GMO – Persy Rosin Pod – 0.5G
The GMO – Persy Rosin Pod – 0.5G represents a premium solventless hemp extract engineered for laboratory-grade research and instrumental validation studies.
Derived from the GMO (Garlic, Mushroom, Onion) hybrid cultivar, this formulation highlights the complex terpene and cannabinoid architecture that defines this strain’s analytical signature.
Through low-temperature mechanical rosin pressing, GMO Persy Rosin maintains native terpene retention (>90%) and cannabinoid integrity, making it ideal for GC-MS, HPLC, and thermal volatilization experiments.
All products are federally compliant (<0.3% Δ9-THC) and traceable via ISO/IEC 17025-accredited analytical documentation.
Botanical & Extraction Characteristics
| Parameter | Specification |
|---|---|
| Cultivar Source | GMO (Hybrid) |
| Extraction Type | Solventless mechanical rosin press |
| Pod Capacity | 0.5 g |
| Batch ID | GMO-PRP-2025B |
| Processing Temperature | 85–90 °C |
| Extract Type | Full-spectrum rosin |
| Classification | Industrial hemp extract (<0.3% Δ9-THC) |
| Intended Use | Analytical vapor research, terpene profiling, R&D calibration |
| Compliance Standards | ISO/IEC 17025 • GMP • ASTM D445 • CFR §172 Non-hazardous |
The GMO cultivar provides a robust hydrocarbon-rich terpene structure with notable caryophyllene, limonene, and humulene concentrations — traits valued in volatility and thermal breakdown research.
Chemical Properties Table
| Property | Measured Specification | Methodology | Remarks |
|---|---|---|---|
| Appearance | Amber-gold rosin | Visual | Clear, uniform texture |
| Density (25 °C) | 0.91 g/mL | Gravimetric | Within ±0.02 variance |
| Viscosity | 640 cP | ASTM D445 | Stable for vaporization studies |
| Boiling Range | 155–220 °C | GC-MS | Consistent terpene vapor curve |
| Flash Point | 59 °C | ASTM D93 | Non-hazardous handling |
| Odor Profile | Earthy, herbal, spicy | GC-MS verified | Caryophyllene-dominant |
| Solubility | Soluble in ethanol, hexane | Observation | Insoluble in water |
| Storage Stability | 6–9 months | Controlled study | ≥ 92% terpene retention |
These results confirm a thermally consistent rosin matrix, ideal for vapor chemistry calibration and stability testing.
Ingredients & Lab Results (COA Summary)
Sample Identification:
- Product: GMO – Persy Rosin Pod – 0.5 G
- Batch ID: GMO-PRP-2025B
- Date of Analysis: October 2025
- Laboratory: Analytical Botanics Research Division
- Classification: Industrial hemp extract (< 0.3% Δ9-THC)
- Analytical Methods: HPLC-UV, GC-MS, ICP-MS
Cannabinoid Profile (HPLC Analysis)
| Analyte | Concentration (% w/w) | Method |
|---|---|---|
| CBD (Cannabidiol) | 42.65 | HPLC-UV |
| CBG (Cannabigerol) | 2.10 | HPLC-UV |
| Δ9-THC | 0.27 | HPLC-UV |
| THCA | 0.04 | HPLC-UV |
| CBC (Cannabichromene) | 1.12 | HPLC-UV |
| CBN (Cannabinol) | ND (< 0.01%) | HPLC-UV |
| Total Cannabinoids | 46.18 | — |
✅ Compliance Verified: Δ9-THC < 0.3% (per U.S. federal hemp guidelines).
Terpene Profile (GC-MS Analysis)
| Terpene | Concentration (mg/g) | Relative % | Descriptor |
|---|---|---|---|
| Caryophyllene | 3.4 | 27% | Spicy, earthy |
| Limonene | 2.8 | 22% | Citrus, bright |
| Humulene | 2.1 | 17% | Woody, herbal |
| Myrcene | 1.9 | 15% | Herbal base |
| Linalool | 1.3 | 10% | Floral sweetness |
| Ocimene | 1.1 | 9% | Sweet, tropical |
| Total Terpenes | 12.6 mg/g | 100% | — |
This caryophyllene–limonene–humulene dominant profile supports thermal consistency and vapor-phase reproducibility in analytical testing.
Contaminant & Purity Screening
| Analyte | Result | Regulatory Limit | Compliance |
|---|---|---|---|
| Residual Solvents | ND (< 0.001%) | < 0.005% | PASS |
| Heavy Metals (Pb, As, Cd, Hg) | ND | < 0.1 ppm | PASS |
| Pesticides | ND | ≤ Legal Limit | PASS |
| Microbial Load (TAMC) | < 100 CFU/g | < 10,000 CFU/g | PASS |
| Mycotoxins | ND | < 20 ppb | PASS |
All data confirm ISO/IEC 17025-level analytical purity and full industrial research compliance.
Navigational Section: Handling, Safety & Traceability
- Classification: Industrial hemp extract (< 0.3% Δ9-THC)
- Handling: Use in ventilated laboratory environments only.
- Storage Conditions: ≤ 25 °C, sealed, away from light.
- Documentation Supplied: COA • SDS • Batch Certificate.
- Transportation: Non-hazardous under 49 CFR § 172.
- Use Limitation: For research and analytical purposes only.
Each pod includes a QR-coded COA enabling full traceability from biomass to analytical packaging.
Commercial Section: Research & Industrial Applications
- GC-MS/LC-MS Calibration – Ideal for vapor and terpene compound profiling.
- Thermal Degradation Studies – Observe structural stability of rosin compounds.
- Extraction Efficiency Benchmarks – Compare solventless yields to hydrocarbon methods.
- VOC and Emission Mapping – Quantify aromatic compound release during vaporization.
- Device Testing – Evaluate consistency and vapor output for precision hardware systems.
Due to its stability and balanced terpene matrix, GMO – Persy Rosin Pod is valued as a reference standard for vapor and chemical research projects.
Transactional Section: Procurement & Quality Assurance
Approved Institutional Buyers:
- ISO/IEC 17025-certified laboratories
- GMP-compliant hemp R&D facilities
- Accredited academic research departments
- Certified analytical supply distributors
- Industrial chemical testing organizations
Available Units:
- 0.5 g Persy Rosin Pod (standard)
- Multi-pack (5- or 10-pack) for lab calibration programs
- Custom batch formulations available upon institutional request
Procurement Protocol:
- Submit institutional credentials for verification.
- Review and approve COA + SDS documentation.
- Confirm batch and lot traceability identifiers.
- Shipment via a compliant research logistics carrier.
- Batch authentication through COA QR verification.
All production and QA processes follow GMP and ISO 9001:2015 standards to ensure traceable, reproducible, and contamination-free material.
GMO Persy Rosin Pod online Conclusion
The GMO – Persy Rosin Pod – 0.5 G unites solventless extraction precision, verified purity, and industrial reliability.
Its caryophyllene-dominant terpene composition makes it a valuable asset for chemical stability, vapor analysis, and instrumental calibration in regulated laboratory environments.
Every batch is traceable, federally compliant, and tested under ISO/IEC 17025 conditions, ensuring reproducibility across industrial and research applications.
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