Training for Personnel to the MCERTS standard Level 1 Technician and Level 2- Team Leader. Syllabus

Similar documents
DETERMINATION OF CONCENTRATION AND MASS FLOW OF PARTICULATE MATTER IN FLUE GAS FOR STATIONARY SOURCE EMISSIONS

PRODUCT CONFORMITY CERTIFICATE

PM Compliance Options for MACT and MATS Rules. Ed McCall PCME

COLow COHigh COLow/H comp NO NOx NO2 CO2 H2S SO2 CXHY LANCOM 4. Portable Flue Gas Monitoring.

Southwest Clean Air Agency NE 99 th St, Suite 1294, Vancouver, WA 98682

Alabama Department of Environmental Management Air Division Planning Branch Emission Measurement Section

Booklet 4. Sampling of Atmospheric Emissions from Stationary Sources. Centre d expertise en analyse environnementale du Québec

Performance Standards for Indicative Ambient Particulate Monitors Environment Agency July 2012 Version 2

Deadline for tenders: 22 September 2016

INTHUU MEASUREMENTS CC

Worldwide Pollution Control Association

ABB Measurement & Analytics Monitoring cement plant stack emissions using FTIR

Biomass Boiler Emission Abatement Technologies. Simon Wakefield

An investigation into the use of EN for the determination of mass concentration of sulphur dioxide in stack emissions

Fully Extractive Vs. Dilution Extractive CEMS

Monitoring Quick Guide 3

Calibration of Light Scatter PM-CEMs to Satisfy PS-11 on Wet Stacks in Coal Fired EGUs

ABSTRACT INTRODUCTION

Laboratory Quality Assurance Manager & Laboratory Assessor RULES & HANDBOOK

Mercury Sampling: A Comparison of Common Test Methods

Fine particle measuring system

SNAP CODE: NOSE CODE:

Basic Design Principles of Local Exhaust Ventilation Systems Qualification Specification

VWR International Ltd

Source Emissions Testing Services. Statement of Qualification

BCSA CRAFT CERTIFICATE TRAINING GUIDE

THE LEADER IN PERFORMANCE INDOOR AIR QUALITY MEASUREMENTS

The Role of Quality Assurance in Water Quality Assessment

Continuous Emissions Monitoring - Program 77

EN14181 Stationary Source Emissions Quality Assurance of Automated Measuring Systems

Control of pollutants in flue gases and fuel gases

Particulate and Emission Monitoring Solutions

Performance Standards for Continuous Ambient Air Quality Monitoring Systems. Environment Agency Version 8 June 2012

Terms and conditions for laboratories appointed to undertake the testing of compost under the Compost Certification Scheme aligned to PAS 100 and the

ASTATT1 Prepare to carry out air tightness testing

Study of Air Toxics Released from the Pre- Harvest Burning of Sugarcane

Sampler with PM 2.5 pre-separator

A Guide to Understanding Ventilation Systems.

Measurement Assurance and Certification Scotland

Are You Really Ready for a RATA? August 5, 2015 CIBO Portland Maine Bob Davis Project Director TRC Environmental

APLAC GUIDELINES FOR FOOD TESTING LABORATORIES

"MARAMA/ICAC Mercury CEMS Webinar" Tuesday, July 26, 2011

Quality assurance of automated measuring systems

Flow Meter Calibration

Compact flue gas analyser: testo 300 M-I

(CEMS) Sanjeev K Kanchan. Centre for Science and Environment

CISWI and solid-waste-identification rules

PRODUCT CONFORMITY CERTIFICATE This is to certify that the

ASI MODEL DM 100 SERIES DILUTING MODULES

A016 Traceability of measurement results compared to national and international measurement standards

Microgeneration Certification Scheme: MCS 008

Coal Fired Boiler Optimization and the Impact on Emission Control Devices

Advances in NOx Compliance Testing with Portable Electrochemical Analyzers

Guido Baum Dr. Peter Wilbring

TUV Certified FTIR CEM and Ultra Low Level HCl CEM for Combustion Facilities

National Air Quality Reference Laboratories and the European Network AQUILA:

TEST REPORT. EVALUATION CENTER Intertek Testing Services NA Inc Murphy Drive Middleton, WI 53562

PRODUCT CONFORMITY CERTIFICATE

June 8, Submitted to: The Environmental Protection Agency Research Triangle Park, NC. Prepared by:

Worldwide Pollution Control Association

Commercial and Industrial Solid Waste Incinerator (CISWI) Rules Final Reconsidered Rules Requirements Summary

Application for Accreditation General Laboratories ISO/IEC 17025

CEMS for Measurement of Ammonia, SO 3, and Low Level NOx

OPAC EN Operating Procedure for the Attestation of Conformity of Structural Bearings in compliance with Annex ZA of EN 1337/3/4/5/6/7

Callidus Oxidizer Systems. Thermal and Catalytic Oxidizer Systems

FINE PARTICULATE COLLECTION USING DRY ELECTROSTATIC PRECIPITATORS

Air Guidance Note for In-house Air Monitoring Teams (AG8)

FGA 300 Panametrics Flue Gas Oxygen Analyzer. GE Sensing. Features. Applications

BetaGuard PM Measuring Particulate Continuously

Combustion and Emissions Properties of RSPB Reed Briquettes

Compliance Measurements. Mike Klein & Robert Kettig BTS (609)

Appendix B AMEC Laboratory Quality Assurance/Control Program

EPA Wood Heater Test Method Variability Study

TÜV SÜD BABT Production Quality Certification Scheme

WEATHER MONITORING. Competitive rates available for long term hire. Hire rate Per week Per month

RATA/Compliance Testing. Judith Aasland

FPIC3007A Sharpen cutting tools

ISO INTERNATIONAL STANDARD

Combustion Control and Safety A comparison between Zirconium Oxide/Catalytic and Tunable Diode (TDL) Technologies Dr Stephen Firth / Rhys Jenkins

APPENDIX B. Second Quarter 2010 IML Quality Assurance Audit Report

DECISION TO ACCREDIT

Activated Carbon Injection for Mercury Control on Industrial Coal-Fired Boilers

Comparison of Dry Sorbent Injection of Sodium Bicarbonate, Lime, and Carbon and Their Control of Dioxins/Furans, Mercury, Chlorides and Sulfur Dioxide

A Comparison of Proposed PM CPMS Limits

Greschbachstrasse 3b, Kahlsruhe Germany

Hot Gas Filters for Control of Emissions to Atmosphere

GLP/SC/01 Basic statistical tools for analytical chemistry (2 days)

United Nations Environment Programme

LANCOM4 PORTABLE FLUE GAS MONITORING. NO NO2 NOx CO2 H2S SO2 CxHy. CO low CO high O 2 QUALITY CUSTOMER SOLUTIONS

DEKATI EJECTOR DILUTER IN EXHAUST MEASUREMENTS V2.11

VE Technology Sampling System for the (Manual) Measurement of Trace levels of Mercury in Natural Gas. The Background

Particle precipitation in medium- and large-scale biomass combustion plants

An Intercomparison Between NEL, NRLM, Delft Hydraulics, Alden Research Laboratories, CENAM and NIST Using a 200 mm Twin Orifice Plate Package in Water

John Downs Environmental Manager, B&W PGG, KVB-Enertec Products. January 29, 2015

MadgeTech Data Loggers

Cartridge Filters, Fuel Gas Filters, Gas Scrubbers & Filter Separators. A Long Experience in Energy Equipment and one Goal:

AQUILA Network of Air Quality Reference Laboratories

DAILY LIFE of CEMS QA & PM

QUALIFICATION HANDBOOK

ISO INTERNATIONAL STANDARD. Non-destructive testing of welds Eddy current testing of welds by complex-plane analysis

Transcription:

This course is designed to provide training for personnel that are at trainee level and wish to progress through to Level 1 and then progress to Level 2. The course duration is based on five days. Who should attend This course is for personnel with little or no experience in emission monitoring or who are at the Trainee level of MCERTS and wish to progress to Level 1 and then to Level 2 Introduction to major pollutants Principal pollutants prescribed for monitoring and their properties. The following pollutants are included: CO, CO 2, O 2, SO X, NO X, HCl, TOC, particulate matter, dioxins, PCBs and PAHs. typical sources; factors affecting formation; typical emission concentrations; typical ambient concentrations; properties affecting sampling and analysis; environmental and health effects of air pollution. Principles of emissions monitoring Principles of stack-emission monitoring and the reasons it is carried out. This includes: purpose of monitoring for regulatory compliance an overview of legislation on emissions to air, IPC, PPC, European directives and the MCERTS scheme; the nature and use of emissions limits; monitoring requirements - sampling protocols - standard methods - MCERTS method implementation documents - instrument specification and approval - principles of quality assurance and control; the importance of representative sampling; Units and reference conditions temperature, pressure, velocity, mass, volume; concentration and mass-based units; inter-conversion of ppm and mg/m 3 ; reference conditions and normalisation conversion of wet gas composition to dry gas Syllabus conversion to standard temperature and pressure conversion to reference levels of O 2. Operation of equipment General requirements for correct operation of measurement equipment and have an understanding of common faults and their effects. This includes: use of CEMs; instrument theory - flow measurement theory of pitots, orifice plates, dry gas meters, rotameters, differential pressure devices - temperature measurement, theory of measurement including thermocouple and other devices - pressure measurements devices and theory of operation - heater technology; practical knowledge - handling of basic technical equipment - training in the handling of instruments - practical demonstration of the different applications of sampling. Introduction to extractive manual sampling The candidate should demonstrate general knowledge of the equipment used for sampling particulates, multi-phase emissions and gases/vapours. This includes: principle of operation; general arrangement of the sample train - sample (hot) box or oven - cold box or ice bath - umbilical cord - control unit; Tel +44(0) 1462 457535 Fax +44(0) 1462 457157 Source Testing Association Web Site www.s-t-a.org E-mail level1.2@s-t-a.org

general methodology for determination of substances - particulates - dioxins and PCBs - PAHs - trace metals including mercury - gases/vapours using manual and instrumental techniques - water vapour and presence of droplets preparation of sampling equipment - filter preparation - polymeric resin trap preparation - glassware preparation - probe liner preparation - nozzle preparation - preparation of sampling train and leak check - example arrangements of sampling trains. Principles of manual stack-emission monitoring special characteristics of particulates; the need for and principle of isokinetic sampling; effects of water droplets; sampling plane and sampling points; measurement of stack gas velocity and pressure; calculation of flow rate (orifice plate, manometer); setting flow rate (setting charts, calculators, portable computer equipment and the like); calibration of instrumental techniques; sample conditioning and sample integrity. Monitoring legislation, standards and methods Legislation relevant to monitoring, the applicable standards, and the different monitoring techniques for gaseous pollutants. This includes: knowledge of appropriate methods for emission monitoring; what to do if no standard method is available; deviation/modification of methods; hierarchy of methods - CEN - BSI - ISO - other methods such as ASTM, AFNOR, DIN, USEPA and VDI current standards; future standards; types of sampling systems. Analytical techniques and limits of detection Analytical techniques used to support pollutant measurements in the field. This includes: definitions and units; implications of analytical sensitivity for sample amounts and sampling times; limits of detection; sample handling; liaison with analysis laboratories; proficiency-testing schemes. Abatement systems and their effects on monitoring Abatement systems used for the control of the principal pollutants from industrial processes and their impact on emission levels. Systems include: centrifugal separators (cyclones); electrical gas cleaning (for example, electrostatic precipitation); fabric filters; scrubbers; flue gas desulphurisation. Choice of sampling location and timing Plant configurations, their impact on monitoring results, and where to carry out sampling. This includes: achieving representative sampling; positional requirements for particulate matter and gaseous species; criteria for locating sample plane; surveying the sample plane; number of sampling points. Undertaking a measurement campaign Factors to be addressed when undertaking a measurement campaign. These include: determining the objectives of the sampling exercise; deciding on the parameters to be measured;

reviewing process parameters; selecting sampling and analysis techniques; batch sampling; continuous direct reading instruments; arranging sample positions, safe access and essential services; liaison with plant operators; safety on site; transport of samples to laboratory; analysis; evaluating results; report writing. Choice of sampling method, technique and equipment Monitoring approaches, techniques, published methods, equipment and which factors influence their selection. This includes: monitoring approach - periodic monitoring methods - continuous emission monitoring methods; choice of monitoring technique - manual - instrumental; choice of monitoring method and equipment. Types of process operation and process details Types of process operation and relevant process details. These include: types of operation - continuous (steady state, variable or cyclic) - batch process; process details - timescale of operation - awareness of inputs, outputs and mass flows - fuel composition - stack gas conditions. Developing site-specific protocols The candidate must demonstrate knowledge of the requirements to be considered when undertaking a measurement campaign at a specific site. These include: site review; process knowledge; sampling-site details; risk assessments; regulatory permits; method validation; site-specific issues; quality management. Processing measurement results, calculation procedures Procedures used for processing measurement data leading to monitoring results. These include procedures for processing: analytical reports; report components; measurement traceability; precision; internal variability/repeatability; external variability/reproducibility. Principles of calculating uncertainty Principles of calculating uncertainty. This includes: basic terminology; Agency approach to compliance assessment; rules for combining uncertainties; confidence limits and statistically defined uncertainties; tests using certified reference materials; repeat measurements using paired instruments and comparison with certified reference method; building an uncertainty budget from estimates of component uncertainties; assessing deviations from a standard method; effect of number and duration of samples on accuracy. Quality assurance techniques, UKAS, auditing and MCERTS The candidate must demonstrate knowledge of the systems for quality assurance and quality control in stack-emission monitoring and the implications for data accuracy. These include: quality management for emissions monitoring; organisation and management; quality systems; the MCERTS performance standard for organisations; staff; equipment; measurement traceability and calibration;

sample storage and transport; quality audits and reviews; horizontal audits; spot-check audits; system audits; vertical audits; reports; calculations; original observations; equipment; monitoring results file; personnel. Health and safety requirements Risk-management approach to minimising hazards at work. This includes the use of: Risk-assessment and riskmanagement principles; COSHH assessments permanent platforms and scaffolding; lifting and slinging; personnel protective equipment assessments; permits to work.

Suggested documents Training for Personnel to the MCERTS standard MCERTS documents EA Examination Syllabuses for Manual Stack-Emission Monitoring, available on STA web site EA Manual Stack Emission Monitoring Performance Standard for Organisations, available on STA web site EA Personnel Competency Standard for Manual Stack Emission Monitoring, available on STA web site EA MCERTS for manual stack emission monitoring leaflet, available on STA web site EA Manual Stack-Emission Monitoring Guidance for Personnel and Organisations, available on STA web site Guidance documents EA Technical Guidance Document (Monitoring) M1: Sampling requirements for monitoring stack emissions to air from industrial installations, available on STA web site EA Technical Guidance Document (Monitoring) M2: Monitoring of stack-emissions to air STA Annual Guide 2002, available from STA main office Text books Industrial Air Pollution Monitoring Dr Andrew Clarke, ISBN 0-412-63880-0 Continuous Emission Monitoring James A. Jahnke ISBN 0-442-00724-8 CoGDEM Gas detection and Analysis CoGDEM, contact Samantha for details Costs Five day level 2 course *There is a 10% discount for payment within 30 days Course dates and availability. 1165.00 (STA members)*, 2330.00* (non-sta members) The Level 2 course is run every month or on demand. The minimum number of candidates for the course to run is 4 with a maximum of 8. The STA web site has dates of when the courses are to be held. Courses are held at the STA offices. How to book Please fill out the STA training application form, to download our application form please visit: www.s-t-a.org/application Notes Payment for courses for non-sta members are required in advance.