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<h1 class="box-heading">Problem</h1> | <h1 class="box-heading">Problem</h1> | ||
<p>The cooling circulating water system is a heat sink that is usually made of steel. The heat can be transferred to the air through the water to achieve the purpose of cooling the equipment and ensure the normal operation of the equipment. Common applications include chemical plants, steel mills, thermal power plants, and more. These cooling water systems have a huge amount of water, a typical petrochemical plant has a circulating water volume of 80,000 cubic meters per hour in its cooling water system. The cost of cleaning the cooling water system blockage is billions of RMB in CHN. And the energy consumption due to blockages reached $1 billion in the USA.</p> | <p>The cooling circulating water system is a heat sink that is usually made of steel. The heat can be transferred to the air through the water to achieve the purpose of cooling the equipment and ensure the normal operation of the equipment. Common applications include chemical plants, steel mills, thermal power plants, and more. These cooling water systems have a huge amount of water, a typical petrochemical plant has a circulating water volume of 80,000 cubic meters per hour in its cooling water system. The cost of cleaning the cooling water system blockage is billions of RMB in CHN. And the energy consumption due to blockages reached $1 billion in the USA.</p> | ||
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<p>After a certain period of use, the circulating cooling water will discharge part of the natural water, and then introduce new water for cooling water system. However, as the number of cycles increases, organic nutrients and mineral ions are accumulated which will lead bacteria growth quickly. These bacteria are mainly classified into iron bacteria and biofilm-producing bacteria.</p> | <p>After a certain period of use, the circulating cooling water will discharge part of the natural water, and then introduce new water for cooling water system. However, as the number of cycles increases, organic nutrients and mineral ions are accumulated which will lead bacteria growth quickly. These bacteria are mainly classified into iron bacteria and biofilm-producing bacteria.</p> | ||
<p>Iron bacteria are a class of autotrophic or heterotrophic bacteria that can oxidize Fe2+to Fe3+. These Fe3+ are converted into iron hydroxide precipitates, which are the main components of rust and constitute a blockage of the cooling water system. Rust is the porous hard framework that slows water flow and provides a larger adsorption surface area for bacterial growth. Iron bacteria corrode pipes 10 to 1000 times more than natural corrosion.</p> | <p>Iron bacteria are a class of autotrophic or heterotrophic bacteria that can oxidize Fe2+to Fe3+. These Fe3+ are converted into iron hydroxide precipitates, which are the main components of rust and constitute a blockage of the cooling water system. Rust is the porous hard framework that slows water flow and provides a larger adsorption surface area for bacterial growth. Iron bacteria corrode pipes 10 to 1000 times more than natural corrosion.</p> |
Revision as of 16:32, 17 October 2018