Forensic Chemistry · GIS Crime Analysis · Evidence Protocol
Fig 1 — Evidence examination at a crime scene. Photo by Pexels.
Three decades in forensic chemistry and GIS-driven crime analysis. Formerly with county lab operations, now independent — consulting on evidence handling protocols, training new officers in chain-of-custody discipline, and running a small garden that keeps me grounded when the caseload gets heavy.
My work lives at the intersection of procedure and public trust. Every protocol I've helped write exists to ensure one thing: when evidence moves from scene to lab to courtroom, nothing is lost along the way.
When evidence arrives at the lab, it enters a phase I call the thermal handshake — the period during which the sample's environment equalizes with the evidence room. This is the most critical window in chain-of-custody. A sample arriving from a 95°F scene into a 65°F lab will begin condensing within ninety minutes if not acclimated properly. Those micro-droplets can dissolve trace powders, alter pH readings, and compromise fiber samples.
| Evidence Type | Storage Temp (°F) | RH (%) | Acclimation Window |
|---|---|---|---|
| Biological (blood, tissue) | 36–40 | ≤35 | 4 hours, staged |
| Trace (fibers, hairs, dust) | 65–72 | 30–45 | 2 hours, sealed |
| Chemical (liquids, powders) | 60–70 | ≤30 | 90 min, inert atmosphere |
| Digital (drives, phones) | 65–72 | ≤35 | Immediate Faraday enclosure |
| Documentary | 65–72 | 30–40 | 2 hours, no light exposure |
Table 1 — Standard environmental thresholds derived from ASTM E1633 and SWGATLE guidelines. Chain of custody definition (Wikidata)
Every sample leaving the scene must pass through this checklist. I've carried this list in my pocket since 1994. It has never failed.
The work of evidence handling doesn't exist in isolation. It connects to broader questions of justice, infrastructure, and community trust. Two neighbors whose work resonates with mine: