S on equipment and pipelines along with the constant threat to personnel safety justify major investment in H 2

Similar documents
MATRIX-MG Series. Innovation with Integrity. Automated High-Performance Gas Analyzers FT-IR

EasyLine Continuous Gas Analyzers. So smart, they re simple

Oxygen Measurement Systems High Reliability and Wide Application Coverage

A review of best practices for Selection, Installation, Operation and Maintenance of Gas meters for Flare Applications used for Managing facility

Application Note AN-107

Title: Standard Operating Procedure for Measurement of Ethylene (C 2 H 4 ) in Ambient Air by Reduced Gas Detection (RGD)

White Paper. Chemical Sensor vs NDIR - Overview: NDIR Technology:

Laser Spectrometers for Online Moisture Measurement in Natural Gas. Ken Soleyn GE M&C

2600T Series Pressure Transmitters Plugged Impulse Line Detection Diagnostic. Pressure Measurement Engineered solutions for all applications

GCMSD-Headspace Analysis SOP

MMS Mercury Monitoring System for Natural Gas

ONH836 Series: Oxygen/Nitrogen/Hydrogen by Inert Gas Fusion


Flow metering in gases Introduction to COMBIMASS family

Fuel Gas Pressure Control Solutions for Fired Heaters and Boilers

AC : MEASUREMENT OF HYDROGEN IN HELIUM FLOW

RMG 5020 Gas Pressure Regulator Enabling Dependable Gas Operations

DF-310E PROCESS ANALYSERS APPLICATIONS FEATURES

Thermo Scientific Model 146i Principle of Operation

APPLICATION NOTE. GC Integrated Permeation Device

Real-time Analysis of Industrial Gases with Online Near- Infrared Spectroscopy

HCL MONITORING. ICAC MARAMA WORKSHOP May 18-19th, Presented by: Ty Smith. CEMTEK

ABB MEASUREMENT & ANALYTICS. Continuous gas analyzers EL3060 The specialists for hazardous areas

Improving distillation tower operation

Non-intrusive Natural Gas Flow Measurement

PHOENIX L300i Best-in-class Helium Leak Detectors

Title: Standard Operating Procedure for Elemental and Organic Carbon (EC and OC) using Non-Dispersive Infrared Detection (NDIR)

Online DGA-monitoring of power transformers

Superior Result from Analytical Instruments The constant purity of the nitrogen improves system stability and ensures reproducible results

Petro-Chemical & Analyzer Sampling Systems

ON736 Series: Oxygen/Nitrogen by Inert Gas Fusion

h2000 plus HyDROGEN LEAk DETECTOR

Your local gas generation partner. Precision series Modular gas generation solution for GC.

Gas Clean. Filters. Delivering Clean Gases for GC and GC/MS Operation

Proudly serving laboratories worldwide since 1979 CALL for Refurbished & Certified Lab Equipment Varian 310

ABB MEASUREMENT & ANALYTICS. Continuous gas analyzers EL3060 The specialists for hazardous areas

Petro-Chemical & Analyzer Sampling Systems

FAS-W. Features. Applications. Automatic condensation hygrometer

Type 1367 High-Pressure Instrument Supply System with Overpressure Protection

Unique solutions for Oxygen and Nitrogen supply

Model DPC3500 Continuous Low Range Dew Point Analyzer. Operations Manual

Design. Pompetravaini-NSB API SB Liquid Ring Compressor for Gas Processing. Working Principle

Your local gas generation partner. Precision series Modular gas generation solution for GC.

Aurora. Moisture Measurement for Industrial Gases. GE Measurement & Control

NGN Series nitrogen generator

HiQ laboratory gas generators.

Validation of Custody Transfer Metering Skid at Site After Laboratory Proving

Rapid and Reliable Detection of Dissolved Gases in Water

Generating Calibration Gas Standards

Gas Analysis Isn t Exactly Your Only Priority? Luckily For You, It s Ours. SIPROCESS GA700 effortless gas analytics from Siemens. siemens.

INSTRUMENT INSTRUMENT YL INSTRUMENT

Your local gas generation partner. Precision series Modular gas generation solution for GC.

Improve Process Reliability

SCIENCE LAB UTILITY CONTROLS

Compressor Seal Replacement and Upgrades SERVICES

1 PIPESYS Application

Vehicle and Engine Emissions Testing

DF-550E PROCESS ANALYSERS APPLICATIONS FEATURES

Supplementary Operator s Manual 42/24-14 EN Rev. 3

Reduce Turnaround Duration by Eliminating H 2 S from Flare Gas Utilizing VaporLock Scrubber Technology

Working in Gas Hazard Areas

Laboratory Hardware. Custom Gas Chromatography Solutions WASSON - ECE INSTRUMENTATION. Engineered Solutions, Guaranteed Results.

Ultima. X Series Gas Monitor

Ron Gibson, Senior Engineer Gary McCargar, Senior Engineer ONEOK Partners

Technical Data Sheet High Performance Digital Gas Mass Flow Meters and Controllers Features Description

RICK FAUSEL, BUSINESS DEVELOPMENT ENGINEER TURBOMACHINERY CONTROL SYSTEM DESIGN OBJECTIVES

Sensepoint XCD. Calibration Guide

EL-O-Matic E and P Series Pneumatic Actuator SIL Safety Manual

Gas Control Systems. Product overview

PHIL JANOSI MSC. International Product Manager, Coriolis Flowmeter KROHNE Ltd, UK.

Vortex flowmeters. Product family introduction Principle of operation Product review Applications Key product features

GasTrak Pro TM Delivery/Control Systems

Constant and Particle Free Point-of-Use Water Pressure

Flotation Control & Optimisation

Gas Control Systems. Product overview

Becker* Products Below Ground Ball Valve Regulators

ANDERSON GREENWOOD SERIES 9000 POSRV INSTALLATION AND MAINTENANCE INSTRUCTIONS

Standard Operating Procedure Inductively Coupled Plasma Optical Emission Spectrometer (ICP-OES) - Thermo Scientific icap 6300

Optimizing Effective Absorption during Wet Natural Gas Dehydration by Tri Ethylene Glycol

The Expanding Role of High Purity Nitrogen in Fire Protection

MONITORING & MEASURING EQUIPMENT FOR EMISSION MONITOR, HAZARD DETECTION & ENERGY OPTIMIZATION VERSION 1. 3

IBP2739_10 FIELD TEST OF A FLEXIBLE PIPE INTEGRITY MONITORING SYSTEM Jean-Philippe Roques 1, Benoit Balagué 1, Dominique Dion 2, Gregoire Audouin 2

TESCOM 50-4X Series Safety, Installation & Start-Up Procedures

Introduction. Seafood HACCP Alliance Training Course 8-1

LFE OEM TCD - Thermal Conductivity Detector

Best Practice RBI Technology Process by SVT-PP SIMTECH

FT-IR solutions for laboratory and process gas phase measurements R&D, QA/QC, process optimization and air monitoring

STD-3-V1M4_1.7.1_AND_ /15/2015 page 1 of 6. TNI Standard. EL-V1M4 Sections and September 2015

Leticia Santos Hernández Pipeline Safety Specialist U.S. Department of Transportation PHMSA Inspector Training and Qualifications

Dräger Quaestor 7000 Test Equipment

Paul Ladage 26 September 2017 MOVING THINGS AROUND - LATEST TRENDS IN HONEYWELL FLAGSHIP REGULATORS

2007 Gas-Lift Workshop

Improve Reliability of Turbomachinery Lubrication and Sealing Systems

Potter Nitrogen Generators

Autocalibration Systems for In Situ Oxygen Analyzers

SCOPE OF THIS GUIDE STARTING-UP. 1 Check mini CORI-FLOW functional properties

WP Eliminating Oxygen from the Purge Gas and the use of Monitoring Equipment

Preparation and Installation of the Sanitary BDI-FLX Sensor and Connection to the BDI-FLX Interface Cable

IRwin Methane Leak Detector. Innovation makes the difference

Control & Maintenance. INT69 Diagnose INT69 TM Diagnose. Protect the heart of your system

Transcription:

Application Summary Analytes: S (hydrogen sulfide) Detector: OMA-300 S Analyzer Process Stream: natural gas Introduction Raw natural gas contains hydrogen suflide, the level of which varies by field. Due to its toxicity, flammability, and corrosivity, S is an extremely important component to control at all stages of natural gas handling, from wellhead to the customer. The destructive effects of S on equipment and pipelines along with the constant threat to personnel safety justify major investment in S measurement technology. The OMA S Analyzer is a highly field-proven solution for fast-response S measurement in several natural gas applications. Due to excellent accuracy and dynamic range, the OMA is the analyzer of choice both for high-level (e.g. wellhead gas) and low-level (e.g. sales gas pipeline) S ranges. Older technologies like GC and paper tape are being phased out due to the superior performance and ease of photometric S analyzers. The OMA provides fast response measurement with less downtime than these alternatives for more effective control in a natural gas process. When compared against competing photometers, the OMA provides more accurate measurement at a wider concentration range due to the dispersive full-spectrum acquisition at high resolution. OMA Benefits Continuously measures S concentration in natural gas using dispersive UV-Vis absorbance spectrophotometer Totally solid state build with no moving parts modern design for low maintenance Direct analysis of hot, wet, high-pressure sample using rugged flow cell 1,024-photodiode array allows accurate measurement of 0-10 ppm, 0-100%, or any range in between Superior performance to paper tape with far lower maintenance costs Decades of field-proven performance in natural gas analysis all over the world APPLIED TM A N A L Y T I C S [1]

Experienced OMA Applications in the Natural Gas Industry WELLHEAD GAS The wellhead is responsible for handling the raw natural gas extraction out of the underground formation while preventing gas leaks or blowouts due to gas pressure. The wellhead gas is subsequently sent to some form of S removal system (usually amine srubbers or scavenger beds). It is critical to continuously measure the S concentration in the wellhead extracted gas stream because S loading can range widely (typically 0-5%) and must be measured in order to properly operate the removal system according to the feed gas composition. Since the wellhead must operate reliably (often in remote locations) while handling up to 20,000 psi pressure, a reliable gas analyzer should be installed on the raw gas line to detect corrosion risks. The OMA S in Natural Gas Analyzer is perfectly suited for wellhead gas monitoring because (1) the system sustains accuracy even when S concentration fluctuates rapidly with wide swings, (2) the system is automated for reliable unattended operation in remote environments, and (3) the system can analyze the high-pressure sample directly with flow cell rated up to 3000 psi and no sensitivity to moisture in the UV-Vis wavelength domain. OMA FOR S IN WELLHEAD GAS. ALASKA, USA. SALES GAS The pipelines used to transport processed natural gas (sales gas) to customers are susceptible to severe corrosion damage when S in the gas stream frees the iron content from the steel pipe interior surface. The most proactive method of preventing this dangerous and expensive pipeline damage is to continuously measure S concentration in the sales gas pipeline and ensure that the level does not exceed a set threshold of concern. [2]

The OMA S in Natural Gas Analyzer provides proven reliable S monitoring in distribution pipelines with configurable alarms for the problematic concentration range. Real-time analysis along with rich trend data allows for optimal expenditure of S removal resources (e.g. scavengers) and rapid response to upset conditions. With ±1 ppm accuracy at a 0-10 ppm range at high pressure, the OMA provides an ideal sales gas quality & S safety assurance solution. CUSTODY TRANSFER STATION At the point where natural gas is transferred from one operator to another, e.g. from a producer to a regional distributor, a custody transfer station carefully manages the metered transmission of the gas stream. Since S loading is an important parameter in sales gas quality, both operators implement an S measurement method in order to verify and cross-reference the S loading for smooth assurance of purchase specifications. Deploying the OMA S in Natural Gas Analyzers simplifies the custody transfer operation by automating the S validation procedure. Compared to alternative high-maintenance methods, the OMA provides reliable set-and-forget S measurement after a one-time calibration. Utilizing mirror OMA units on each side of a custody transfer station allows real-time crossreferencing and redundant S readings for additional confirmation of proper analyzer operation. OMA FOR S AND ODORANTS IN A CUSTODY TRANSFER STATION. NEW YORK, USA. AMINE SCRUBBER OUTLET GAS The best way to ensure S scrubbing efficiency of the amine treating is to measure S in the outlet gas of the scrubber, particularly in conjunction with lean amine / rich amine analysis for optimization of the amine regenerator. S measurement in the raw gas (wellhead gas) determines how much processing a particular feedstock requires for adequate S removal, and the measurement point in the scrubber outlet gas indicates if the scrubber has performed within specification. OMA S Analyzers provide a full-featured suite of solutions for total amine scrubber control, including monitoring the scrubber inlet gas, outlet gas, lean (fresh) amine, and rich (saturated) amine. With low cost of ownership and automated performance for unattended operation, these analyzers lead to significant savings on amine scrubber operation and power costs. Excellent accuracy at low ppm concentrations make OMA the natural choice for measuring S breakthrough in a scrubber outlet or downstream from any removal system. [3]

S Absorbance Curve Any single photodiode measurement is vulnerable to noise, signal saturation, or unexpected interference. This susceptibility to error makes a lone photodiode data point an unreliable indicator of one chemical s absorbance. As accepted in the lab community for decades, the best way to neutralize this type of error is to use collateral data in the form of confirmation wavelengths, i.e. many data points at many wavelengths instead of a single wavelength: In the figures above, each diamond represents a single photodiode and data point. The nova II registers absorbance at each integer wavelength within the 210-250 nm measurement range and produces an S absorbance curve. After being calibrated on a full spectrum of pure S, the OMA knows the absorbance-concentration correlation for each measurement wavelength; the system can average the modeled concentration value from each wavelength to completely eradicate the effect of noise at any single photodiode. The OMA visualizes the S absorbance curve in this manner and knows the expected relation of each data point to the others in terms of the curve s structure. This curve analysis enables the OMA to automatically detect erroneous results at specific wavelengths, such as when a single photodiode is saturated with light. The normal photometer, with a single data point, is completely incapable of internally verifying its measurement. Additional Measured Chemicals The OMA S Analyzer has additional measurement benches available for adding up to 4 more analytes; these are limited to chemicals in the natural gas which are measurable by UV-Vis spectroscopy, including COS, CS 2, and R-SH (odorants). Measurement of CO 2 can easily be implemented by integrated MicroSpec IR modules which read into the OMA interface. [4]

The specifications below represent performance of the OMA-300 Process Analyzer in a typical natural gas application. For technical details about the OMA-300 Process Analyzer, see the data sheet: http://aai.solutions/documents/aa_ds001a_oma300.pdf All performance specifications are subject to the assumption that the sample conditioning system and unit installation are approved by Applied Analytics. For any other arrangement, please inquire directly with Sales. Subject to modifications. Specified product characteristics and technical data do not serve as guarantee declarations. Application Data Performance Specifications Accuracy Custom measurement ranges available; example ranges below. Accuracy specifications represent headspace gas sample analysis validated with span gas. S 0-10 ppm: ±1 ppm 0-100 ppm: ±1% full scale or 1 ppm* 0-10,000 ppm: ±1% full scale *Whichever is larger. [5]

Revised 13 April 2017 Further Reading Subject OMA-300 H2S Analyzer Brochure OMA-300 Process Analyzer Data sheet Advantage of Collateral Data Technical Note Multi-Component Analysis Technical Note Location http://aai.solutions/documents/omah2s.pdf http://aai.solutions/documents/aa_ds001a_oma300.pdf http://aai.solutions/documents/aa_tn-202_collateraldata.pdf http://aai.solutions/documents/aa_tn-203_multicomponentanalysis.pdf is a registered trademark of Applied Analytics, Inc. www.aai.solutions Headquarters Applied Analytics, Inc. Burlington, MA sales@aai.solutions North America Sales Applied Analytics North America, Ltd. Houston, TX sales@appliedanalytics.us Asia Pacific Sales Applied Analytics Asia Pte. Ltd. Singapore sales@appliedanalytics.com.sg Middle East Sales Applied Analytics Oil & Gas Operations, L.L.C. Abu Dhabi, UAE sales@appliedanalytics.ae India Sales Applied Analytics (India) Pte. Ltd. Mumbai, India sales@appliedanalytics.in Europe Sales Applied Analytics Europe, AG Genève, Switzerland sales@appliedanalytics.eu Brazil Sales Applied Analytics do Brasil Rio de Janeiro, Brazil vendas@aadbl.com.br 2017 Applied Analytics, Inc. Products or references stated may be trademarks or registered trademarks of their respective owners. All rights reserved. We reserve the right to make technical changes or modify this document without prior notice. Regarding purchase orders, agreed-upon details shall prevail. [6]