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Showing posts with label nfpa 1. Show all posts
Showing posts with label nfpa 1. Show all posts

"Want to play a game?" [How to Survive an Escape Room]

AP Photo

The energy in the room was suddenly heightened as smoke began to slowly filter through the from some other, outside and unknown, location. How could they escape? The puzzles and riddles didn’t make sense, the clues weren’t coming together, the tumblers weren’t tumbling in the locks.   They were still trapped. With the additional stress of a real (or perceived?) emergency, clear heads became foggy, and chances of escape diminished to nearly zero. As their eyes met, the girls were suddenly and simultaneously gripped by the terror of the realization that this was going to be there permanent grave and final resting place.

The room seemed to be a perfect square or cube, considering the ceiling and floor.  The walls were the drab brown of wood paneling made even darker and dingier by the countless fingers and hand prints from others that had come before. It looked like an old office or library, maybe a study.  A bookshelf along one wall, an antique roll-top secretaries desk on the other. Loosely mounted on the wall to her back was a nearly wall-sized, sepia toned, map of the world. On the floor in the center of the room was a large round rug, probably Persian or Oriental. They didn’t know. The rug was a plush woven pattern of small star-type shapes, sewn within larger star-type shapes. Neatly positioned on the rug, was a brown leather chair. The leather was worn and scratched. A few miniature tears permitted the protrusion of wisps of cotton from the seat, back, and arms. Next to the chair, plugged directly into an outlet on the floor, was a tall slender lamp.  The lamp was a brushed bronze, with a single bulb. The bulb was surrounded by a tassled cloth lampshade. The yellow hues cast by the dark shade, added to the already low visibility within the room. Of all the rooms features and decor, the most ominous was the illuminated wall clock. The clock had been counting down. Now, as smoke filled the room, the clock had stopped at 00:28. Twenty-eight minutes until, what? How did they get here? How did they end up in this locked room? Where was the way out?

This could be the start of another film in the Saw franchise. Or, it could be the beginning of locked-room, pulp fiction mystery of the early 1900’s.  For Julia, Amelia, Gosia, Karolina, and Wiktoria, however, this is no work of fiction, instead, it was the final activity of their young lives. The five girls from Koszalin, a city in northern Poland, were celebrating the birthday at an “escape room” game attraction. What should have been a joyous and momentous occasion, a birthday party for a fifteen year-old, ended in tragedy.

A fire investigation determined that the cause of the fire was a gas leak in the heating system. Local fire authorities also noted the presence of faulty, non-compliant electrical wiring co-mingled with flammable materials. The fire started in the lobby or one of the other rooms of the establishment, and smoke filled into the girls locked escape room. One employee was taken to the hospital in serious condition from direct burns to his body. One report states that the firefighter had significant difficult entering the building to extinguish the fire and recover the girls. This is consistent with statements that the injured employee had tried to get to the escape room but could not due to fire damage.

The girls cause of death was ruled carbon monoxide poisoning. Carbon monoxide (CO) is only one half of the “toxic twins” of smoke.  The other is hydrogen cyanide (HCN). The danger of hydrogen cyanide lies in the fact that it can immediately start to attack and kill the organs, in a fire and smoke scenario this danger is further enhanced by the presence of carbon monoxide. As the HCN attacks the organs, the CO is depriving the oxygen from those same organs. The common materials that are used in the makeup of our homes, businesses, clothing and automobiles - plastics, resins, nylon, polyurethane, melamine, acrylonitrile - produce very high levels of CO and HCN when burning.  These chemicals result in the slow painful death of asphyxiation and bodily organ shut-down.

Originating in Japan, but popularized within just the last few years, escape rooms allow small groups of people to work together using clues, riddles, teamwork, and communication to escape an enclosed space. Typically these rooms are themed, and involve competition with groups in other rooms. The clues are comprised of various combinations of puzzles, props, and riddles.

The thirst for adventure, an adrenaline rush, and an emotion filled social experience has contributed to the growing trend of escape room attractions In the United States.  There is an estimated 2,300 escape room facilities in the US. This is up from only twenty-two in 2014. Bringing in nearly $125,000 a year per room, this is a business that will continue to grow.  How can we prevent the ingredients of escape rooms (and nightmares) - locked in a windowless room, imminent danger, no way of escape - from becoming disaster and tragedy?

One tool we can use is building and fire codes and standards. In the United States there are two primary code-making bodies, the International Code Council (ICC), and the National Fire Protection Association (NFPA). Each of these organizations publish multiple codes and standards including a building code and a fire code.  The ICC publishes the International Building Code (IBC), and the International Fire Code (IFC). The NFPA publishes NFPA 5000, Building Construction and Safety Code; NFPA 1, Fire Code; NFPA 101, Life Safety Code.

Utilization of these codes and standards for building construction, fire protection, or life safety is not mandated or required.  However, all fifty states do voluntarily adopt some version of these, or have created their own codes and standards based on their content.  Once adopted by the state, the provisions then become enforceable as law. Currently neither of these code bodies publishes a code or standard specific to “escape rooms”. They do have sections in their codes for “special amusement buildings”.  This is the section of code that is typically applied to these structures. Escape rooms and special amusements fall into the general building classification of an “assembly occupancy”.

The National Fire Protection Association defines an assembly occupancy as, “an occupancy (1) used for a gathering of 50 or more persons for deliberation, worship, entertainment, eating, drinking, amusement, awaiting transportation, or similar uses; or (2) used as a special amusement building, regardless of occupant load.”

Similarly, the International Code Council defines an assembly occupancy as an occupancy that “includes, among others, the use of a building or structure, or a portion thereof, for the gathering of persons for purposes such as civic, social or religious functions; recreation, food or drink consumption or awaiting transportation…”

A thorough review and application of these codes and standards generates the following mash-up of requirements.

Automatic Fire Sprinkler Systems.
A fire sprinkler system is required for the protection of these structures. Both code bodies allow the omission of fire sprinklers for amusements and attractions that are less than 1,000 sq.ft. and when the travel distance to an exit is less than 50 feet. If the space is less than 10 feet high and 160 feet wide, then sprinklers may also be omitted.

Smoke and Fire Detection.
Smoke alarms and other fire detection devices are required to be installed throughout the amusement space.

Fire Alarm System.
The smoke and fire detection devices are required to send any activation signals to a constantly monitored location.  Additionally, the system must be equipped with an emergency voice/communication system that can be clearly heard throughout the facility. If the fire alarm or fire sprinkler is activated, lighting should be activated so that the exits and exit pathways are clearly illuminated.  Any other sounds or visual application that may be confusing or conflicting are required to be terminated.

Exit Markings.
Exit signage is required to show the location of exit doors and pathways. Directional markings are also required, but they can be setup to be visible only in the event of an alarm or fire sprinkler activation.  Floor proximity exit signage is required and must be mounted with the bottom of the sign between 6” and 18” above the floor. The IBC states that the bottom of the sign must be no more than 8” above the floor. If the exit sign denotes the location of a door, the sign must be within 4” of the door frame.

Interior Finish.
Interior finish includes paints, fabrics, carpets, and other items that are applied to the walls, floors, or ceilings of a structure. These products are classified based on flame spread and smoke development. Class A is the most flame resistant, with a flame spread index of 0-25 and a smoke developed index of 0-450, and is the rating required for special amusement structures.

Another tool that can be utilized for the protection of occupants within escape rooms is to follow industry best practices. The primary best practice is to have a sufficient number of personnel, that are properly trained, to staff the escape room attraction. The staff must be knowledgeable of emergency procedures, fire alarm response, safe exiting and emergency egress procedures, and proper operations of the escape room components and access ways.  Staff should provide instructions on emergency procedures and exit locations to participants prior to the start of the event. Staff should monitoring the rooms via live video feeds. This allows for prompt notification of issues or injuries, and can also be an effective method of communication with participants, if needed.

In construction of the room itself, it is recommended that they have a simple progression and avoid many twists, turns, or small passageways. This contributes to a more quick and direct  exit access in case of emergency. Utilizing only low-voltage electronics for room equipment and props can minimize any potential fire hazard.

It is always a good practice for escape room owners and managers to maintain clear and open communication with the local fire department.  Regular inspections of fire protection and life safety equipment, and the space as a whole, should be encouraged and conducted.

Don’t let the fun, excitement, and faux-adventure of the special amusement of an  “escape room” become a tragedy. Before starting the game ensure that you know where the exits are, you know how to get out of the building, and you know how to notify staff of any issue that may arise.  

John Denley, whose company Escape Room International designs and builds escape rooms across the country, tells owners this, “In order to stay in business, you have to stay up with safety standards, and you have to play by the book. It helps everyone sleep better at night...You want to go into a place with as much safety as possible because you also want to know your investment is safe.”

The man who ran the escape room that killed Julia, Amelia, Gosia, Karolina, and Wiktoria has lost his livelihood and his standing in the community. He is facing up to eight years in prison for “intentionally creating a fire danger and unintentionally causing the deaths.”  At the girls’ funeral, Rev. Wojciech Pawlak eulogized, “In their friendship they were and will remain together. They were together when their lives were ending, they are together here and they will rest together in the cemetery. Forever…”

Power Lines and the WUI

Photo from: LA Times
As fires continue to rage throughout California, investigations into the twelve fires that occurred earlier this year, and burned 245,000 acres, have been concluded. Investigators with Cal Fire have determined that these fires were caused by Pacific Gas & Electric Company power lines. High winds in the area caused trees and branches to fall onto the lines, and in at least one case a power pole failed and collapsed. PG&E currently has a vegetation control program in place with a budget of $400 million per year.

NFPA 1, Fire Code provides clear guidance on how to prevent fires from electrical lines. Chapter 17, Wildland Urban Interface outlines the following  requirements for vegetation clearance around electrical transmission and distribution lines, conductors, and their appurtenances.

  • 10 feet clearance is required around all poles or towers
  • At the time of trimming, the following minimum clearances should be provided based on the line voltage:

  • As the growth returns, it is permitted to grow to within the clearances shown in the table below. Once this minimum distance is reached vegetation must be trimmed back to the required minimum clearance.
                             
  • The AHJ has authority to adjust clearance requirements based on local needs or conditions, and vegetation type

When Is A Fire Watch Required

The Fire Code (NFPA 1) provides the authority to require standby and firewatch personnel to the AHJ.  Standby and fire watch personnel can be required “when potentially hazardous conditions or a reduction in a life safety feature exist”. Section 1.7.17 provides an exemplary list of situations in which this may occur, and clearly states the cost of these personnel is not to be incurred by the AHJ.


Though this section provides the blanket statement allowing AHJ’s to require a standby or firewatch personnel there are eight situations  within the fire code where the requirement for a standby or firewatch is expressly stated.


  • Special outdoor events, carnivals and fairs. Section 10.14.4 states, “where required by the AHJ, standby fire personnel shall be provided…”
  • As part of a fire protection system impairment plan, for systems that will be out-of-service for more than 10 hours within a 24-hour period, a fire watch is one of the options that can be required to adjust for the increased fire risk. [13.3.3.6.5.2]
  • Facilities with impaired or chronic nuisance prone fire alarm systems. Chronic nuisance alarms are defined as those that produce “5 or more nuisance alarms within a 365-day period”. [13.7.1.5.3]
  • During building demolition operations and at hazardous demolition sites. [16.5.4]. Section 16.2.2 requires construction sites utilizing trash chutes to submit a safety plan to the AHJ. A component of this safety plan is fire watch personnel.  This can be found in the Annex, and refers the reader to NFPA 241.
  • Fire watch and standby personnel can be required in any assembly occupancy [20.1.5.7]. The annex section provides guidance as to what specific types of assembly occupancies a fire watch may want to be implemented, “such locations would include...the spaces underneath grandstands and the areas inside and outside tents and air-supported structures”. [25.1.8]
  • Soundstages and motion picture production facilities when pyrotechnics are being used or during other hazardous operations and activities require firewatch and standby personnel. [32.4.4/32.5.4]
  • For storage occupancies, section 34.5.4.3 states that a fire watch “shall” be required whenever the sprinkler system is out-of-service. Additionally, anytime hot work (cutting, welding, soldering, brazing, etc) is being conducted, a fire watch must be in place. [34.6.3.3]
  • A fire watch is required during hot work operations in which combustible materials, or wall openings are within 35 feet of the work area, or if the material is greater than 35 feet but easily ignited by sparks. [41.3.5]
The following list represents a compilation of fire watch personnel responsibilities and requirements.  These are listed throughout the various code areas and annex sections.


Fire watch personnel shall:

  • Be properly trained on their specific duties and responsibilities
  • Be equipped with fire extinguishers or extinguishing equipment
  • Have emergency services and fire department notification capabilities
  • Be assigned no other duties, fire watch only
  • Continuously patrol the affected area
  • Remain on-site throughout duration of the work and up to 2 hours upon completion of work
  • Detect and document the presence, or lack of, fire
  • Confirm other systems and egress are functioning properly
  • Prevent accumulation of flammable materials
  • Maintain work area in fire-safe condition
  • Possess authority to stop work if unsafe


Orr Protection has created a great toolkit for conducting a fire watch. This free download includes, standard fire watch rules and patrol patterns, a fire watch log, and a complete checklist for personnel and responsibilities.

Access the Orr Protection Fire Watch Toolkit here --> http://bit.ly/2LReK1j

Spray Applications and the Fire Code



This presentation provides an overview of the fire protection requirements for spray booths as stated in NFPA 1, Chapter 43. Operations, functions, hazards, and fire protection system requirements are shown. This presentation will provide a thorough understanding of how to properly apply the fire code requirements for these types of operations and structures.



4 Components of a Service Delivery Evaluation



def., the simultaneous occurrence of events or circumstances

As communities grow and housing developments expand, they can outgrow the local municipalities ability to provide efficient and effective emergency response, fire protection, and life safety services. To address this issue NFPA 1, Chapter 15, Fire Department Service Delivery Concurrency Evaluation provides guidance and authority to the AHJ to ensure that an adequate level of service is maintained.  

This section identifies several expectations that must be met by both, the developer, and the fire department. Only those developments that increase the fire department service area population or building square footage by more than 1% can require a fire department concurrency evaluation.  This suggests that the department should have some form of community risk assessment (which would include an analysis of total building stock and square footage) available.  Otherwise, the 1% increase may not be able to be proved.

The concurrency evaluation can be conducted by those individuals that the AHJ determines to be qualified.  These qualifications may come through experience, education, or other special knowledge. There are four components that the evaluation must include.

Component 1. The current level of fire protection, life safety, and fire prevention services must be clearly stated and demonstrated.

Component 2. The predicted post-development fire protection, life safety, and fire prevention service impacts must be shown. Any additional staffing, facilities, and resources required should be clearly stated and provided for in the evaluation.

Component 3. The post-development level of service may fall below current level of service and be accepted if their is a mitigation plan in place.  All recommendations and mitigation plans are to be included in the evaluation.

Component 4.  The funding sources and methods to pay the costs of the mitigation recommendations is to be clearly shown.

The concurrency evaluation is conducted at the expense of the developer. The development cannot proceed until the required concurrency evaluation has been conducted and approved by the AHJ.

Multiple tools, resources, and skills are required by the evaluator. A community risk assessment or community risk reduction plan is important for providing a current picture of a communities population, properties, and fire protection and life safety services and programs. Using a blend of data and business analytics tools, accurate post-development predictions and service impacts can be forecast. The most current editions of NFPA 1710, 1720, and 1730 outline minimum services to provide and the staffing levels required to provide those services.


What's your MAQ?


For companies, organizations, or operations that store and handle hazardous materials answering the MAQ question is critical. The MAQ is the "maximum allowable quantities" of hazardous materials that may be stored, used, or dispensed within a single control area. Allowable quantities and process for determining the MAQ is outlined in NFPA 1, Chapter 60.


"HazMat" by clement127

Unless you deal with hazardous materials on a daily basis, "allowable quantities" and hazardous materials sections of the code can be daunting and overwhelming. Once you understand the basic components and process it becomes quite simple and straight-forward. Determining your MAQ can be broken down into a 4 step process.

Step 1. Determine your occupancy type.

Maximum allowable quantities can vary based on the type of occupancy that the materials will be stored or utilized in. There is a separate table for each of the following occupancy types:

  • Assembly
  • Educational
  • Day-care
  • Health care
  • Ambulatory health care
  • Detention and correctional
  • Residential
  • Mercantile
  • Business
  • Industrial
  • Storage
These tables begin at NFPA 1:60.4.2.1.2.  For modifications, or occupancies not covered, reference Table 60.4.2.1.1.3.

Step 2. Determine the material type. 


NFPA 1:60.3.1 lists 14 hazardous materials classifications.  Determine which one of these classifications your hazardous material falls into:

  1. Corrosive solids, liquids, or gases
  2. Flammable solids
  3. Flammable gases
  4. Flammable cryogenic fluids
  5. Inert cryogenic fluids
  6. Inert gases
  7. Organic peroxide formulations
  8. Oxidizer solids or liquids
  9. Oxidizing gases
  10. Oxidizing cryogenic fluids
  11. Pyrophoric solids, liquids, or gases
  12. Toxic or highly toxic solids, liquids, or gases
  13. Unstable (reactive) solids, liquids, or gases
  14. Water-reactive solids or liquids
These are each defined within chapter 3 of NFPA 1 and in our Glossary of Hazardous Materials Classifications.


Step 3.  Determine the material class.

Many of these materials are further broken down in to classes.  These classes can be based on the state of the material, or the potential hazard it possesses.  These classes are defined in the materials definition (NFPA 1:3, or Glossary of Hazardous Materials Classifications).


Step 4.  Determine the material state.

Some hazardous materials can be stored, used, or dispensed in different forms or states. Determine whether your material is a solid, liquid, or gas.

When we put these steps together, here is how the process should work:

As the owner of "Widget Business Solutions", I find that there is a need for organic peroxides on site.  I start by going to the table in NFPA 1:60.4.2.1.10.1. This table outlines the MAQ per control area in Business Occupancies.

In the "Material" column I find 'organic peroxides'.  I see that there are different allowances based on class.  Further, research into my product reveals that this is a Class III organic peroxide (these burn rapidly and present a moderate reactivity hazard).

Next I need to determine in what state the material will be in.  Per the table, the only options available are Solid or Liquid.  I choose to utilize this material in its solid form.  Under the column labeled "Solid" I see that I can house 1,500 gallons of Class III organic peroxides.




When working with Hazardous Materials, you may find our Glossary of Hazardous Materials Classifications to be helpful --> click here to download.



Host a Successful Tent Event


When industrial, manufacturing, or aviation facilities want to announce a new product, host a dignitary, or throw a party, the solution for where to host these people is often found in tents or temporary membrane structures.   These are a viable and cost effective solution, however, they require compliance with a different set of codes than the normal facility activities.  Used in these conditions, these tents must be protected as places of assembly.




There are three code sections that address the fire prevention and life safety requirements for tents:

  • NFPA 101, Life Safety Code
    • Chapter 11 - Special Structures and High Rise Buildings
    • Chapter 12/13 - Assembly Occupancies
  • NFPA 1, Fire Code
    • Chapter 25 - Grandstands and Bleachers, Folding and Telescopic Seating, Tents, and Membrane Structures
  • NFPA 102, Standard for Grandstands, Folding and Telescopic Seating, Tents, and Membrane Structures
    • Chapter 8 - Tents
These codes state that any tent over 200 sq. ft. requires a permit and, therefore, must comply with these standards. 


All tents must be flame and fire resistant. This is evidenced by a certification stating that the tent has been tested and approved per the criteria of NFPA 701, Standard Methods of Fire Test for Flame Propagation of Textiles and Films. Certification should be sent to the local authority or agency responsible for the tent.  This certificaiton should also be sewn into the tent fabric. As an event planner, or facility safety person you should also request these certifications from the vendor.

If your event requires multiple tents, a minimum of 10’ between stake lines must be maintained.  This is to ensure an adequate means of egress and emergency access. Any tent stakes adjacent to a means of egress should be capped off or covered to avoid injury.
The ground under the tent and and at least 10’ outside of the tent, is required to be clear of flammable/combustible materials or vegetation. This would include straw, mulch, trees, grasses, and fuel sources, such as fueled vehicles.

Smoking inside of tents is not permitted.  “No Smoking” signage should be posted.

At least 1 (minimum 5lb, 2A:10BC) fire extinguisher is required.  Anything over 200 sq. ft. will require more than 1. The amount, extinguisher locations, coverages, and travel distance should be in accordance with NFPA 10, Standard for Portable Fire Extinguishers.

LP tanks (typically used for cooking and heating) cannot be installed within 5’ of the tent.  The tanks should be secured and protected from damage.

Exits shall be designated and clearly marked (minimum of 2).  This is required on every tent, but is more important for tents with closed sides. This ensures that certain areas inside the tent will be free of tables, chairs, stages, or any other elements, and will be maintained as a safe point of egress. If the even will be taking place at night, the lighted exit signage and emergency lights must be installed.

All electrical chords, boxes, and related components are to be protected from contact by the public.  This can be accomplished with proper covers, temporary fencing, and warning signage. Electric generators cannot be installed within 5' of a tent and are required to be protected from public contact, as well.

Assembly occupancies with more than 200 seats are required to have the seating permanently attached to the floor. The code realizes that in some instances this may be impractical, so it makes allowances for differing types of floor plans and seating arrangements. However, if the chairs will be in rows they must be attached in groups of not less than 3.










Conducting Hot Work Operations

Smoke Showing Photography: Boston Ma - 9 Alarms 2 LODD's - March 26 2014 &emdash; On March 26, 2014 Lt. Edward Walsh, Jr. and Firefighter Michael Kennedy of the Boston Fire Department lost their lives in the line of duty.  The fire, a brownstone in the 200 Block of Beacon St., would escalate to 9-alarms. The cause of the fire was determined to be wind-driven sparks from a welding operation.

D & J Iron Works were found to be at fault in this fire and these deaths.  Though, not intentional, their lack of proper fire safety precautions will cost them $58,000 in fines.  This seems like a small financial penalty for the damage and lives lost.  However, this incident will, no doubt, put this company out of business due to lost revenue, damaged reputation, and lost standing in the community.

D & J Iron Works was cited and fined for 10 violations, among them are the following:
  • lack of employee fire safety training
  • ineffective fire prevention precautions
  • no posted "fire watch" during the welding operation
OSHA and the NFPA have specific guidance and safeguards that must be followed when performing hot work operations.  This can most readily be achieved by instituting a hot work permit program/system at your facility or within your community.  FM Global freely provides a complete hot work system and information.  These can be ordered through their website.

Below is a brief slideshare that provides an overview of the hot work process and considerations.  This presentation is based on the requirements found in NFPA 1:41 and NFPA 51B.




If you would like any further information, training materials, or assistance in creating your own hot work program, feel free to contact me.

Related Post:


How to Store Hazardous Materials


Many industrial facilities, at some point, will find it necessary to create a hazardous material storage area.  Many of these materials and liquids will fall into the high hazard contents classification.  NFPA 101:6.2.2.4 defines a high hazard as contents “that are likely to burn with extreme rapidity or from which explosions are likely”.  The storage of these materials is outlined in the storage occupancy chapter of NFPA 101.  Though there are a lot of code requirements and nuances when creating these facilities.  This article should serve as a basic primer, that will send you in the right direction for further research.


The required structural components of the building itself shall meet the following:


  • Exit and Emergency Lighting - shall be provided within the space (101:42.2.8; 101:42.2.9; 101:42.2.10).
  • Means of Egress - two separate and remote means of egress shall be in place (101:42.2.4.1).  
  • 1-hr. Rated Fire Wall - the code states that any area having a degree of hazard greater than normal shall be enclosed with a 1-hour rated fire barrier (101:42.3.2; 101:8.7.1.1).


NFPA 1, Fire Code, section 60 outlines specific requirements and items that must be in place:


  • Material Safety Data Sheets (MSDS) to be available on the premises (1:60.5.1.2).
  • Emergency Plan and Hazardous Materials Management Plan to be in place(1:60.1.5)
  • “No Smoking” signage to be posted (1:60.5.1.5.1; 1:60.5.1.8.3).
  • NFPA 704 placards to be posted near entrance to the building (1:60.5.1.8.2.1).
  • All electrical wiring to be properly installed and covered (1:60.5.1.10.1).
  • Incompatible materials are to be segregated and stored separately (1:60.5.1.12).


Other applicable codes and standards:


These facilities and processes can be adequately protected only when each of these codes and standards are utilized and applied together.




Hot Work: Hidden Hazards

The U.S. Chemical Safety Board has recently released this video detailing the 2010 hot work accident at DuPont in Buffalo.




Hot work operations and safety are to be followed as outlined in NFPA 1:41 and NFPA 51B.

How To Sell Tires and Prevent Fires


Many auto repair establishments start out as just that, then, over time, they add tire sales to their list of services.  However, the fire code offers very stringent requirements on the proper and fire safe storage of tires. 

The National Fire Protection Association (NFPA 1:33) provides in-depth details on fire prevention measures, and storage procedures that must be taken. These requirements pertain to the storage of more than 500 tires. Here are a few of the highlights:

1.  Fire deparment access roads need to be maintained.  Any doors or gates to the property will require fire department access (http://www.knoxbox.com/).  If there are several tire storage piles, then access roads need to be created and maintained between and to each pile.  The following chart outlines the distances acceptable for fire department access roads and separation from other structures.  Fire department access roads are not to be less than 25' in width.



2.  All ignition sources (cutting, welding, heating devices, open fires, burners, vehicle exhaust) are prohibited within the tire storage area.  "No Smoking" signs shall be prominently displayed.

3.  An emergency response plan shall be created by the owner, this plan should be submitted to the local fire authority for approval and recommendations.

4.  Firefighting equipment shall be maintained on site.  The required equipment consists of:
  • (1) 2A:10BC fire extinguisher
  • (1) 2.5 gal water extinguisher
  • (1) 10 ft. long pike pole
  • (1) rigid rake
  • (1) round point shovel
  • (1) square point shovel

5.  The tire storage area shall have minimum 10' high fencing surround the area.  Signage is to be posted which states the name of the operator, operating hours, emergency contact numbers, and site rules.  This signage is to be posted at the entrance to the facility.