Linked from
The 40 pages that link to Occupational exposure, each with the reason it gives.
Corrosive substanceRelated: Workers who handle corrosives face risks from splashes, leaks, and contaminated surfaces.
Organophosphate poisoningRelated: Mixing, applying, or manufacturing organophosphate products can create workplace exposure.
Hydrogen fluorideRelated: HF is a major workplace hazard in facilities that manufacture or use it.
AnilineRelated: Workers handling aniline may absorb it through the skin or inhale its vapors.
AsbestosRelated: Mining, manufacturing, construction, and shipyard jobs produced many intense asbestos exposures.
NanotechnologyRelated: Workers may encounter airborne nanomaterials during production, handling, or cleanup.
DecontaminationRelated: Decontamination procedures reduce exposure among responders and cleanup workers.
AcetaldehydeRelated: Manufacturing and handling acetaldehyde can create workplace inhalation and contact hazards.
OtotoxicityRelated: Industrial chemicals and workplace noise can combine with ototoxic medications to increase risk.
BariumRelated: Workers handling barium compounds may inhale dust or encounter soluble salts.
AcrylamideRelated: Workers handling acrylamide or its solutions may face exposures unlike typical dietary intake.
Chemical wasteRelated: Workers handling waste may be exposed through inhalation, skin contact, or ingestion.
Source controlRelated: Reducing releases at work can lower the amount workers encounter.
TolueneRelated: Workers using toluene-containing solvents may inhale vapor or absorb it through skin.
FuranRelated: Furan’s volatility makes inhalation controls relevant where it is manufactured or handled.
Occupational diseasesRelated: Exposure dose and duration help determine whether workplace contact causes disease.
AcroleinRelated: Industrial handling can expose workers to acrolein through inhalation or skin contact.
Tear gasRelated: Police, medical personnel, journalists, and bystanders can face repeated or intense exposure.
Vinyl acetateRelated: Workers may inhale vinyl acetate vapor during its manufacture or handling.
Alice HamiltonRelated: Identifying how workers encountered a substance was central to tracing industrial disease.
DichloromethaneRelated: Its rapid evaporation can create substantial workplace inhalation exposure.
ChlorobenzeneRelated: Workers handling chlorobenzene may inhale its vapor or contact the liquid.
Sodium bisulfiteRelated: Dust and sulfur dioxide released from bisulfite solutions can irritate exposed tissues.
Glass woolRelated: Manufacturing and installing glass wool can expose workers to airborne fibers and dust.
GlyoxalRelated: Handling glyoxal solutions can expose workers through skin contact or inhalation, making controls relevant.
1,2-DichloroethaneRelated: Production and handling can expose workers through inhalation or skin contact.
ButanoneRelated: Workers may inhale butanone vapor or absorb it during handling.
TetrachloroethyleneRelated: Dry-cleaning and degreasing workers can inhale vapor or contact liquid tetrachloroethylene.
Bernardino RamazziniRelated: He traced illnesses to substances and conditions workers encountered on the job.
ChloropreneRelated: Workers may encounter chloroprene during its manufacture or processing.
Herpetic whitlowRelated: Healthcare workers can acquire whitlow after unprotected contact with HSV-containing secretions.
Lead(II) chromateRelated: Manufacture, sanding, or removal of pigment-bearing materials can expose workers to toxic dust.
Sodium sulfideRelated: Workers can be exposed through caustic solutions, dust, or hydrogen sulfide released during use.
Amyl acetateRelated: Workers handling amyl acetate may inhale vapor or experience skin and eye contact.
Chromate and dichromateRelated: Industrial use of chromium(VI) compounds creates exposure risks that require control.
HMXRelated: Workers handling HMX may require exposure controls and health monitoring.
Propylene carbonateRelated: Manufacture and industrial use can expose workers through spills, aerosols, or direct contact.