Products Battery Testing & Electrochemical Equipment In-situ Raman Test Cell Rechargeable Zinc Air Electrolytic Cell Zinc Air Cycling Test Device Metal Fuel Cell Reactor
Rechargeable Zinc Air Electrolytic Cell Zinc Air Cycling Test Device Metal Fuel Cell Reactor

In-situ Raman Test Cell

Rechargeable Zinc Air Electrolytic Cell Zinc Air Cycling Test Device Metal Fuel Cell Reactor

Item Number : BE03

Price varies based on specs and customizations


Available Reaction Areas
1 cm², 2 cm², 3 cm², 4 cm², and 4.5 cm²
Electrolyte Reservoir Capacity
500 ml
Positive and Negative Electrode Distance
1.4 cm
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Product Overview

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This rechargeable zinc air electrolytic cell cycling test device is a compact laboratory reactor for evaluating zinc air electrochemical systems and other metal fuel cell configurations. Its polypropylene construction combines alkaline resistance, high mechanical strength, and a low tendency to retain oil or surface contamination. The modular design supports controlled reaction-area selection while keeping assembly, cleaning, and configuration changes straightforward.

The equipment is intended for rechargeable zinc air cell research, zinc electrode evaluation, alkaline electrolyte studies, and metal fuel cell development. It is suitable for battery R&D, electrochemical laboratories, advanced materials research, academic testing, and related investigations in which repeatable electrode exposure and electrolyte management are important.

A circulating electrolyte path can help reduce negative-electrode passivation, while forced oxygen delivery can improve reaction efficiency. Detachable gas and water-tube connections also allow users to compare circulating-electrolyte operation with non-circulating or natural-state conditions. Leak-resistant sealing and a 500 ml reservoir support extended laboratory testing with practical handling and maintenance.

Key Features

  • Alkaline-Resistant Polypropylene Construction: The white polypropylene plate structure is designed for alkaline electrolyte environments, with high strength and resistance to oil adhesion and ordinary wear. The opaque material also limits visual exposure of the internal reaction area, supporting a protected laboratory setup.

  • Selectable Reaction Areas: The modular configuration provides reaction areas of 1, 2, 3, 4, and 4.5 cm². This enables researchers to match the test configuration to electrode size, current-density targets, and comparative experimental plans.

  • Circulating Electrolyte Operation: The electrolyte can flow through the test system and return to the reservoir. Continuous circulation can reduce negative-electrode passivation, helping researchers investigate more stable operating conditions during rechargeable zinc air testing.

  • Forced Oxygen Capability: With an oxygen cylinder connected, the unit can operate in a pure-oxygen environment. Controlled oxygen delivery can increase reaction efficiency and enables comparison between oxygen-enriched operation and other gas-supply conditions.

  • Detachable Fluid and Gas Connections: Water-tube and gas-tube fittings can be removed when required. This makes it possible to compare electrolyte circulation against non-circulating operation without replacing the complete reactor assembly.

  • Leak-Resistant Sealing: The sealing design is specified as leak-free under the referenced test configuration. Reliable liquid containment helps protect surrounding equipment and improves confidence during electrolyte circulation and longer test sequences.

  • Compact Laboratory Footprint: The reactor is approximately 7 cm wide and 6 cm high. Its compact format conserves bench space while providing a dedicated reaction chamber, fluid connections, and reservoir-based electrolyte handling.

  • Flexible Gas Connection Options: Compatible gas-tube connector sizes include 6, 8, and 10 mm. This gives laboratories practical connection choices when integrating the equipment with available tubing, gas delivery hardware, or oxygen-cylinder systems.

  • Simple Assembly and Disassembly: The structure is designed for straightforward assembly and removal. Easy access supports cleaning, inspection, electrode replacement, and rapid transitions between reaction-area configurations.

  • Customizable Configuration: Other reaction-area requirements can be customized. Laboratories with non-standard electrode dimensions or specialized test protocols can discuss an adapted configuration before ordering.

Applications

Application Description Key Benefit
Rechargeable Zinc Air Cell Research Evaluate rechargeable zinc air electrochemical cells using selected cathode reaction areas and controlled alkaline electrolyte circulation. Supports repeatable comparison of electrode behavior across multiple reaction-area configurations.
Zinc Electrode Passivation Studies Circulate electrolyte through the reactor to examine how fluid movement affects negative-electrode passivation during operation. Helps researchers assess operating conditions intended to reduce passivation effects.
Metal Fuel Cell Reactor Development Use the unit as a laboratory reactor for metal fuel cell experiments involving zinc or other compatible metal-electrode concepts. Provides a compact test platform for early-stage reactor and electrode development.
Pure Oxygen Performance Testing Connect an oxygen cylinder to investigate electrochemical behavior under a forced, oxygen-rich reaction environment. Enables direct comparison of oxygen-supply conditions and their influence on reaction efficiency.
Electrolyte Circulation Comparison Run tests with circulating electrolyte, non-circulating electrolyte, or natural-state operation by changing the detachable fluid connection arrangement. Separates the influence of electrolyte movement from the intrinsic performance of the cell configuration.
Advanced Materials Research Study alkaline-compatible electrode materials, gas diffusion structures, and related components in a controlled laboratory reactor. Offers selectable reaction areas and configurable operating conditions for material screening.
Academic Electrochemistry Experiments Demonstrate zinc air reaction principles, electrolyte management, oxygen supply, and electrode-area effects in university laboratories. Combines compact dimensions with accessible configuration changes for teaching and research.

Technical Specifications

Specification Category Parameter BE03 Specification
Product identification Item number BE03
Product identification Product type Rechargeable zinc air electrolytic cell cycling test device; metal fuel cell reactor
Construction Mold material White polypropylene plate
Construction Material appearance Opaque
Dimensions Width 7 cm
Dimensions Height 6 cm
Cell geometry Positive and negative electrode distance 1.4 cm
Connections Gas-tube connector sizes 6 mm, 8 mm, and 10 mm
Sealing Sealing performance No liquid leakage
Electrolyte handling Liquid reservoir capacity 500 ml reservoir bottle
Operation Electrolyte circulation Electrolyte can flow and circulate through the system
Operation Oxygen supply Pure-oxygen operation is possible when connected to an oxygen cylinder
Configuration Available reaction areas 1 cm², 2 cm², 3 cm², 4 cm², and 4.5 cm²
Configuration Custom reaction area Other requirements can be customized

Reaction-Area Variants

Site-Facing Identifier Reaction Area Reference Configuration Note
BE03 1 cm² 1 cm² The 1 cm² configuration uses a 1 cm² cathode reaction area. The anode or zinc-electrode side is enlarged to approximately 5.3 cm² to increase the liquid volume in the device. This adjustment does not affect cathode performance testing.
BE03 2 cm² 2 cm² Standard configuration with a 2 cm² reaction area.
BE03 3 cm² 3 cm² Standard configuration with a 3 cm² reaction area.
BE03 4 cm² 4 cm² Standard configuration with a 4 cm² reaction area.
BE03 4.5 cm² 4.5 cm² Standard configuration with a 4.5 cm² reaction area.

The 1 cm² configuration is intended to provide a 1 cm² cathode reaction area while increasing the liquid volume available on the anode or zinc-electrode side. Researchers who require precisely matched positive- and negative-electrode areas should confirm the required configuration with technical support before ordering. The available 2, 3, 4, and 4.5 cm² configurations provide additional options for electrode screening and comparative studies.

The 500 ml reservoir gives the test arrangement a practical liquid capacity for circulation-based experiments. Circulation can be used to study the effect of electrolyte movement on negative-electrode passivation, while the removable water-tube connection allows the same general equipment to be used for non-circulating or natural-state comparisons. This flexibility helps laboratories isolate the effect of operating conditions without changing the entire reactor platform.

For gas-management studies, the detachable gas connection can be matched with 6, 8, or 10 mm tubing. When an oxygen cylinder is available, forced oxygen delivery supports pure-oxygen testing and may improve reaction efficiency. The gas configuration can therefore be selected according to the laboratory’s existing supply hardware and experimental objectives.

The compact 7 cm width and 6 cm height make the unit suitable for crowded electrochemical workstations, teaching laboratories, and benchtop materials-testing environments. The 1.4 cm distance between positive and negative electrodes establishes a defined cell geometry for controlled assembly. The opaque white polypropylene structure provides a robust housing for alkaline testing, while its resistance to oil adhesion and wear supports repeated laboratory handling.

Before testing, users can select the reaction-area variant, install the desired electrode arrangement, connect the fluid lines, and choose whether electrolyte circulation is required. For pure-oxygen experiments, the gas line can be connected to an appropriate oxygen-cylinder system. After operation, detachable connections and the simple assembly structure help facilitate inspection, cleaning, and configuration changes.

Why Choose This Product

  • Purpose-Built for Zinc Air Research: The reactor combines selected reaction areas, electrolyte circulation, and optional forced oxygen delivery in one compact test arrangement, giving researchers direct control over key experimental variables.

  • Durable Material Selection: Polypropylene provides alkaline resistance, high strength, and practical resistance to oil adhesion and wear. This supports repeated use in demanding laboratory environments.

  • Operational Comparability: Detachable fluid and gas connections allow laboratories to compare circulating, non-circulating, natural-state, and pure-oxygen conditions using a consistent basic platform.

  • Configuration Flexibility: Five referenced reaction-area options are available, and other requirements can be customized. The dedicated 1 cm² cathode configuration can also accommodate increased liquid volume on the zinc-electrode side.

  • Practical Handling and Containment: A compact footprint, simple assembly, 500 ml reservoir, and no-liquid-leakage sealing specification support efficient setup and controlled laboratory operation.

Contact us for a quotation, configuration guidance, or a customized rechargeable zinc air and metal fuel cell reactor solution matched to your electrode geometry and testing requirements.

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Product Datasheet

Rechargeable Zinc Air Electrolytic Cell Zinc Air Cycling Test Device Metal Fuel Cell Reactor

Category Catalog

In-Situ Raman Test Cell


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