Case Study of Introducing a Decompression Dehydration Drying Device: Semiconductor Component Manufacturing Company
Reduction rate of plating process wastewater is 96.42%! By consolidating the previous processes into one machine, we achieved simplification of treatment and significant cost reduction.
At Company K, a semiconductor component manufacturing manufacturer, they were processing 10,000 liters per day of wastewater from the plating process. Previously, they processed it using a microflow → filter press → disk dryer, but after introducing the vacuum dehydration drying device "G 500 model," they consolidated the previous processes into one machine, achieving simplification of processing and significant cost reduction. 【What is a vacuum dehydration drying device?】 It is a device that efficiently recovers (concentrates) only water from various sludges and wastewater, reducing waste. It lowers the treatment costs of wastewater discharged from factories and enables resource reuse. *For more details on the case, please download the PDF. Feel free to contact us with any inquiries.
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【Features of the Decompression Dehydration Drying Device】 ■ Efficiently recovers only water (concentration) from various sludges and wastewater, reducing waste ■ Moisture content of the processed cake can be as low as 1-5% ■ Large heat transfer area achieves low heating with minimal space and low cost ■ Fully automatic operation in two modes: batch and continuous ■ Drive components require no maintenance, consisting only of a pump ■ Residue in the chamber is automatically discharged *For more details, please refer to the PDF document or feel free to contact us.
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【Processing Examples】 ■ Water-soluble cutting oil ■ Heat treatment wastewater (containing boron) ■ Barrel polishing wastewater ■ Alkaline degreasing wastewater ■ Plating wastewater ■ Sludge reduction after filter press, etc. general wastewater *For more details, please refer to the PDF materials or feel free to contact us.
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Our company is developing as an environmental conservation equipment manufacturer by applying the core technology of dry cleaning machine development and its elemental technologies (gas recovery using activated carbon, reuse through solvent distillation regeneration) to other industries. This has resulted in the removal treatment of low-concentration radioactive contaminated materials and the cleanliness management process for final cleaning systems of space-related engines. We propose the distillation concentration of high-concentration waste liquid discharged from production processes using a vacuum dehydration drying device based on vacuum distillation, contributing to the reduction of industrial waste, resource recovery, and the reuse of distilled water.