MobiFlow System

Hygienic Dosing Systems for Precise Dispensing from IBCs and Bag-in-Box Containers: Ensuring Seamless Dosing Control

*1. Application: Seamless Transition for Uninterrupted Dosing:

In the liquid processing industry, precise dosing from Intermediate Bulk Containers (IBCs) and bag-in-box containers is a key challenge. Extracting products without interruption is vital for maintaining accurate dosing control. D&W’s hygienic dosing systems are engineered to seamlessly transition from one container to another when the initial container is emptied. This application is critical in industries where maintaining product integrity and precise dosing are paramount to the manufacturing process.

*2. Our Concept: Consistent Dosing Through Container Switchovers:

At D&W, our dosing systems embody a concept focused on uninterrupted dosing control. Understanding the significance of maintaining precise dosing, our systems are designed with specialized components that facilitate smooth transitions from one container to another. This approach ensures consistent and reliable dosing throughout the production process, overcoming the challenges posed by empty containers and minimizing any disruptions in the dosing workflow. Our dosing systems are engineered to optimize liquid extraction, providing reliable solutions for various industries.

*3. Working Principle: Streamlined Dosing with Container Switchovers:

The working principle of our hygienic dosing systems revolves around maintaining a seamless dosing process through container switchovers. When one container is emptied, our systems are equipped with valves and instruments to automatically and smoothly transition to the next container, ensuring continuous and precise dosing control. This technology guarantees an uninterrupted product flow and accurate dosing, enhancing efficiency during dispensing from IBCs and bag-in-box containers. With D&W’s dosing systems, achieving consistent dosing control during container changeovers becomes a standard, contributing to an efficient liquid processing workflow.