The cake discharged from ELODE is fundamentally different. Through electro-osmosis, electro-permeation, and electrophoresis, ELODE forms a flat and stable sludge cake. While conventional mechanical systems lose efficiency in the 80% to 60% moisture Glue Zone, ELODE breaks through it in just 90 seconds by mobilizing bound, intracellular, and interstitial water. This is not thermal drying, low-temperature drying, or extreme mechanical pressure. This is BLUEWIN’s electro-kinetic control technology. By reducing moisture beyond mechanical limits, ELODE upgrades cake quality for better handling, transport, storage, and reuse. With preserved calorific value, the cake can be reused as pellets, alternative fuel, or construction materials. Less Volume. Higher Grade. Less Carbon. ELODE.
Beyond the Glue Zone: The ELODE Cake DifferenceThe cake discharged from ELODE is fundamentally different. Through electro-osmosis, electro-permeation, and electrophoresis, ELODE forms a flat and stable sludge cake. While conventional mechanical systems lose efficiency in the 80% to 60% moisture Glue Zone, ELODE breaks through it in just 90 seconds by mobilizing bound, intracellular, and interstitial water. This is not thermal drying, low-temperature drying, or extreme mechanical pressure. This is BLUEWIN’s electro-kinetic control technology. By reducing moisture beyond mechanical limits, ELODE upgrades cake quality for better handling, transport, storage, and reuse. With preserved calorific value, the cake can be reused as pellets, alternative fuel, or construction materials. Less Volume. Higher Grade. Less Carbon. ELODE.
The Henderson, Kentucky municipal WWTP (USA) validated BLUEWIN’s ELODE-based system under real sludge conditions. The video shows a three-step line, thickening, belt press dewatering, and final-stage ELODE, designed to break through the Glue Zone (60–80% moisture) and further reduce moisture. This demonstration is a proven field case backed by on-site operating data, confirming energy efficiency and stable continuous operation.
U.S. Demonstration Project: ELODE-Based System Validated at a Municipal WWTP in Kentucky, USAThe Henderson, Kentucky municipal WWTP (USA) validated BLUEWIN’s ELODE-based system under real sludge conditions. The video shows a three-step line, thickening, belt press dewatering, and final-stage ELODE, designed to break through the Glue Zone (60–80% moisture) and further reduce moisture. This demonstration is a proven field case backed by on-site operating data, confirming energy efficiency and stable continuous operation.
This video presents our full three-step process, starting from thickening, moving through belt press dewatering, and finishing with ELODE as the final stage for enhanced moisture reduction.
Three-step process from thickening to ELODEThis video presents our full three-step process, starting from thickening, moving through belt press dewatering, and finishing with ELODE as the final stage for enhanced moisture reduction.
This video showcases the full process of treating various types of livestock manure (excreta) sludge using the ELODE system. By adapting to sludge-specific challenges such as stickiness and varying moisture content, it minimizes odor-related burdens during operation and demonstrates a stable workflow for continuous dewatering and volume reduction.
livestock manure in agricultural biogas plants. Pig manure, cow manure, chicken manureThis video showcases the full process of treating various types of livestock manure (excreta) sludge using the ELODE system. By adapting to sludge-specific challenges such as stickiness and varying moisture content, it minimizes odor-related burdens during operation and demonstrates a stable workflow for continuous dewatering and volume reduction.
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