.34 7.91 7.24 8.00 7.75 8.93 7.94 8.49 7.69 5.53 8.23 8.15 8.86 3M 002263 Methyl Cellosolve Acetate* (Ethylene Glycol Methyl Ether Acetate) Methyl Chloroform* Methyl Cyclohexane* Methyl Cyclohexanol Methyl Ethyl Ketone* (2-Butanone) Methyl Formate 5-Methyl-3-heptanone (Ethyl Amyl Ketone) Methyl Iodide Methyl Isobutyl Carbinol (Methyl Amyl Alcohol) Methyl Isoamyl Ketone Methyl Methacrylate Alpha Methyl Styrene* Methylene Chloride* (Dichloromethane) Naphtha (VM&P)* Naphthalene Nonane* Octane* Pentane* 2-Pentanone* (Methyl Propyl Ketone) Perchloroethylene* Phenyl Ether Phenyl Qlycidyl Ether n-Propyl Acetate* n-Propyl Alcohol* Propylene Dichloride* (1,2 Dichioropropane) Propylene Glycol Monomethyl Ether n-Propyl Nitrate Stoddard Solvent Styrene* 1,1,2,2-Tetrachloroethane 1,1,1,2-Tetrachloro-2,2-difluoroethane 1,1,2,2-Tetrachloro-1,2-difluoroethane Tetrahydrofuran Toluene* 1,1,2-Trichloroethane* Trichloroethylene* 1,1,2-Trichloro-l ,2,2-trlfluoroethane 1,2,3-Trichloropropane Vinyl Acetate Vinyl Bromide Vinyl Chloride* Vinylidene Chloride Vinyl Toluene Xylene* + Methylene Chloride as the solvent ANALYSIS GUIDE Sampling Rate (cc/mln) 29.0 .5 30.9 .3 28.9 .4 28.8 36.3 .9 45.0 26.4 36.7 29.2 28.0 31.8 25.0 .5 37.9 .3 33.2 .7 24.6 24.6 .6 26.6 .6 35.3 .9 33.0 .5 28.3 .5 24.1 20.8 30.1 .5 39.7 .7 30.6 .4 32.4 33.3 24.3 26.8 .8 28.4 29.7 28.2 37.2 31.4 .6 29.7 .6 31.1 .2 31.4 27.4 35.8 41.0 40.8 .5 38.4 26.8 27.3 .5 Capacity (mg) Recovery Coefficient >25 1.00 12 1.03 >25 1.05 >25 ____ 12 1.00 .2 -- >25 .2 -- >25 _ >25 24 ____ -- >25 1.01 2 .90 20 1.04 >25 -- >25 1.09 >25 1.08 7 1.02 23 1.03 >25 1.05 >25 -- >25 -- 21 - 25 .93 + 25 1.04 >25 -- >25 -- >25 -- >25 1.08 >25 .89 5-- 5-- 8-- 25 1.05 >25 1.02 20 1.00 .5 -- >25 -- 7 1.02 .3 -- .04 1.02 .5 -- >25 -- >25 1.07 Calculation Constant A (mg/m3) B (ppm) 34.5 7.14 32.4 5.95 34.6 8.63 34.7 7.45 27.5 9.35 22.2 9.06 37.9 7.24 27.3 4.69 34.2 8.21 35.7 7.66 31.5 7.69 40.0 8.29 26.9 7.59 30.1 7.36 40.7 7.76 40.7 9.04 37.6 8.06 28.3 9.62 30.3 8.62 35.3 5.20 41.5 5.97 48.1 7.84 33.3 7.96 25.2 10.26 32.7 32.3 30.0 41.2 37.3 35.2 33.9 35.5 26.8 31.8 33.7 32.2 31.9 36.5 27.9 24.4 24.4 25.9 37.3 36.6 7.07 7.58 8.25 6.99 8.77 5.12 4.06 4.25 9.13 8.46 6.19 6.00 4.16 6.07 7.94 5.57 9.56 6.53 7.73 8.45 3M 002264 6 V 3H 002265 NOTES