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IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

2026-04-03

IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

 Background – Leakage and Security Requirements in Chemical Storage

In chemical logistics and hazardous material storage, IBC and DIBC containers require:

  • Secondary containment for leakage control
  • Structural protection against unauthorized access

Spill containment pallets serve as a primary control measure for both environmental and operational safety.

 


 

 Structural Upgrade Overview

Wuxi Super has upgraded its spill containment pallets by integrating a stainless steel paddle lock system, improving mechanical security under storage conditions.

 


 

 Core Technical Parameters

 Material and Structure

  • Material: High-density polyethylene (HDPE), one-piece injection molding
  • Standard: EPA 40 CFR leakage prevention
  • Corrosion resistance: Suitable for acid and alkali environments

 Containment Capacity

  • Sump volume: ≥110% of IBC container volume
  • Function: Full containment of leaked liquid to prevent environmental release

 Locking System

  • Material: 304 stainless steel
  • Design: Integrated paddle lock structure
  • Standard reference: EN 12322 anti-pry performance

 Compatibility

  • Suitable for standard IBC and DIBC containers
  • Stackable design for warehouse space optimization

 


 

 Application Scenarios

  • Chemical storage facilities
  • Industrial warehouses
  • Hazardous material logistics centers

 


 

 Logistics and Supply

  • FOB Shanghai export available
  • Container shipping compatible
  • Optional DDU delivery based on project requirements

 


 

 Summary

The upgraded spill containment pallet combines HDPE structural containment and mechanical locking design, providing a solution for leakage control and access management in hazardous chemical storage. The parameter-based design supports application in regulated industrial environments.

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News Details
Created with Pixso. Created with Pixso. 뉴스 Created with Pixso.

IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

IBC/DIBC Spill Containment Pallet Upgrade: Structural Locking System Enhances Storage Security

 Background – Leakage and Security Requirements in Chemical Storage

In chemical logistics and hazardous material storage, IBC and DIBC containers require:

  • Secondary containment for leakage control
  • Structural protection against unauthorized access

Spill containment pallets serve as a primary control measure for both environmental and operational safety.

 


 

 Structural Upgrade Overview

Wuxi Super has upgraded its spill containment pallets by integrating a stainless steel paddle lock system, improving mechanical security under storage conditions.

 


 

 Core Technical Parameters

 Material and Structure

  • Material: High-density polyethylene (HDPE), one-piece injection molding
  • Standard: EPA 40 CFR leakage prevention
  • Corrosion resistance: Suitable for acid and alkali environments

 Containment Capacity

  • Sump volume: ≥110% of IBC container volume
  • Function: Full containment of leaked liquid to prevent environmental release

 Locking System

  • Material: 304 stainless steel
  • Design: Integrated paddle lock structure
  • Standard reference: EN 12322 anti-pry performance

 Compatibility

  • Suitable for standard IBC and DIBC containers
  • Stackable design for warehouse space optimization

 


 

 Application Scenarios

  • Chemical storage facilities
  • Industrial warehouses
  • Hazardous material logistics centers

 


 

 Logistics and Supply

  • FOB Shanghai export available
  • Container shipping compatible
  • Optional DDU delivery based on project requirements

 


 

 Summary

The upgraded spill containment pallet combines HDPE structural containment and mechanical locking design, providing a solution for leakage control and access management in hazardous chemical storage. The parameter-based design supports application in regulated industrial environments.