Build a Field Level Hazard Assessment
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Published by SALUSField Level Hazard Assessment (FLHA) for Routine Maintenance ============================================================
Assessment Date: \[DATE]
Assessor: \[ASSESSOR NAME]
Department/Area: \[DEPARTMENT/AREA]
Review Date: \[REVIEW DATE]
1\. Assessment Scope
This Field Level Hazard Assessment (FLHA) covers all tasks performed during routine maintenance activities. It includes the identification of potential hazards, assessment of risks, and implementation of control measures to ensure the safety of all personnel involved. Excluded from this assessment are emergency repair activities, which require a separate, specific risk assessment at the time of the event.
2\. Risk Assessment Methodology
This FLHA employs a semi-quantitative risk assessment method using a 5x5 risk matrix to determine risk levels. The matrix considers likelihood (Rare, Unlikely, Possible, Likely, Almost Certain) and severity (Negligible, Minor, Moderate, Major, Catastrophic) to assign a risk rating (Low, Medium, High, Extreme). Control measures are selected based on the hierarchy of controls (Elimination, Substitution, Engineering, Administrative, PPE) to reduce risks to acceptable levels. [1]
3\. Risk Matrix Reference
The following matrix is used to evaluate risk levels based on likelihood and severity:
| Likelihood |
|---|
| Rare | Unlikely | Possible | Likely | Almost Certain | | Severity | Catastrophic | Low | Low | Low | Moderate | Moderate | | Major | Low | Moderate | Moderate | High | High | | Moderate | Low | Moderate | High | High | Extreme | | Minor | Moderate | High | High | Extreme | Extreme | | Negligible | Moderate | High | Extreme | Extreme | Extreme |
4\. Hazard Identification and Risk Evaluation
1\. Use of damaged or defective tools
Potential Consequences: Cuts, lacerations, punctures, or blunt force trauma
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Moderate | Medium |
Control Measures
- Eliminate the use of the damaged tool.
- Substitute with a tool in good working condition.
- Implement regular inspection of tools before and after use.
- Provide training on proper tool use and maintenance.
- Require the use of safety glasses and gloves.
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Unlikely | Minor | Low |
2\. Electrical shock from contact with live electrical components
Potential Consequences: Electrical burns, cardiac arrest, death
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Unlikely | Major | Medium |
Control Measures
- De-energize and lockout/tagout equipment before maintenance.
- Verify isolation of energy sources.
- Use insulated tools and equipment.
- Provide training on electrical safety and lockout/tagout procedures.
- Wear appropriate electrical PPE (e.g., insulated gloves, safety shoes).
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Rare | Moderate | Low |
3\. Musculoskeletal injuries from manual lifting and awkward postures
Potential Consequences: Strains, sprains, back injuries, hernias [3]
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Likely | Moderate | High |
Control Measures
- Use mechanical lifting aids (e.g., hoists, cranes) for heavy items.
- Provide training on proper lifting techniques.
- Reduce the weight of items to be lifted.
- Implement team lifting for heavy or awkward items.
- Use personal protective equipment (PPE) such as back supports and gloves.
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Minor | Medium |
4\. Entanglement in moving machinery parts
Potential Consequences: Lacerations, fractures, amputations
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Major | High |
Control Measures
- Install machine guards to prevent contact with moving parts.
- Ensure guards are in place and functioning correctly.
- Provide training on machine guarding and safe operating procedures.
- Implement lockout/tagout procedures during maintenance.
- Use awareness barriers and signage.
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Rare | Moderate | Low |
5\. Exposure to hazardous chemicals (e.g., cleaning solvents, lubricants)
Potential Consequences: Skin irritation, respiratory problems, chemical burns, poisoning
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Likely | Moderate | High |
Control Measures
- Provide adequate ventilation to remove fumes and dust.
- Use respiratory protection (e.g., respirators) when ventilation is insufficient.
- Substitute hazardous chemicals with less hazardous alternatives.
- Provide training on chemical handling and SDS information.
- Store chemicals properly and use appropriate PPE (e.g., gloves, eye protection).
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Minor | Medium |
6\. Slips, trips, and falls due to spills, clutter, or uneven surfaces
Potential Consequences: Bruises, sprains, fractures [2]
Affected Persons: Maintenance workers, visitors
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Likely | Moderate | Medium |
Control Measures
- Ensure proper lighting in work areas.
- Keep walkways clear of obstructions.
- Use slip-resistant footwear.
- Provide training on slip, trip, and fall hazards.
- Implement a regular inspection and cleaning schedule.
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Minor | Low |
7\. Fire or explosion during hot work (e.g., welding, cutting)
Potential Consequences: Burns, explosions, property damage
Affected Persons: Maintenance workers, nearby personnel
Initial Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Possible | Major | High |
Control Measures
- Implement a permit-to-work system for hot work.
- Ensure fire extinguishers are readily available.
- Provide training on fire safety and hot work procedures.
- Clear flammable materials from the work area.
- Use fire-resistant barriers and PPE (e.g., welding helmets, gloves).
Residual Risk Assessment
| Likelihood | Severity | Risk Rating |
|---|---|---|
| Rare | Moderate | Low |
5\. General Control Measures
- Conduct regular safety meetings to discuss potential hazards and review safety procedures.
Schedule meetings weekly or before the start of each shift.
- Maintain a clean and organized work environment to prevent slips, trips, and falls.
Implement a daily housekeeping checklist.
- Ensure all equipment is regularly inspected and maintained according to manufacturer's recommendations.
Keep detailed maintenance logs and schedules.
6\. Emergency Preparedness
- Ensure readily available spill kits and appropriate PPE for chemical spills.
- Establish and communicate evacuation routes and assembly points in case of fire or explosion.
- Provide first aid training and readily accessible first aid kits for injuries.
7\. Training Requirements
- Personal Protective Equipment (PPE) Training: Training on the proper selection, use, maintenance, and storage of PPE.
- Ensure proper fit and compatibility of PPE.
- Regularly inspect PPE for damage.
- Replace worn or damaged PPE immediately.
- Hazardous Materials Handling Training: Training on the identification of hazardous materials, proper handling techniques, and emergency response procedures.
- Review Safety Data Sheets (SDS) for all chemicals.
- Use appropriate PPE when handling chemicals.
- Properly store and dispose of hazardous materials.
- Lockout/Tagout (LOTO) Training: Training on the procedures for safely isolating energy sources and preventing accidental start-up during maintenance activities.
- Identify all energy sources.
- Properly apply and remove LOTO devices.
- Verify isolation of energy sources.
8\. Monitoring and Review
Review Frequency: Annually, and after any incident or significant change in procedures
| Monitoring Type | Frequency | Responsible Party | Description |
|---|---|---|---|
| Regular Inspection | Weekly | Maintenance Supervisor | Regular inspections of tools and equipment to ensure they are in good working condition. |
| Incident Review | Monthly | Safety Officer | Review of incident reports and near-miss reports to identify trends and areas for improvement. |
| Direct Observation | Monthly | Maintenance Supervisor | Observation of maintenance tasks to ensure adherence to safety procedures. |
9\. Special Circumstances
- Adverse weather conditions (e.g., rain, snow, extreme temperatures) can increase the risk of slips, falls, and equipment malfunction.
- Night work reduces visibility and increases the risk of accidents.
- Lone work increases the time to get help in case of an emergency.
Approval and Sign-off
This risk assessment has been reviewed and approved by:
Assessor: _________________________ Date: __________
Manager/Supervisor: _________________________ Date: __________
Safety Representative: _________________________ Date: __________
This risk assessment must be reviewed annually, and after any incident or significant change in procedures or when significant changes occur.
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Sources used for this answer
[1] Hazard and Risk - Risk Assessment
Page 6
Open source documentSource excerpt
# How is a risk assessment done? (cont.) ## How are the hazards identified? (cont.) - Include people who work off-site either at home, on other job sites, drivers, teleworkers, with clients, etc. - Look at the way the work is organized or done (include the experience of people doing the work, systems being used, etc.). - Look at foreseeable unusual conditions (for example: possible impact on hazard control procedures that may be unavailable in an emergency situation, power outage, climate event, etc.). - Determine whether a product, machine or equipment can be intentionally or unintentionally changed (e.g., a safety guard that could be removed). - Review all of the phases of the process or lifecycle. - Examine risks to visitors or the public. - Consider the knowledge, experience, training, and education of the individuals performing the work. - Consider the groups of people that may have a different level of risk such as young or inexperienced workers, persons with disabilities, or new or expectant mothers. It may help to create a chart or table such as the following: Table 1: Hazards, risks, and controls Job: Delivery Driver Task: Delivering Products to customers <table><tr><th>Hazards</th><th>Potential Outcomes</th><th>Risk</th><th>Priority</th><th>Hazard Controls</th></tr><tr><td>Working alone</td><td>May not be able to call for help if needed</td><td></td><td></td><td></td></tr><tr><td>Manually lifting and carrying boxes</td><td>Musculoskeletal injuries (e.g., back or shoulder injury) due to manual material handling</td><td></td><td></td><td></td></tr><tr><td>Working long hours</td><td>Fatigue, stress, short rest time between shifts, motor vehicle collision.</td><td></td><td></td><td></td></tr><tr><td>Driving in congested traffic</td><td>Motor vehicle collision, stress</td><td></td><td></td><td></td></tr></table> Please see further below for guidance on determining the risk and priority of each hazard, including the risk matrices in Table 2 and Ta…
[2] Hazard and Risk - Hazard Identification
Page 4
Open source documentSource excerpt
# Hazard and Risk - Hazard Identification (cont.) ## What types of hazards are there? (cont.) - Biological - bacteria, viruses, fungi, insects, plants, and animals. - Chemical - depends on the physical, chemical, and toxic properties of the product - Ergonomic - repetitive movements, improper setup of workstations, etc. - Physical - radiation, magnetic fields, temperature extremes, pressure extremes (high pressure or vacuum), noise, vibration, etc. - Psychosocial - stress, violence, harassment, etc. - Safety. - slipping or tripping hazards, inappropriate machine guarding, equipment malfunctions or breakdowns. ## How do I know what is a hazard? Another way to look at health and safety in your workplace is to ask yourself the following questions. These are examples only. You may find other items or situations that can be a hazard. List any item that should be examined. During the risk assessment process, the level of harm will be assessed. What materials or situations do I come into contact with? Possibilities could include: - Electricity. - Chemicals (liquids, gases, solids, mists, vapours, etc.). - Temperature extremes of heat or cold (such as working outdoors, bakeries, foundries, or meat processing). - lonizing and non-ionizing radiation (such as x-rays, ultraviolet (sun) rays). - Asphyxiants (oxygen deficiency) - Working on or near water or ice-covered water. What materials or equipment could I be struck by? - Moving objects (such as forklifts, overhead cranes, vehicles). - Flying objects (such as sparks or shards from grinding). - Falling material (such as tools and equipment from above). What objects or equipment could strike or hit my body, or that part of my body might be caught in, on, or between? - Stationary or moving objects. - Protruding objects. - Sharp or jagged edges. Hazard and Risk - Hazard Identification CCOHS
[3] Hazard and Risk - Risk Assessment
Page 11
Open source documentSource excerpt
# How is a risk assessment done? (cont.) ## Semi-quantitative Methods (cont.) <table><tr><th></th><th>Negligible Severity (1)</th><th>Minor Severity (2)</th><th>Moderate Severity (3)</th><th>Major Severity (4)</th><th>Catastrophic Severity (5)</th></tr><tr><td>Rare Probability (1)</td><td>Low (1)</td><td>Low (2)</td><td>Low (3)</td><td>Moderate (4)</td><td>Moderate (5)</td></tr><tr><td>Unlikely Probability (2)</td><td>Low (2)</td><td>Moderate (4)</td><td>Moderate (6)</td><td>High (8)</td><td>High (10)</td></tr><tr><td>Possible Probability (3)</td><td>Low (3)</td><td>Moderate (6)</td><td>High (9)</td><td>High (12)</td><td>Extreme (15)</td></tr><tr><td>Likely Probability (4)</td><td>Moderate (4)</td><td>High (8)</td><td>High (12)</td><td>Extreme (16)</td><td>Extreme (20)</td></tr><tr><td>Almost Certain Probability (5)</td><td>Moderate (5)</td><td>High (10)</td><td>Extreme (15)</td><td>Extreme (20)</td><td>Extreme (25)</td></tr></table> When using this method, it is important to clearly define the parameters for assigning scores for severity and probability, so all team members understand the scoring criteria. Using Table 3, a hazard assigned as having an unlikely probability of occurring (probability score of 2) and minor severity (severity score of 2) is a moderate riskwith a risk rating score of 4. Remember! Risk = probability X severity. The qualitative and semi-quantitative risk matrices above are just a couple of examples. These matrices can be customized to further refine risk by considering more detailed criteria for probability and severity. Quantitative methods are also sometimes used, which calculate risk based on data collected over a period of time or multiple situations. Examples include failure mode and effects analysis (FMEA) and decision tree analysis (these methods are not covered in this fact sheet). ## Field-level Risk Assessment A field-level risk assessment (FLRA) is another method that is commonly used in industries and wor…
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