High-humidity biomass such as rice husks and fresh branches are often regarded as low-value waste, but they can be transformed into high-end carbon materials in professional carbonization machines. Humidity is no longer a limitation, but a touchstone of the technical strength of the equipment.
Innovative solution to the high-humidity dilemma. Direct carbonization of raw materials with a moisture content of 30%+ can easily lead to carbon powder agglomeration, pore collapse, and calorific value shrinkage. Traditional processes require additional drying equipment, increasing costs and processes. The integrated carbonization machine innovatively adopts a dual-section design of "low-temperature slow dehydration + high-temperature rapid cracking": the front dehydration zone uses flue gas waste heat for gentle dehumidification to protect the raw material fiber structure; the rear high-temperature zone instantly completes molecular reconstruction in an oxygen-deficient environment to avoid damage to the carbon structure.
The value of turning waste into treasure has leaped. This breakthrough allows high-humidity waste such as palm shells and pomace to be directly converted into high-value-added carbon products. The porosity of the obtained carbon powder is over 80%, and the iodine adsorption value is increased by 40%, which perfectly meets the needs of activated carbon and battery materials; the mechanical strength of the carbon rod is increased by 30%, and the burning time is extended by 50%, making it the darling of the high-end fuel market. The carbonization machine transforms the humidity disadvantage into a product performance advantage and reshapes the biomass value chain.
Investing in a high-humidity treatment carbonization machine is to seize the technical commanding heights of high-value waste resources.
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