General safety term · Glossary
Industrial Hygiene
The science and practice of protecting worker health by anticipating, recognizing, evaluating, controlling, and confirming protection from workplace hazards (the ARECC framework). Industrial hygienists (IHs/CIHs) assess exposures to chemical, physical, biological, and ergonomic stressors — running air sampling, comparing results to limits like PELs and TLVs, and recommending controls.
Also known as: IH, occupational hygiene
On this page
Industrial Hygiene at a glance
- Follows the ARECC framework: Anticipate, Recognize, Evaluate, Control, Confirm.
- Addresses chemical, physical (noise, heat), biological, and ergonomic stressors.
- The “Evaluate” step is exposure assessment — air sampling compared to PELs/TLVs.
- A Certified Industrial Hygienist (CIH) is the credentialed specialist.
In plain English
The health-science side of workplace safety: the people (industrial hygienists) who figure out what invisible hazards workers breathe or absorb — dust, fumes, noise, chemicals — measure how much, and design the controls to keep exposure safe.
What the source says, in summary
Industrial hygiene is the art and science dedicated to the anticipation, recognition, evaluation, control, and confirmation of protection from those environmental stressors in, or arising from, the workplace that may result in injury, illness, impairment, or affect the well-being of workers.
In context
An industrial-hygiene, exposure-control, or program-management concept that applies across OSHA standards and workplaces.
Example
On a demolition job, an industrial hygienist anticipates silica and lead, recognizes the dusty tasks, evaluates exposures with personal air sampling against the silica PEL of 50 µg/m³, controls them with water and ventilation, and confirms the controls work by re-sampling — the full ARECC cycle.
Why it matters
Industrial hygiene is how the invisible, long-latency hazards — the ones that cause silicosis, hearing loss, and occupational cancer — actually get measured and controlled. OSHA's health standards effectively require IH practice (exposure assessment, monitoring), so weak IH is behind many overexposure citations.
Industrial hygiene vs. safety
Safety typically focuses on preventing acute injuries (falls, struck-by, caught-in). Industrial hygiene focuses on health hazards from exposure (chemicals, noise, dust) that cause illness over time. They overlap and often share a department, but IH is the health-and-exposure discipline.
The ARECC framework of industrial hygiene
| Step | What the industrial hygienist does |
|---|---|
| Anticipate | Identify hazards before the work begins |
| Recognize | Confirm which stressors are actually present |
| Evaluate | Measure exposures (air sampling) vs. PELs/TLVs |
| Control | Apply the hierarchy of controls |
| Confirm | Re-sample to verify exposures are reduced |
Industrial Hygiene: frequently asked questions
- What is industrial hygiene?
- The science of protecting worker health by anticipating, recognizing, evaluating, controlling, and confirming protection from workplace stressors — chemical, physical, biological, and ergonomic. It's the exposure-and-health discipline behind air monitoring and exposure limits.
- What does an industrial hygienist do?
- Assesses worker exposures (air and sometimes biological sampling), compares results to limits like PELs and TLVs, and recommends controls. A Certified Industrial Hygienist (CIH) is the credentialed specialist.
- How is industrial hygiene different from safety?
- Safety generally addresses acute injury hazards; industrial hygiene addresses health hazards from exposure that cause illness over time. Both are essential and frequently managed together.
Related terms
Free tools for this
Governing OSHA standards
More General Safety terms
An arc flash is the sudden release of thermal energy from an electrical arc fault — a short circuit that jumps through the air between energized parts. The arc can reach temperatures over 35,000°F (nearly four times the surface of the sun), causing severe burns, igniting clothing, and driving an explosive pressure wave known as the arc blast. OSHA sets no single “arc-flash standard”: the analysis method — the arc-flash boundary, incident energy, and arc-rated PPE — comes from the NFPA 70E consensus standard, which OSHA enforces through its electrical-PPE rules (29 CFR 1910.335, 1910.269) and the General Duty Clause.
Action LevelAn airborne concentration of a substance — typically half the PEL — at which certain provisions of an OSHA standard kick in (such as exposure monitoring, training, and medical surveillance), even though it is below the legal exposure limit. For respirable crystalline silica the action level is 25 µg/m³ as an 8-hour TWA, half the 50 µg/m³ PEL.
Administrative ControlsChanges to how and when work is done — job rotation, scheduling, safe work practices, housekeeping, training, and signage — that reduce a worker's exposure without altering the hazard itself. They are the fourth tier of the hierarchy of controls, below engineering controls and above PPE.
Biological Exposure Index (BEI)An ACGIH guidance value for interpreting biological monitoring results — the concentration of a chemical (or its metabolite) measured in a worker's blood, urine, or exhaled breath. A BEI represents the level most likely found in a healthy worker whose inhalation exposure was at the TLV, so it measures the dose the body actually absorbed, not just what's in the air.
California Proposition 65California's Safe Drinking Water and Toxic Enforcement Act of 1986. It requires businesses to warn Californians before exposing them to any of the ~900+ listed chemicals known to the state to cause cancer, birth defects, or other reproductive harm, and prohibits discharging those chemicals into drinking-water sources. It's a California law, but it reaches nearly any product sold there.
CAS NumberA unique numerical identifier assigned by the Chemical Abstracts Service (a division of the American Chemical Society) to every distinct chemical substance. It has the format of up to seven digits, a dash, two digits, a dash, and a final check digit (e.g., 67-64-1 for acetone). Because chemical names vary, the CAS number is the unambiguous global key used on SDSs, inventories, and regulations.
Ceiling LimitAn exposure limit that must not be exceeded at any instant during the workday — the strictest type of OSHA exposure limit. In OSHA's Z-tables it is marked with a “C” before the value. Unlike an 8-hour TWA (an average) or a 15-minute STEL, a ceiling applies to a single moment.
Chemical CompatibilityWhether two or more chemicals can be safely stored or used near each other without reacting dangerously — releasing heat, toxic gas, or fire. Incompatible chemicals must be physically separated (segregated) in storage. Each chemical's incompatibilities are listed in Section 10 of its SDS, and compatibility drives storage layout and spill response.
Sources & verification
Reviewed by HazComFast against eCFR, OSHA.gov, NIOSH, and the Federal Register. Last reviewed 2026-10-05. This glossary is general information, not legal advice; OSHA State-Plan states (e.g. California, Michigan) may adopt stricter requirements.
Put Industrial Hygiene into practice
Don't just read the definition — apply it. Use the free Silica Exposure Calculator to put real numbers behind Industrial Hygiene for your jobsite.
Get the Binder in Order Before the Inspector Arrives. Are You Ready?
OSHA does not give advance notice of inspections (29 CFR 1903.6). Get the binder in order before the opening conference, not during it.
Serious Violation
$16,550
per violation (max)
HazComFast Pro
$199/mo
10 jobsites, unlimited chemicals, unlimited workers
New sign-ups are paused. The free tools below need no account, and customers can log in as usual.
Your account keeps working as usual. Cancel anytime.