Compressed Gases and Cryogens

Similar documents
PURPOSE OF THE POLICY

CITY AND COUNTY OF DENVER CR&CF RISK UNIT Compressed Gas Safety Standard

Compressed Gas Cylinders - Guideline

Material Handling and Storage of compressed gases and Air equipment

CHAPTER 26 WELDING AND CUTTING

Compressed Gas Cylinder Safety

Cryogenic Materials Operating Procedure and Safety Requirements

Compressed Gas Properties. Introduction. Compressed Gas Properties. Definition of a Compressed Gas

This written Compressed Gas Plan is kept at the corporate office and in the written Safety & Health Program.

Savard Labor & Marine Staffing, Inc. Compressed Gas Safety Program Rev3/14

Compressed Gas Cylinder Safety Program April 4, 2017

Compressed Gases Safety Program

Management Plan for Compressed Gas

UNIVERSITY OF ROCHESTER ENVIRONMENTAL HEALTH & SAFETY

General Precautions for handling compressed gases

Process Name Compressed Gas Cylinders Program

Compressed Gasses Safety

Risk Management Department. Compressed Gas Safety

Cryogenics is the science of ultra low temperatures. Low temperatures are achieved by the liquefaction of gases.

Compressed Gases Storage and Handling Safety Policy. Individual Unit Function: Safety Procedure No.: SOP-0103 Page: 1 of 6

Student Shop Safety. University of Tennessee Safety Guide GS-005. Purpose. Scope and Applicability. Definitions and Abbreviations.

EHS Laboratory Guidance: Cryogenic Material

WHAT IS GAS TANK/CYLINDER?

Leader s Guide ERI Safety Videos

CALL BEFORE YOU DIG POLICY AND PROCEDURE

Section 1.3: PRESSURE VESSEL COMPONENTS AND SYSTEMS AND COMPRESSED GAS CYLINDERS

Developing Safety Guidelines for Cryogenic Liquids.

Date Issued: 27 September 2018

Section 35 Brieser Construction SH&E Manual

ESSENTIAL SAFETY RESOURCES

Hazard Communication Program

Bauman Machine Inc. COMPRESSED GAS CYLINDER SAFETY

COMPRESSED GAS CYLINDERS

Safety Data Sheet. Zero Air 1 PRODUCT AND COMPANY IDENTIFICATION. Manufacturer NorLab a division of Norco 898 W. Gowen Rd.

SAFETY DIRECTIVE 3.0 REFERENCES. 3.1 See Appendix B

MATERIAL SAFETY DATA SHEET

Quebec Quebec Tel : Fax : MSDS: Methane, Oxygen in Nitrogen Mixture PRODUCT INFORMATION

Hydrogen in Air % to 2%

SAFETY TRAINING LEAFLET 06 CARBON DIOXIDE

1.2.7 Hazard Communication

Safe Handling & Use of Liquid Nitrogen and Other Cryogenic Gases

Welding and Cutting (Hot Work) Operations Self-Audit Checklist. Building Room Supervisor Date

KENNECOTT UTAH COPPER CORPORATION SAFETY AND HEALTH STANDARDS COMPRESSED GAS

Quebec Quebec Tel : Fax : MSDS: Hydrogen 25% in Nitrogen Mixture PRODUCT INFORMATION

U.S. CONCRETE, INC. SAFETY POLICY and PROCEDURE MANUAL

Doc No: WELDHOT Midland Engineering Co., Inc. Initial Issue Date 12/14/15 Safety Management System

Cal/OSHA T8 CCR 1536 Cal/OSHA T8 CCR 4799 Cal/OSHA T8 CCR 4845 Cal/OSHA T8 CCR 4848

Welding, Cutting, and Brazing

SERIES & NO. SMI - 115

PRODUCT INFORMATION HAZARDOUS INGREDIENTS PHYSICAL DATA. Tel: Fax: Internet:

Laboratory Inspection Checklist

Each cryogenic liquid has its own specific properties, but most cryogenic liquids can be placed into one of three groups:

Hazardous Substances Policy - Control Measures POLICY

MATERIAL SAFETY DATA SHEET

Refrigerant R170 - ETHANE

STORAGE OF COMPRESSED GAS CYLINDERS (SAF-SPI-15)

Developing a Policy for Auto Transportation of Medical Oxygen in High Pressure Cylinders and Cryogenic Vessels

OFFICE OF STATE HUMAN RESOURCES

Laboratory Safety Review Checklist One Shields Ave Davis, CA Phone: (530) Fax: (530)

SAFETY POLICY AND PROCEDURE MANUAL All Euramax Subsidiaries. Number K-3.0 Welding Safety Procedures

Standard Operating Procedure (SOP) Compressed Gas Cylinders (Original SOP from Eastern Washington University)

Research Laboratory Safety Self-Inspection: Chemical & Physical Safety Checklists

Hydrogen in Air % to 2%

GUIDELINES FOR CONDUCTING HYDROGENATION REACTIONS

HAZARDOUS WASTE OPERATIONS AND EMERGENCY RESPONSE PLAN Kenyon College

DUQUESNE UNIVERSITY. Liquid Nitrogen Safety

Standard Operating Procedure (SOP)

PRODUCT INFORMATION HAZARDOUS INGREDIENTS PHYSICAL DATA. Tel: Fax: Internet:

FLAMMABLE GASES AND FLAMMABLE CRYOGENIC FLUIDS

Compressed Gas Safety General Safety Guidelines

SECTION 7 HAZARD COMMUNICATION PROGRAM

TEMPLE UNIVERSITY ENVIRONMENTAL HEALTH AND RADIATION SAFETY

Instructions for Completing the UW-Madison Laboratory Chemical Hygiene Plan Template

Rhino Ready. Things to Know Before You Start Work

SAFETY DATA SHEET PRODUCT NAME Sulfur hexafluoride 1.2 RELEVANT IDENTIFIED USES OF THE SUBSTANCE OR MIXTURE AND USES ADVISED AGAINST :

Prepared By: Environmental. File Name: WEL-ESOP Effective Date: 17 Sep 2007 Document Owner: EMD

Operations: HSE. Health and Industrial Hygiene. Laboratory Safe Work Practice

This training does not attempt to cover all safety regulations or precautions.

Respiratory Protection

Section 2 Safety, Tools and Equipment, Shop Practices Unit 4 General Safety Practices. Unit Objectives. Pressure Vessels and Piping (1 of 2)

Respiratory Protection

Hot Work Program. University of Wisconsin-Platteville Reviewed 4/2016

Laboratory Safety Review Checklist One Shields Ave Davis, CA Phone: (530) Fax: (530)

WELDING, CUTTING AND BRAZING

ESSENTIAL SAFETY RESOURCES

Quebec Quebec Tel : Fax : MSDS: Methane Compressed PRODUCT INFORMATION

Jupiter Type 4 Tube Owner s Manual

Hazard Communication Program. San José State University

Laboratory Standard Operating Procedure: Cryogenic Liquids

HAZARD COMMUNICATION PLAN. Clemson University

HEAT EXCHANGE AND TRANSFER, INC. 500 Superior Street Carnegie, PA (412) Fax: (412)

Quebec Quebec Tel : Fax : MSDS: Argon Compressed PRODUCT INFORMATION

Quebec Quebec Tel : Fax : MSDS: Hydrogen Sulfide in Nitrogen Mixture PRODUCT INFORMATION

MATERIAL SAFETY DATA SHEET Product Name: Gas Mixture (CARBON MONOXIDE IN AIR) DOT ID No:

Material Safety Data Sheet Oxygen

Welding and Cutting With Oxygen-Fuel Gas

I. Subject: Compressed gas cylinders, regulators, and portable liquid systems.

TABLE OF CONTENTS PART 2 - CONFINED SPACES

HEALTH AND SAFETY MANUAL

Hazard Communications. Your Right to Know

Transcription:

Compressed Gases and Cryogens University of Tennessee Safety Guide HM-011 Document Contact: EHS Date effective: January 1, 2009 Revision Date: October 1, 2015 Purpose This guideline adheres to the Occupational Safety and Health Administrations (OSHA) compressed gas standards as found in 29 CFR 1910.101. Scope and Applicability This document serves all University department members working within University owned, leased or subsidiary facilities. This guideline is applicable to daily users and those who only occasionally have cause to use the equipment. Abbreviations and Definitions Definitions According to OSHA Hazard Communication Standard a compressed gas is defined as the following: A gas or mixture of gases having, in a container, an absolute pressure exceeding 40 pounds per square inch (psi) at 70⁰F (21.1⁰C); or A gas or mixture of gases having, in a container, an absolute pressure exceeding 104 psi at 130⁰F (54.4⁰C) regardless of the pressure at 70⁰F (21.1⁰ C); or A liquid having a vapor pressure exceeding 40 psi at 100⁰F (37.8⁰C) as determined by the American Society for Testing and Materials (ASTM) 323-72. Compressed gases can be toxic, flammable, oxidizing, corrosive or inert. In the event of a leak, inert gases can quickly displace air in a large area creating an oxygen-deficient atmosphere, toxic gases can create poison atmospheres and flammable or reactive gases can result in fire and exploding cylinders. Roles and Responsibilities Managers and Supervisors shall: Assure that equipment associated with the movement, storage and use of compressed gas cylinders is available and properly inspected before being used. Ensure department members conducting work associated with compressed gas and/or compressed air equipment have the appropriate training and understand all aspects of safety associated with this equipment. Employees and Students shall: Complete the University s compressed gas training prior to working with compressed gases in their respective departments. Wear the appropriate personal protective equipment for the task being performed. Inspect hazard control measures and personal protective equipment prior to each use.

Compressed Gases and Cryogens Document - HM-011 2 Maintain awareness of hazards associated with the handling and use of compressed gas. EHS Shall: Perform annual safety inspections in areas where compressed gas cylinders are used on campus. Review and revise the Compressed Gas Guideline on a routine basis. Provide training for people who will use compressed gas cylinders in their jobs. Procedures Recommended Safe Practices for Handling/Storage General Safety Requirements 1. All containers shall have their contents identified on the label. Color shall not be used to identify container content. Containers not bearing a legibly written, stamped, or stenciled identification shall not be used and shall be returned to the supplier. 2. The fittings on vessels should not be modified under any circumstances. 3. All compressed gas cylinders, either in use or in storage (empty or full), shall be secured in an upright position by means of a strap, chain or rack. NOTE: Chains and straps secured to the wall should be attached to studs rather than sheet rock to ensure secure points of attachment and shall be around the upper third of the cylinder. 4. Suitable hand trucks, equipped with safety chains, shall be utilized when transporting gas cylinders. Cylinders shall not be rolled in the horizontal position or dragged. Never use the cylinder valve as a handle to move a cylinder. 5. Ropes, chains or slings shall not be used to suspend containers unless equipped with appropriate lifting attachments such as lugs. Where attachments have not been provided, suitable cradles or platforms to hold the containers shall be used for lifting. 6. Protective valve caps must be in place when cylinders are not in use. Do not switch caps, since not all suppliers use the same cap threads. 7. Container valves shall be closed at all times (full or empty) except when the container is in use. Valve outlets shall be pointed away from all personnel when the valve is being opened. 8. All cylinders, lines, and equipment used with flammable compressed gases shall be grounded. Cylinders used in conjunction with electric welding shall not be grounded or used for grounding. 9. When in use, all cylinders must be equipped with an appropriate regulating device. All regulators must be marked to identify the gas (or group of compatible gases) with which the regulator is to be used. Regulator threads must match cylinder valve outlet threads. Adapters shall never be used to attach a regulator to a cylinder that it is not designed. 10. When a cylinder is in use, a hand wheel, valve handle, spindle key or special tool to open the cylinder valve shall be attached to the cylinder so that it will be available immediately in the event of an emergency. 11. Cylinders containing compressed gases shall be used only in well-ventilated areas. 12. Cylinders containing toxic or flammable gases must be stored in an approved storage area. Storage areas shall be prominently posted with the hazard class or the name of the gases stored. 13. Containers shall not be stored near elevators, walkway, unprotected platform edges, or in locations where heavy moving objects may strike or fall on them. Stored containers (inside or outside) shall not obstruct exit routes or other areas normally used or intended for the safe exit of personnel. 14. Cylinders containing oxidizing gases, such as oxygen and nitrous oxide, shall be stored separately from flammable gases or liquids. Separation will be 25 feet or by a fire-rated wall.

Compressed Gases and Cryogens Document - HM-011 3 15. Flammable gases shall be stored in well-ventilated areas away from oxidizers, open flames, sparks, and other sources of heat or ignition. 16. Empty cylinders shall be so identified and stored separately from full or partially full cylinders. 17. Compressed gas cylinders shall be used only for their intended purposes. 18. Compressed gases should be handled only by experienced and properly instructed personnel. Cryogenic Liquids Cryogenic liquids are gases handled in liquid form at relatively low pressures and extremely low temperatures (usually below -130 F (-90 C)). Because of their low temperatures, cryogenic liquids are handled in doublewall, vacuum-insulated containers to lessen evaporation and venting of gas. Some cryogenic liquids in small quantities are also handled in open, low pressure, thermos-type containers (dewars) in laboratory work. 1. When handling cryogenic liquids, wear suitable eye protection, such as a face shield and safety glasses or safety goggles. 2. Wear hand protection, such as insulated gloves, to prevent contact with cold liquid, cold gas, and cold equipment or piping. Gloves should be loose fitting so that they can be readily removed in the event liquid is splashed into them. 3. Wear cuff-less trousers over (outside) high-topped shoes to prevent spills from being trapped in shoes or allowed to contact the feet. 4. Handle and store containers in an upright position. 5. The containers shall not be dropped, tipped over, or rolled on their sides. Use a four- wheel hand truck designed to move such containers to move cryogenic liquefied gas containers with a capacity greater than 20 gal (76 L). 6. Store and handle cryogenic liquefied gas containers in well-ventilated areas to prevent hazardous concentration of the gas. 7. Containers and equipment assigned for a specific cryogenic liquefied gas service shall not be used for the storage or use of another cryogenic liquefied gas. 8. Provide gas containers with pressure relief devices adequate to relieve excessive pressures within the containers. 9. Where cryogenic liquefied gas or cold gas may be trapped in piping between valves, equip the piping with a pressure relief device. Only transfer lines designed for cryogenic liquefied gases shall be used. It is recommended that all vents be piped to the exterior of the building. 10. Store and transfer cryogenic liquids under positive pressure to prevent the infiltration and solidification of moisture, air, or other gases. Personal Protective Equipment The hazards associated with the compressed gases and equipment at the University of New Haven has been assessed and the University has taken measures to eliminate or reduce their presence with engineering and administrative controls. Where these controls were not enough for employee protection, all necessary personal protective equipment has been supplied according to the University s Personal Protective Equipment (PPE) Guideline and Procedure. General requirements for the use of personal protective equipment include wearing protective gloves when using gases that are harmful to the skin. Aprons or other protective clothing may be needed depending on the risk of skin contact. University department members are instructed to consult the material safety data sheet before handling a compressed gas for appropriate manufacturer personal protective equipment recommendations.

Compressed Gases and Cryogens Document - HM-011 4 Eye protection must always be worn when handling and working with compressed gases. In some cases additional protection may be needed in the form of a face shield when working with compressed gases. Inspection Environmental Health and Safety (EHS) shall conduct hazard surveillance of all laboratories, and other areas on campus that use compressed gas cylinders (i.e. shop areas) annually. During the annual site visit the storage and use of compressed gas cylinders shall be evaluated. Deficiencies shall be noted on the standard inspection form and communicated to the responsible individual. The person responsible for the area that contains cylinder deficiencies shall make corrections and respond to the EHS. Chemical Inventory Compressed gas cylinders shall be included on the chemical inventory for each department that contains these vessels. For additional information consult EHS or safety guideline number EC 5 regarding compressed gas cylinders and chemical inventory. Training and Information All personnel working with compressed gas cylinders shall be trained in safety and proper procedures. Training should include the following as a minimum, as applicable: General safety procedures for use with compressed gas cylinders or medical gases including: o safety hazards associated with the gases o hazards associated with high-pressure cylinders o hazards associated with the specific equipment o hazards associated with contaminated tools, parts, etc. Procedures to prevent cross connections of medical gas pipelines. NOTE: Many older outlets are not inherently safe from cross connection due to common threads or fittings used for different gases. Mechanical skills required for work on equipment. Procedures to follow prior to any shutdown of a service or during an emergency. Location, operation, and areas controlled for all valves. Training should be conducted and documented annually. Training records shall be kept for at least three years. References Compressed Gas Association (CGA) Pamphlet, CGA P-1, Safe Handling of Compressed Gases in Containers NFPA Codes 43-A, 43-C, 45, 50-A, 51, 58, 70, and 77 OSHA 29 CFR 1910, Subpart H Appendices Appendix A: Compressed Gas Guidelines Disclaimer The information provided in these guidelines is designed for educational use only and is not a substitute for specific training or experience.

Compressed Gases and Cryogens Document - HM-011 5 The University of Tennessee Knoxville and the authors of these guidelines assume no liability for any individual's use of or reliance upon any material contained or referenced herein. The material contained in these guidelines may not be the most current. This material may be freely distributed for nonprofit educational use. However, if included in publications, written or electronic, attributions must be made to the author. Commercial use of this material is prohibited without express written permission from the author.