4/30/24 Attached is the updated 2024 Lab report from H2 Analytics Laboratory Report for the Echo Go
H2 Analytics
2505 Anthem Village Dr Ste E385
Henderson, NV 89052
Dear Randy Sharpe:
SGS Silver State Analytical Laboratories received 1 sample(s) on 3/22/2024 for the analyses
presented in the following report.
There were no problems with the analytical events associated with this report unless noted
below. Analytical results reported as non-detect (ND) in the result field are below the Practical
Quantification Limit (PQL). Analytical results above the PQL are reported as the measured
value in the results field.
Quality control data is within laboratory defined or method specified acceptance limits except if
noted.
Laboratory Director
3626 E. Sunset Road, Suite 100
Las Vegas, NV 89120
H2 Analytics Laboratory Report - Echo Go
H2 Analytics
2505 Anthem Village Dr Suite E385
Henderson, NV 89052
support@h2-analytics.com
Laboratory Report
Introduction
This report summarizes the analysis of the Echo GoTM hydrogen water bottle manufactured by Echo Technologies, LLC, Pleasant Grove, UT, USA. The product was tested for dissolved hydrogen concentration on both the short (3 min) & long (10 min) cycles.
Product Description
Echo GoTM Portable Hydrogen Water Bottle, Model # - Echo GoTM
Product was received for testing 4/28/2021
Methods
Dissolved hydrogen concentration (H2)
Test water: ASTM Type I ultrapure ChemWorld, Salt Lake City, UT, USA; temperature: 25⁰C ± 1.5⁰ ; ec: 0 us/cm; pH: 6.4
Laboratory elevation: 864 meters (0.91 atm); all measurements adjusted to SATP
Test Equipment: SRI 8610C gas chromatograph, Torrance, CA USA
Column: Hayesep-D 6M packed column temp: 80°C
Detector: Tungsten-Rhenium TCD (5000 mvsec max)
Carrier gas: Nitrogen (99.999%) @20 PSI, 20 mL/min
Calibration: Performed on day of testing using third-party calibration gas
Test Method: Static headspace analysis
Prior to testing, the unit’s internal battery was charged overnight using the supplied wall charger. On the day of testing, the GC was permitted to warm up for two hours and then calibrated. For each test, the Echo GoTM bottle was filled with 250 mL of water and the cap was securely tightened. After completion of the desired cycle time (3 min or 10 min), the cap was removed and a 1000 uL sample was
immediately taken from a depth of 20 mm using a gas-tight syringe. The sample was immediately injected into the headspace vial and agitated on an equilibrator device for five minutes to permit the dissolved H2 to equilibrate with the headspace. After equilibration, a 1000 uL sample of the headspace was taken using a gas-tight syringe and injected into the gas chromatograph for analysis. Three tests
were conducted for each cycle time, the results recorded, and the mean and standard deviations calculated.
Results
Short cycle (3 min): Dissolved H2: Mean - 1.23 mg/L (ppm) SD - 0.17
Long cycle (10 min): Dissolved H2: Mean - 1.88 mg/L (ppm) SD - 0.06
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