fast gc with pid %26 fuv pc 2011[1]

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FAST GC WITH PID & FUV DETECTORS IN FIELD FAST GC WITH PID & FUV DETECTORS IN FIELD ENVIRONMENTAL ANALYSES ENVIRONMENTAL ANALYSES ENVIRONMENTAL ANALYSES ENVIRONMENTAL ANALYSES Dr Jack Driscoll & David Walsh Dr . Jack Driscoll & David Walsh PID Analyzers, LLC, Sandwich, MA h 6 Booth #461 & Dr. Phillip Smith Dr. Phillip Smith OSHA Labs, Salt Lake City, UT

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Using Fast GC to improve detection limits of FUV & PID

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Page 1: Fast Gc With Pid %26 Fuv Pc 2011[1]

FAST GC WITH PID & FUV DETECTORS IN FIELD FAST GC WITH PID & FUV DETECTORS IN FIELD ENVIRONMENTAL ANALYSESENVIRONMENTAL ANALYSESENVIRONMENTAL ANALYSESENVIRONMENTAL ANALYSES

Dr Jack Driscoll & David WalshDr. Jack Driscoll & David Walsh

PID Analyzers, LLC, Sandwich, MA

h 6Booth #461

&

Dr. Phillip SmithDr. Phillip Smith

OSHA Labs, Salt Lake City, UT

Page 2: Fast Gc With Pid %26 Fuv Pc 2011[1]

INTRODUCTIONINTRODUCTIONINTRODUCTIONINTRODUCTION

•• Field environmental labs areField environmental labs are expectedexpected totoField environmental labs are Field environmental labs are expectedexpected to to provide  rapid sample turnaround.  One provide  rapid sample turnaround.  One potential improvement is to utilize faster GCpotential improvement is to utilize faster GCpotential improvement is to utilize faster GC potential improvement is to utilize faster GC columns in a portable GC like the PID columns in a portable GC like the PID Analyzers Model GC312Analyzers Model GC312Analyzers Model GC312Analyzers Model GC312

•• We are evaluating several types of columns & We are evaluating several types of columns & detectors to providedetectors to provide faster and more accuratefaster and more accuratedetectors to provide detectors to provide faster and more accurate faster and more accurate analysesanalyses in the field.in the field.

Page 3: Fast Gc With Pid %26 Fuv Pc 2011[1]

Types of SamplesTypes of Samplesyp f pyp f p•• BTEXBTEX

•• Chlorinated HC (TCA TCE PERC MeCl2 )Chlorinated HC (TCA TCE PERC MeCl2 )•• Chlorinated HC (TCA, TCE, PERC, MeCl2…)Chlorinated HC (TCA, TCE, PERC, MeCl2…)

•• Gasoline HC’sGasoline HC’s

•• SolventsSolvents•• ==============================================================

•• Columns selectedColumns selected‐‐ Thick film MS Cap (0.53Thick film MS Cap (0.53) &  a Gas Pro ) &  a Gas Pro PLOT (0.32PLOT (0.32))

•• ============================================================================================================================

•• Pesticides & PCB’sPesticides & PCB’s‐‐ not considered herenot considered here

•• Better with short (5Better with short (5‐‐10M) thin film capillary column10M) thin film capillary column(( ) p y) p y

Page 4: Fast Gc With Pid %26 Fuv Pc 2011[1]

DETECTORS PID & FUVDETECTORS PID & FUVDETECTORS_ PID & FUVDETECTORS_ PID & FUV

PhotoionizationPhotoionization Far UVFar UV AnsorbanceAnsorbancePhotoionizationPhotoionization Far UV Far UV AnsorbanceAnsorbance

Page 5: Fast Gc With Pid %26 Fuv Pc 2011[1]

Comparison of PLOT & Thick Film Comparison of PLOT & Thick Film llColumnsColumns

•• Compare PLOT to Thick Film columns forCompare PLOT to Thick Film columns forCompare PLOT to Thick Film columns for Compare PLOT to Thick Film columns for speed for C1speed for C1‐‐C6 C6 anesanes & & enesenes

•• What are the advantages/disadvantages ofWhat are the advantages/disadvantages of•• What are the advantages/disadvantages of What are the advantages/disadvantages of each?each?

A d f i i l h dA d f i i l h d•• Any advantages of resistively heated Any advantages of resistively heated columns?columns?

HeatupHeatup/cool down/cool down? ? Power utilized?Power utilized?

•• Advantages Advantages e.ge.g comparison of comparison of sensitiviitysensitiviitygg gg pp yy

Page 6: Fast Gc With Pid %26 Fuv Pc 2011[1]

GC312GC312GC312GC312

Portable GCPortable GC 312312 FeaturesFeaturesPortable GCPortable GC‐‐312312 FeaturesFeatures

•• Battery operated Battery operated –– 8 hours8 hours

•• Has external charger orHas external charger orHas external charger or Has external charger or power from car batterypower from car battery

•• Carrier gas supplyCarrier gas supply‐‐ > 15 > 15 hhhourshours

•• 1 or 2 Detectors1 or 2 Detectors

•• PID FID TCD Far UV FPD (SPID FID TCD Far UV FPD (S•• PID, FID, TCD, Far UV, FPD (S PID, FID, TCD, Far UV, FPD (S or P)or P)

•• Temperature ProgrammingTemperature Programming‐‐NEWNEW

Page 7: Fast Gc With Pid %26 Fuv Pc 2011[1]

GC SchematicGC SchematicGC SchematicGC Schematic

Focus is on the column/oven

Small Small or noor no oven (direct heating of oven (direct heating of column) provides column) provides rapid temperature rapid temperature programming and programming and faster analysesfaster analysesp g gp g g yy

Page 8: Fast Gc With Pid %26 Fuv Pc 2011[1]

PackedPacked vsvs CapillaryCapillaryPacked Packed vsvs CapillaryCapillary

Note the improvedNote the improvedNote the improved Note the improved separation of BTX on separation of BTX on capillary capillary vsvs packed. The packed. The disadvantage is the disadvantage is the analysis time is much analysis time is much longerlonger..

Fast GC provides betterFast GC provides betterFast GC provides better Fast GC provides better separation & detection separation & detection limits in a much shorter limits in a much shorter time time periodperiod

Page 9: Fast Gc With Pid %26 Fuv Pc 2011[1]

Our DefinitionsOur DefinitionsOur DefinitionsOur Definitions• #1 What is a FAST GC?

A FAST GC h l i ti l h t d l th tA FAST GC h l i ti l h t d l th t•• A FAST GC has a low mass or resistively heated column that A FAST GC has a low mass or resistively heated column that can be heated and/or cooled faster than a conventional ovencan be heated and/or cooled faster than a conventional oven

•• ConditionsConditions--•• Improved heating efficiency is a must for battery operated GCsImproved heating efficiency is a must for battery operated GCs•• Fast GC Fast GC –– run times in 5run times in 5-- 10 minutes instead of 2010 minutes instead of 20--30 minutes 30 minutes • #2 What is a FAST GC column?•• Depends on the application; two examples are:Depends on the application; two examples are:

1. A 15m x 0.32 mm ID, PLOT that is resistively heated & can be 1. A 15m x 0.32 mm ID, PLOT that is resistively heated & can be cooled faster since it has a very small thermal masscooled faster since it has a very small thermal masscooled faster since it has a very small thermal masscooled faster since it has a very small thermal mass

2. A thick film (52. A thick film (5--10 10 ) 7.5) 7.5--30 M capillary column that can 30 M capillary column that can separate gases & Solventsseparate gases & Solvents

Page 10: Fast Gc With Pid %26 Fuv Pc 2011[1]

FAST GCFAST GC AdvantagesAdvantagesFAST GCFAST GC‐‐AdvantagesAdvantages

• Advantages of FAST GCg

•• Reduced run times Reduced run times 

•• Increased sample throughput Increased sample throughput 

•• Faster turnaround of resultsFaster turnaround of results

•• Improved signal to noise ratioImproved signal to noise ratio

•• Improved detection limits Improved detection limits 

•• Wider range of Wider range of analytesanalytes

•• More samples means a more accurate assessment of the siteMore samples means a more accurate assessment of the site•• More samples means a more accurate assessment of the site More samples means a more accurate assessment of the site 

• Disadvantages of FAST GC

•• MinimalMinimalMinimalMinimal

Page 11: Fast Gc With Pid %26 Fuv Pc 2011[1]

Resistively Heated Column or Low Resistively Heated Column or Low Mass OvenMass Oven

Page 12: Fast Gc With Pid %26 Fuv Pc 2011[1]

Comparison of Oven Cool Down Comparison of Oven Cool Down timestimes

120Cool down times resistive (blue) & Low mass (red) ovens

80

100

60

80

n Tempe

rature C

Series1

20

40

Oven

Series2

0

0 1 2 3 4 5 6

Cool down minCool down min.

Page 13: Fast Gc With Pid %26 Fuv Pc 2011[1]

C1 to C6 C1 to C6 AlkanesAlkanes w FUV on 0.32 mm thick w FUV on 0.32 mm thick (( f l llf l ll(5 (5  film Capillaryfilm Capillary

Page 14: Fast Gc With Pid %26 Fuv Pc 2011[1]

PLOT Column (15M 00.32 mm)with TPPLOT Column (15M 00.32 mm)with TPPLOT Column (15M 00.32 mm)with TPPLOT Column (15M 00.32 mm)with TP

Page 15: Fast Gc With Pid %26 Fuv Pc 2011[1]

PLOT Column PLOT Column (30M 00 32(30M 00 32(30M 00.32 (30M 00.32 mm)with TPmm)with TP))

Page 16: Fast Gc With Pid %26 Fuv Pc 2011[1]

AlkanesAlkanes & BTEX on 7u MXT1 w PID& BTEX on 7u MXT1 w PIDAlkanesAlkanes & BTEX on 7u MXT1 w PID& BTEX on 7u MXT1 w PID

Page 17: Fast Gc With Pid %26 Fuv Pc 2011[1]

Differences Between TF Cap and PLOT for Differences Between TF Cap and PLOT for CC11‐‐CC66 HCHC

•• Main differences are for C1Main differences are for C1‐‐C3 HCC3 HCMain differences are for C1Main differences are for C1 C3 HCC3 HC–– Separation of CHSeparation of CH44 & C& C22HH66‐‐ better on PLOTbetter on PLOT

Separation of CSeparation of C22HH66 & C& C22HH44 better on PLOTbetter on PLOT–– Separation of CSeparation of C22HH66 & C& C22HH44‐‐ better on PLOTbetter on PLOT

–– Separation of Separation of CC33HH88 & & CC33HH66‐‐ better on PLOTbetter on PLOT

El ti f CEl ti f C t Ct C HCHC h h t TFCh h t TFC–– Elution of  CElution of  C44 to Cto C66 HC HC –– much shorter on TFCmuch shorter on TFC

Page 18: Fast Gc With Pid %26 Fuv Pc 2011[1]

Comparison of PLOT to Wide Bore Thick Comparison of PLOT to Wide Bore Thick il i i iil i i iFilm Cap sensitivityFilm Cap sensitivity

WCOT Sensitivity Thick Film 7u x 0.53 mm x 7.5M; 15 cc &  35C; PID 0.2 cc inj. X100Compound Run PH

C2H4 25 ppm Avg 3306 cts/ppm

H2S  25 ppm Avg 1453 cts/ppmpp g /pp

Gaspro Sensitivity 30M x 0.32 mm; 5 cc &  35C: PID 0.2cc  inj. X 100C2H4  25 ppm Avg. 1519 cts/ppm 

H2S  25 ppm Avg. 1739 cts/ppm 

Page 19: Fast Gc With Pid %26 Fuv Pc 2011[1]

SUMMARYSUMMARYSUMMARYSUMMARY• The thick film caps can provide faster analyses with excellent separations 

for a wide variety of HC & solvents  than PLOT columns

• The sensitivity for the thick film column for gases (C2H4 & H2S) is similar to the PLOT

• A Resistively heated column can provide faster analyses than a small GC oven because of its  low mass

• If we program from 30C to 100C, the total time for the RHC is 10 min., whereas, a small oven (fan cooled) will take nearly 20 min to run this program.

• These two detectors FUV & PID can provide sub ppm or ppb detection of CH4, TCA to the xylenes or decane in air, water or soil (headspace for the latter two)

• If we use a thick film 30M x 0.32 mm column that is resistively heated, we can do most analyses in 10‐12 min and nearly double the volume of samples done in a normal work day.