Published August 2, 2026 | Version v1
Dataset

Flow Battery Reproducibility Study – Participant 32 (Phase 2b)

  • 1. STFC

Description

Submission from participant 32 as part of the Flow Battery Reproducibility Study, Phase 2b. Job role: Postgrad/PhD student. Experience: 6–12 months.

Additional details

Domain Specific Metadata

 
Property Value
Fb Data Collection Phase Phase 2b
Fb Job Role Postgrad/PhD student
Fb Experience Flow Batteries 6–12 months
Fb Participant Identifier 32
Fb Number Of Repeats 3
Fb Electrode Pretreatment Type Heat-treated
Fb Heat Treatment Furnace Type Tube
Fb Heat Treatment Atmosphere Air
Fb Heat Treatment Ramp Rate 1.0
Fb Heat Treatment Dwell Temperature 400.0
Fb Heat Treatment Dwell Time 24.0
Fb Heat Treatment Cooling Method Passive
Fb Heat Treatment Batching They were heat-treated in a single batch with a frame with 3 levels that can fit 9 electrodes.
Fb Time Between Heat Treatment And Use 48.0
Fb Electrode Storage After Heat Treatment Enclosed (non-inert)
Fb Electrode Storage After Receipt Enclosed (non-inert)
Fb Membrane Storage Type Wet
Fb Membrane Storage Liquid deionised H2O
Fb Membrane Storage Details Stored in container included with test kit for an hour (during assembly of the second / third repeat)
Fb Membrane Pretreatment No (used as received)
Fb Ferrocyanide Chemical Details Potassium hexacyanoferrate(II) trihydrate, K4Fe(CN)6 · 3H2O
Fb Ferrocyanide Purity 99.1
Fb Ferrocyanide Supplier AmBeed
Fb Ferricyanide Chemical Identity Potassium ferricyanide(III), K3Fe(CN)6
Fb Ferricyanide Purity 100.0
Fb Ferricyanide Supplier Ward's Science
Fb Supporting Electrolyte Identity Potassium chloride, KCl
Fb Potassium Chloride Purity 99.0
Fb Potassium Chloride Supplier Sigma Aldrich
Fb Water Type Deionised
Fb Water Purification System Central DI plant
Fb Water Purification Details Unknown
Fb Electrolyte Preparation Strategy Freshly prepared for each experiment except the KCL
Fb Electrolyte Batch Size 400.0
Fb Electrolyte Storage Environment Dark (cupboard/covered)
Fb Electrolyte Storage Duration 24.0
Fb Electrolyte Volume Measurement Method Volumetric
Fb Reagent Purity Used No
Fb Water Ph Measured No
Fb Electrolyte Ph Measured No
Fb Electrode Cutting Method Freehand manual cutting (approximate fit), razor/scalpel
Fb Potentiostat Usage Single instrument for all tests
Fb Potentiostat Manufacturer Cycling Biologic
Fb Potentiostat Model Cycling SP200
Fb Potentiostat Manufacturer Polarisation Biologic
Fb Potentiostat Model Polarisation SP200
Fb Potentiostat Manufacturer Impedance Biologic
Fb Potentiostat Model Impedance SP200
Fb Potentiostat Calibration Frequency Unknown
Fb Connection Method Crocodile/alligator clips
Fb Electrical Connection Scheme 2-point (2-wire)
Fb Potentiostat Cable Length <1 m
Fb Potentiostat Cable Type Manufacturer cable – standard length
Fb Potentiostat Cable Shielding Shielded
Fb Number Of Pumps Single (including dual head)
Fb Pump Type Peristaltic
Fb Pump Manufacturer LongerPump
Fb Pump Model YZ1515x
Fb Reservoir Material Glass (borosilicate)
Fb Reservoir Type Duran/Schott bottle (GL bottle)
Fb Reservoir Volume 250.0
Fb Electrolyte Volume Used 100
Fb Impedance Reservoir Config Single reservoir
Fb Polarisation Reservoir Config Single reservoir
Fb Temperature Control Ambient (not controlled)
Fb Laboratory Temperature 22–24 °C
Fb Pump Flow Rate Calibrated Yes
Fb Calibration With Cell No
Fb Calibration Fluid Water
Fb Pump Recalibrated No
Fb Pump Calibration Method Manual volumetric
Fb Leak Test Performed No
Fb Break In Performed No
Fb Cell Assembly Issues No
Fb Additional Experiments Yes
Fb Repeat Method Full cell disassembly and rebuild, same electrolyte
Fb Electrolyte Leakage Reported No
Fb Typical Group Practice Leaks Tolerate minor leaks but document/report
Fb Electrolyte Stirring No
Fb Electrolyte Sparging Yes
Fb Sparging Gas Nitrogen
Fb Gas Humidification Humidified
Fb Sparging Application Continuous sparging
Fb Sparging Gas Flow Rate Not recorded
Fb Polarisation Beyond Limits No
Fb Impedance Control Mode Potentiostatic (PEIS)
Fb Consent Public Display Yes