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Ceramic Kiln Furnaces is generally employed as a gaseous fuel and used as a heat source. It is useful and important to replace a part of gaseous propane with an alternative fuel such as PET-resin powder from the view point of energy saving and low environmental impact.
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Ceramic materials are inorganic and nonmetallic materials. Their interatomic bonds are either totally ionic or predominantly ionic but having some covalent character. These materials are hard, porous and brittle. The development of ceramics includes methods to mitigate problems associated with these characteristics and to accentuate the strengths of the materials as well as to investigate novel applications. They have specific properties, which cannot be replaced by other materials. It plays a significant role in the performance of numerous devices and equipments.
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Ceramic Membrane Filtration System is an ideal way to safely remove suspended solids in liquid filtration applications, providing exceptional quality without stripping color. The filtration system utilizes high-velocity crossflow across the membrane surface. The advanced-technology ceramic membranes deliver outstanding performance, durability, and cost-efffectiveness. The robust filter design and high efficiency can help solve tough filtration challenges.
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Ceramic membranes are made from inorganic materials such as alumina, titania, zirconia oxides or some glassy materials and they are utilized in membrane operations. Ceramic membranes have the combined advantage of high chemical, mechanical and thermal resistance. In comparison with polymeric membranes, they are utilized in separations where aggressive media such as acids and strong solvents are present. They have also excellent thermal stability, which makes them useable in high temperature membrane operations like ultra filtration, gas separation, osmosis, reverse osmosis, electrodialysis & electrophoresis. Ceramic membranes can be either dense or porous like that of polymeric membranes.
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