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| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Live Webinar
Process Analyzer Sampling
Systems Simplified
Joe Goh
Product Manager
Analyzers & Analytical Systems Integration
Yokogawa Corporation of America
March 24, 2020 — 11am EST
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Presenter
1
Joe Goh
Analytical Product Manager
281-325-1871
Joe.Goh@yokogawa.com
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
You will learn:
2
1. Key sampling system
components and functions
2. Examples of system designs,
various types of components
and when they are used
3. Best operation and maintenance
practices for optimizing sampling
system performance
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Why do Plants need Process Analyzer Systems?
3
n Maintain Quality of Products
n Maximize Yield
Regulatory
Requirement
Safety
n EPA regulates Excess Emission and
CEMS Monitoring Availability
n Monitor for toxic and flammable
chemicals
n Protect Plant personnel, public, and
equipment.
Process
Optimization
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Traditional Plant Lab Analysis
n Results take 4-6 hours
n Sampling Discrepancy
n Different Analytical Technology
n Costs add up
u Cost of Lab Personnel/Equipment
u Delay of Process Results
4
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Traditional Plant Lab Analysis
n Results take 4-6 hours
n Sampling Discrepancy
n Different Analytical Technology
n Costs add up
u Cost of Lab Personnel/Equipment
u Delay of Process Results
5
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Continuous Process Analysis
n In-Line, At-Line or In-Situ
6
n Extractive Analysis
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
7
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
8
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
9
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
10
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
11
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Major Analyzer System Components
12
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Key Sampling System Components
13
Shelter Safety
System
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Types Of Analyzer Mounting
u Popular for equipment suitable for
outside mounting;
e.g. Gas Density, pH/Conductivity
meters
14
u Suitable for small single analyzers
up to CEMS type packages
u Minimal environmental / hazardous
area control
Panel Mounted BoxCabinet
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Types Of Analyzer Enclosures
u Popular for larger analyzers in
temperate climates
u Open ventilation helps reduce
stringent hazardous area
classifications of mounted
equipment
15
u Best protection of analyzer
hardware
u Best working environment
u Most expensive solution
3-Sided Shelter Walk-in Enclosed Shelter
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Examples Of Shelter Construction
16
Fiberglass Analyzer House Painted steel, SS, or Aluminum
Concrete Building
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Shelter Design Considerations
n Wiring / cable management
u Conduit (popular in Western Hemisphere)
u Armored Cable (popular in Europe)
n Sample Systems on exterior
u Except in cold climates
n Split shelter
u Sample system section in cold climates
n Rainshields
u Covering sample systems and bottle racks
n Heated boxes for cal bottles
u Especially in cold climates
n Doors on each end for larger shelters
n Flooring
u No floors for mounting on cement pad
u Steel plate flooring for elevated installations
u Insulated flooring for extreme cold climates
17
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Hazardous Area Classification
n Determined by the end-user
u Based on their corporate safety guidelines
u Class, Division (Zone), Groups, T-Rating
n Compliance Standards
u NEC/NFPA (U.S.)
u CSA (Canada)
u ATEX (Europe)
u IECEx (Emerging Global Standard)
n Local Certification
u Paid certification by local agency representative
u Used for non-certified equipment
18
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Impact Of Rating On Analyzer Packaging
n Shelter hardware
u Electrical systems
Ø Breaker and junction boxes
Ø Lighting fixtures
Ø Power receptacles
u Air conditioning systems
u Pumps / Motors
n Analyzers
u Not all analyzers are rated for hazardous areas
n Purging of enclosure or entire shelter
u Reduces cost of internal components
u Makes maintenance easier (no hot work permits)
u Compliance to NFPA496; Z-Purge, Y-Purge, X-Purge
n Relocation of shelter inside plant may help reduce
impact of rating
19
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Shelter Safety Systems
n Safety systems monitor the conditions
inside the shelter
u LEL Combustible analyzers
Ø Especially when using purged shelter
u Toxic gas sensors (H2S, Cl2)
u Oxygen deficiency analyzers
Ø Common when plant nitrogen used by
analyzers
n Consider mounting locations and quantity
for complete safety
n Outside warning lights and horns
u Contact signal to DCS also common
20
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
HVAC Systems
n One of the most expensive elements of a
shelter system
n Proper sizing requires calculation of the heat
loading
u Summation of the wattage of equipment inside
u Avoid maximum wattage vs normal operation
wattage
n Some analyzers (like GCs) make it easy to
capture hot air and vent outside
n A/C system may also provide the shelter
ventilation and purging
21
Typical Ambient
Analyzer Rating:
14 °F to 122 °F
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Shelter Utilities
Power
n Wattage and phase of power
n Breaker Boxes and Junction Boxes
u Sizing and location
n Separate conduit for power and
data signals
n UPS systems
n Shut off switches for each major
device
u Maintenance convenience
u Safety
22
Instrument Air
n For analyzer operation like GCs
n For purging of analyzer electronics
n Confirm pressure requirements;
especially if vortex coolers are
involved
Plant Nitrogen
n May require oxygen deficiency
monitors
Steam / Water
Future expansion requirements
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Header and Manifold Systems
n Simplifies plumbing throughout
the shelter
n Shared gas / utilities
u Air / Steam
u GC carrier gas
n Waste recovery headers
u GC vent gases (need to be atmospheric pressure)
u Check valves if tying into the process
(such as flare)
n Liquid recovery systems
u Storage tank
u Return pumps
23
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Analyzer Consumables
24
n Consideration for space and plumbing
of analyzer consumables
u Some consumables need heating and
/ or pressurization
n GC’s and CEM systems in particular
have lots of consumables
u Carrier gas cylinders
u Calibration / validation gas cylinders
u Pure air or blanket gases
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Data / Signal Wiring
25
Data signal junction boxes
Separated from power conduits
(analog signals especially)
n Concern about power noise being
picked up by the analog lines
Ethernet connection
considerations
n Many analyzers now utilize Ethernet
n RJ-45 copper wiring vs fiber inside
shelter
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Sample Conditioning Systems
Typically mounted outside
n Keeps bulk of process sample out of
shelter in case of a leak
n Opposite side of wall from analyzer
n Mounted chest level for easier
maintenance
26
Cold climates may move SCS inside
n Perhaps split the shelter into
two zones
Heat tracing of
process lines
Don’t forget about …
Sample system signal
wiring between
analyzer and SCS
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Proper Sample System Design is Critical
Key component of any extractive
analyzer
n Makes the sample compatible with
the analyzer
n Also handles calibration and
validation role
The best analyzer in the world will
give the wrong answer if the sample
is not correct
n Many users say 60 – 80% of the
problems with process analyzers is
due to the sample system
27
Most installations require an
engineering review of the process
conditions for proper conditioning
n Every installation is different
n Engineering experience is key
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Elements That Make Up A Complete Design
28
CAT GASOLINE
1
1
2
3
4
5
6
7
8
Sample Take-off Point / Sample Probe
Sample Preconditioning System
Transport Lines
Sample Conditioning System
Sample Return
Calibration / Validation
Atmospheric Vent
Safe Vent / Flare
2 4
3 3
7
8
6
8
3
5
D T / Lag Time Calculation
D
p
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Examples Of Sample Systems
29
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Continuous Emissions Monitoring Systems (CEMS)
30
Typical requirements
n NOx, SO2, CO, THC, HCl, O2, etc.
n Sample conditioning systems design is critical
n Tend to be General Purpose installations
Data Collection per regulatory
“Permission to Operate” Permit
n Hourly and daily averages
n Downtime and Excess Emissions
n Dedicated Data Acquisition system
Certification RATA and CGA tests
n Part of commissioning
n Done by independent auditor
n Quarterly and yearly checks to confirm
analyzer performance
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Project Management Considerations
31
Documentation
n Can be difficult to control due to wide diversity of
hardware suppliers
n Approval drawings
n When will “as built” documentation be available
Factory Acceptance Tests
n Analyzers at analyzer manufacturer vs inside shelter
Shipping
n Shelter crating (the forgotten cost)
n Shelters wider than 12’
n Overseas shipping
Typical Lead Times
n Engineering Design 4 – 6 weeks
n Simple Analyzers 6 – 8 weeks
n Yokogawa Gas Chromatograph 18 – 20 weeks.
n TDLR Analyzer House 10 – 12 weeks
n Analyzer House Integration 4 – 6 weeks
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Shelter Purchase
Documentation
Project Mgmt.
FAT Inspections
Commissioning
Training
Spare Parts
Crating & Shipping
Analyzer System Integration – More Than It Seems
32
More than simply getting a quote
and issuing a PO
n Complete and accurate specifications
Vendors prior experience with
system integration is key
n Especially with sample system design
Analyzer system integrators can
help with other project tasks
n Feed studies / writing specs
n Analyzer recommendations
n Start-up, Training, Spare Parts
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Best Operation and Maintenance Practices
Analyzers and Analyzer Systems
are Repeatable
n To make an analyzer Accurate
we Calibrate
n DO NOT Over-Calibrate
Daily Visual PM will minimize
downtime
n Check SHS pressures, flows, &
temperatures
33
Stock essential spare parts
n Consumables (filter elements,
pump kits, etc.)
n Major components (detectors,
spare columns, etc.)
Invest in Support:
n Start-up & Training
n Life Cycle (Maintenance)
Agreement (LCA)
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Every Segment can affect Results!!!
34
Shelter Safety
System
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
35
Q&A
Select and send all questions to “Panelist” now so that
we can address these
Questions
If you have any questions for this Webinar topic, please
send them to webinars@us.yokogawa.com
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
Questions?
36
Joe Goh
Analytical Product Manager
281-325-1871
Joe.Goh@yokogawa.com
Scott Eddleman
Analytical Technical Sales
936-520-1854
Scott.Eddleman@yokogawa.com
Nathan Bourque
Analytical Technical Sales
225-402-9550
Nathan.Bourque@yokogawa.com
| ASI Webinar | March 24, 2020 |
© Yokogawa Corporation of America
The names of corporations, organizations, products and logos herein are either registered trademarks or
trademarks of Yokogawa Electric Corporation and their respective holders.
Thank you for attending
37

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Process Analyzer Sampling Systems Simplified

  • 1. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Live Webinar Process Analyzer Sampling Systems Simplified Joe Goh Product Manager Analyzers & Analytical Systems Integration Yokogawa Corporation of America March 24, 2020 — 11am EST
  • 2. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Presenter 1 Joe Goh Analytical Product Manager 281-325-1871 Joe.Goh@yokogawa.com
  • 3. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America You will learn: 2 1. Key sampling system components and functions 2. Examples of system designs, various types of components and when they are used 3. Best operation and maintenance practices for optimizing sampling system performance
  • 4. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Why do Plants need Process Analyzer Systems? 3 n Maintain Quality of Products n Maximize Yield Regulatory Requirement Safety n EPA regulates Excess Emission and CEMS Monitoring Availability n Monitor for toxic and flammable chemicals n Protect Plant personnel, public, and equipment. Process Optimization
  • 5. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Traditional Plant Lab Analysis n Results take 4-6 hours n Sampling Discrepancy n Different Analytical Technology n Costs add up u Cost of Lab Personnel/Equipment u Delay of Process Results 4
  • 6. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Traditional Plant Lab Analysis n Results take 4-6 hours n Sampling Discrepancy n Different Analytical Technology n Costs add up u Cost of Lab Personnel/Equipment u Delay of Process Results 5
  • 7. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Continuous Process Analysis n In-Line, At-Line or In-Situ 6 n Extractive Analysis
  • 8. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 7
  • 9. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 8
  • 10. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 9
  • 11. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 10
  • 12. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 11
  • 13. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Major Analyzer System Components 12
  • 14. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Key Sampling System Components 13 Shelter Safety System
  • 15. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Types Of Analyzer Mounting u Popular for equipment suitable for outside mounting; e.g. Gas Density, pH/Conductivity meters 14 u Suitable for small single analyzers up to CEMS type packages u Minimal environmental / hazardous area control Panel Mounted BoxCabinet
  • 16. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Types Of Analyzer Enclosures u Popular for larger analyzers in temperate climates u Open ventilation helps reduce stringent hazardous area classifications of mounted equipment 15 u Best protection of analyzer hardware u Best working environment u Most expensive solution 3-Sided Shelter Walk-in Enclosed Shelter
  • 17. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Examples Of Shelter Construction 16 Fiberglass Analyzer House Painted steel, SS, or Aluminum Concrete Building
  • 18. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Shelter Design Considerations n Wiring / cable management u Conduit (popular in Western Hemisphere) u Armored Cable (popular in Europe) n Sample Systems on exterior u Except in cold climates n Split shelter u Sample system section in cold climates n Rainshields u Covering sample systems and bottle racks n Heated boxes for cal bottles u Especially in cold climates n Doors on each end for larger shelters n Flooring u No floors for mounting on cement pad u Steel plate flooring for elevated installations u Insulated flooring for extreme cold climates 17
  • 19. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Hazardous Area Classification n Determined by the end-user u Based on their corporate safety guidelines u Class, Division (Zone), Groups, T-Rating n Compliance Standards u NEC/NFPA (U.S.) u CSA (Canada) u ATEX (Europe) u IECEx (Emerging Global Standard) n Local Certification u Paid certification by local agency representative u Used for non-certified equipment 18
  • 20. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Impact Of Rating On Analyzer Packaging n Shelter hardware u Electrical systems Ø Breaker and junction boxes Ø Lighting fixtures Ø Power receptacles u Air conditioning systems u Pumps / Motors n Analyzers u Not all analyzers are rated for hazardous areas n Purging of enclosure or entire shelter u Reduces cost of internal components u Makes maintenance easier (no hot work permits) u Compliance to NFPA496; Z-Purge, Y-Purge, X-Purge n Relocation of shelter inside plant may help reduce impact of rating 19
  • 21. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Shelter Safety Systems n Safety systems monitor the conditions inside the shelter u LEL Combustible analyzers Ø Especially when using purged shelter u Toxic gas sensors (H2S, Cl2) u Oxygen deficiency analyzers Ø Common when plant nitrogen used by analyzers n Consider mounting locations and quantity for complete safety n Outside warning lights and horns u Contact signal to DCS also common 20
  • 22. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America HVAC Systems n One of the most expensive elements of a shelter system n Proper sizing requires calculation of the heat loading u Summation of the wattage of equipment inside u Avoid maximum wattage vs normal operation wattage n Some analyzers (like GCs) make it easy to capture hot air and vent outside n A/C system may also provide the shelter ventilation and purging 21 Typical Ambient Analyzer Rating: 14 °F to 122 °F
  • 23. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Shelter Utilities Power n Wattage and phase of power n Breaker Boxes and Junction Boxes u Sizing and location n Separate conduit for power and data signals n UPS systems n Shut off switches for each major device u Maintenance convenience u Safety 22 Instrument Air n For analyzer operation like GCs n For purging of analyzer electronics n Confirm pressure requirements; especially if vortex coolers are involved Plant Nitrogen n May require oxygen deficiency monitors Steam / Water Future expansion requirements
  • 24. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Header and Manifold Systems n Simplifies plumbing throughout the shelter n Shared gas / utilities u Air / Steam u GC carrier gas n Waste recovery headers u GC vent gases (need to be atmospheric pressure) u Check valves if tying into the process (such as flare) n Liquid recovery systems u Storage tank u Return pumps 23
  • 25. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Analyzer Consumables 24 n Consideration for space and plumbing of analyzer consumables u Some consumables need heating and / or pressurization n GC’s and CEM systems in particular have lots of consumables u Carrier gas cylinders u Calibration / validation gas cylinders u Pure air or blanket gases
  • 26. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Data / Signal Wiring 25 Data signal junction boxes Separated from power conduits (analog signals especially) n Concern about power noise being picked up by the analog lines Ethernet connection considerations n Many analyzers now utilize Ethernet n RJ-45 copper wiring vs fiber inside shelter
  • 27. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Sample Conditioning Systems Typically mounted outside n Keeps bulk of process sample out of shelter in case of a leak n Opposite side of wall from analyzer n Mounted chest level for easier maintenance 26 Cold climates may move SCS inside n Perhaps split the shelter into two zones Heat tracing of process lines Don’t forget about … Sample system signal wiring between analyzer and SCS
  • 28. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Proper Sample System Design is Critical Key component of any extractive analyzer n Makes the sample compatible with the analyzer n Also handles calibration and validation role The best analyzer in the world will give the wrong answer if the sample is not correct n Many users say 60 – 80% of the problems with process analyzers is due to the sample system 27 Most installations require an engineering review of the process conditions for proper conditioning n Every installation is different n Engineering experience is key
  • 29. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Elements That Make Up A Complete Design 28 CAT GASOLINE 1 1 2 3 4 5 6 7 8 Sample Take-off Point / Sample Probe Sample Preconditioning System Transport Lines Sample Conditioning System Sample Return Calibration / Validation Atmospheric Vent Safe Vent / Flare 2 4 3 3 7 8 6 8 3 5 D T / Lag Time Calculation D p
  • 30. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Examples Of Sample Systems 29
  • 31. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Continuous Emissions Monitoring Systems (CEMS) 30 Typical requirements n NOx, SO2, CO, THC, HCl, O2, etc. n Sample conditioning systems design is critical n Tend to be General Purpose installations Data Collection per regulatory “Permission to Operate” Permit n Hourly and daily averages n Downtime and Excess Emissions n Dedicated Data Acquisition system Certification RATA and CGA tests n Part of commissioning n Done by independent auditor n Quarterly and yearly checks to confirm analyzer performance
  • 32. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Project Management Considerations 31 Documentation n Can be difficult to control due to wide diversity of hardware suppliers n Approval drawings n When will “as built” documentation be available Factory Acceptance Tests n Analyzers at analyzer manufacturer vs inside shelter Shipping n Shelter crating (the forgotten cost) n Shelters wider than 12’ n Overseas shipping Typical Lead Times n Engineering Design 4 – 6 weeks n Simple Analyzers 6 – 8 weeks n Yokogawa Gas Chromatograph 18 – 20 weeks. n TDLR Analyzer House 10 – 12 weeks n Analyzer House Integration 4 – 6 weeks
  • 33. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Shelter Purchase Documentation Project Mgmt. FAT Inspections Commissioning Training Spare Parts Crating & Shipping Analyzer System Integration – More Than It Seems 32 More than simply getting a quote and issuing a PO n Complete and accurate specifications Vendors prior experience with system integration is key n Especially with sample system design Analyzer system integrators can help with other project tasks n Feed studies / writing specs n Analyzer recommendations n Start-up, Training, Spare Parts
  • 34. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Best Operation and Maintenance Practices Analyzers and Analyzer Systems are Repeatable n To make an analyzer Accurate we Calibrate n DO NOT Over-Calibrate Daily Visual PM will minimize downtime n Check SHS pressures, flows, & temperatures 33 Stock essential spare parts n Consumables (filter elements, pump kits, etc.) n Major components (detectors, spare columns, etc.) Invest in Support: n Start-up & Training n Life Cycle (Maintenance) Agreement (LCA)
  • 35. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Every Segment can affect Results!!! 34 Shelter Safety System
  • 36. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America 35 Q&A Select and send all questions to “Panelist” now so that we can address these Questions If you have any questions for this Webinar topic, please send them to webinars@us.yokogawa.com
  • 37. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America Questions? 36 Joe Goh Analytical Product Manager 281-325-1871 Joe.Goh@yokogawa.com Scott Eddleman Analytical Technical Sales 936-520-1854 Scott.Eddleman@yokogawa.com Nathan Bourque Analytical Technical Sales 225-402-9550 Nathan.Bourque@yokogawa.com
  • 38. | ASI Webinar | March 24, 2020 | © Yokogawa Corporation of America The names of corporations, organizations, products and logos herein are either registered trademarks or trademarks of Yokogawa Electric Corporation and their respective holders. Thank you for attending 37