Customer's demand can be considered in the production.
Coal based granular activated carbon has the advantages of high strength, well-developed pores, large specific surface area, especially large micropore volume. Coal based activated carbon has strong adsorption capacity for organic matter, free chlorine in water and harmful gases in air. It is an excellent adsorbent for deep purification of urban drinking water and is used to remove bacteria and toxic gases in air. Coal based activated carbon has developed pore structure, good chemical stability and mechanical strength, which is an excellent broad-spectrum carbonaceous adsorption material. According to the different appearance, coal based activated carbon can be mainly divided into coal based granular activated carbon and coal based powdery activated carbon, and granular activated carbon can be divided into coal based formed carbon [including columnar carbon, briquette carbon (or flake carbon), spherical carbon and raw coal crushing activated carbon]. According to different uses, it can be divided into water purification, air purification, decolorization, solvent recovery, injection, protection and other uses of activated carbon. Because of its acid resistance, alkali resistance, heat resistance, and granular activated carbon can be easily regenerated after adsorption saturation, activated carbon is an essential carbon adsorption material in modern industrial production and environmental protection.
Process Water and Waste Water Applications
Process water is water that is used as part of industrial processing, while waste water is the end result or byproduct of industrial work. Process water includes both water that will ultimately be consumed, such as that added to juice drinks, and water that is ultimately discarded or recycled, such as wash water. Because the water usage goals and the chemical compounds vary wildly, activated carbon is available in a wide range of forms, sizes, and impregnations to meet different process water needs.
Municipal Drinking Water
The world's drinking water supply comes from aquifers, lakes, rivers, and, increasingly, the ocean. Activated carbon is one of the best and most common treatment options for freshwater municipal supplies. For saltwater, filter anthracite is an excellent desalination resource. While most municipal drinking water treatment relies on large, heavy, fixed equipment, small mobile units are also available. These are saving lives in developing countries where access to safe water is limited.
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