reactive-hazards-analyzer
Reactive chemical hazards analysis skill for thermal stability, incompatibility, and runaway reaction assessment
Best use case
reactive-hazards-analyzer is best used when you need a repeatable AI agent workflow instead of a one-off prompt.
Reactive chemical hazards analysis skill for thermal stability, incompatibility, and runaway reaction assessment
Teams using reactive-hazards-analyzer should expect a more consistent output, faster repeated execution, less prompt rewriting.
When to use this skill
- You want a reusable workflow that can be run more than once with consistent structure.
When not to use this skill
- You only need a quick one-off answer and do not need a reusable workflow.
- You cannot install or maintain the underlying files, dependencies, or repository context.
Installation
Claude Code / Cursor / Codex
Manual Installation
- Download SKILL.md from GitHub
- Place it in
.claude/skills/reactive-hazards-analyzer/SKILL.mdinside your project - Restart your AI agent — it will auto-discover the skill
How reactive-hazards-analyzer Compares
| Feature / Agent | reactive-hazards-analyzer | Standard Approach |
|---|---|---|
| Platform Support | Not specified | Limited / Varies |
| Context Awareness | High | Baseline |
| Installation Complexity | Unknown | N/A |
Frequently Asked Questions
What does this skill do?
Reactive chemical hazards analysis skill for thermal stability, incompatibility, and runaway reaction assessment
Where can I find the source code?
You can find the source code on GitHub using the link provided at the top of the page.
SKILL.md Source
# Reactive Hazards Analyzer Skill
## Purpose
The Reactive Hazards Analyzer Skill evaluates reactive chemical hazards including thermal stability, chemical incompatibilities, and runaway reaction potential using calorimetric data analysis.
## Capabilities
- Thermal stability assessment
- Chemical compatibility screening
- DSC/ARC data interpretation
- Adiabatic runaway analysis
- TMRad calculations
- Criticality assessment
- SADT determination
- Relief sizing for reactive systems
## Usage Guidelines
### When to Use
- Assessing reactive hazards
- Interpreting calorimetric data
- Designing reactive system safeguards
- Screening chemical incompatibilities
### Prerequisites
- Material safety data available
- Calorimetric test data (if available)
- Process conditions defined
- Reaction stoichiometry known
### Best Practices
- Screen all chemical combinations
- Use appropriate test methods
- Consider worst-case scenarios
- Involve subject matter experts
## Process Integration
This skill integrates with:
- HAZOP Study Facilitation
- Pressure Relief System Design
- Reactor Design and Selection
## Configuration
```yaml
reactive-hazards-analyzer:
test-methods:
- DSC
- ARC
- RC1
- VSP2
hazard-types:
- thermal-decomposition
- polymerization
- incompatibility
- oxidation
```
## Output Artifacts
- Hazard assessments
- Compatibility matrices
- Calorimetric data analysis
- Relief sizing for reactive
- Safety recommendationsRelated Skills
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