Episode 169: Uncovering THC Potency Variability with Cannabis ChemLab episode artwork

EPISODE · Jul 29, 2026 · 59 MIN

Episode 169: Uncovering THC Potency Variability with Cannabis ChemLab

from Cannabis Cultivation and Science Podcast · host Tad Hussey, KiS Organics, Jared Nieuwenhuis, Cannabis ChemLab

This episode covers the key scientific drivers behind lab result variability, from instrument calibration down to field sampling practices. Understanding Reference Standards: How analytical instruments use commercially available reference standards to construct calibration curves for testing unknown samples. The Potency Variability Study: Insights from Cannabis ChemLab’s study overlaying 35 different THCA standards, demonstrating how variance between standard manufacturers and product lots leads to drastic differences in reported THC percentages. The Mechanism of Potency Inflation: How calibration curves at the high end of concentration explain "impossible" lab results exceeding 100% cannabinoids in concentrates and diamonds. Neutral vs. Acidic Cannabinoids: Why acidic forms like THCA and CBDA present significantly more analytical variability in the lab compared to decarboxylated neutral forms found in edibles. Heavy Metals and Fertilizer Inputs: An in-depth discussion on ICP-MS heavy metal testing, identifying soil amendments like fishbone meal as a primary source of arsenic accumulation in living soil. Dispelling Marketing Claims: Why ocean-based inputs are not inherently cleaner than other fertilizers, and why growers must screen raw materials rather than relying on marketing claims. Agronomic Mitigation Strategies: How plant biology and strategic tissue management, such as utilizing older lower leaves as heavy metal sinks, can help keep heavy metals out of the final flower. Navigating Unexpected Results: Practical steps for cultivators when faced with surprising lab data, including when a flower batch warrants resampling versus when a process error has occurred. Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Episode metadata supplied by the publisher feed · Published Jul 29, 2026

Embed this episode

In this episode, I sit down with Jared Nieuwenhuis, Founder and CEO of Cannabis ChemLab, an ISO/IEC 17025-accredited laboratory serving medical cannabis programs and national USDA hemp growers. Drawing on over 11 years of experience in laboratory development, environmental testing, and commercial farming, Jared brings an authoritative, science-first perspective to the complex world of analytical testing. Jared pulls back the curtain on why cannabis potency test results fluctuate so wildly across the industry. He breaks down groundbreaking internal research from Cannabis ChemLab that tested over 30 different accredited reference standards, demonstrating how slight variations in calibration curves can cause the exact same flower sample to test anywhere from 14% to 25% THC. In addition to potency variability, the conversation tackles heavy metal contamination, exposing why popular ocean-based soil amendments like fishbone meal frequently cause high arsenic fails, how cannabis hyperaccumulates toxins, and how growers can use plant biology to mitigate heavy metal risks in living soil systems.

Distinct summary based on available episode metadata or transcript content.

NOW PLAYING

Episode 169: Uncovering THC Potency Variability with Cannabis ChemLab

0:00 59:09

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Cannabis Cultivation and Science Podcast?

This episode is 59 minutes long.

When was this Cannabis Cultivation and Science Podcast episode published?

This episode was published on July 29, 2026.

Can I download this Cannabis Cultivation and Science Podcast episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!