How Do You Select an Appropriate MMO Anode for a Cathodic Protection System?
How Do You Select an Appropriate MMO Anode for a Cathodic Protection System? The choice between impressed and sacrificial cathodic protection depends many factors and may be just personal preference. There are, however, situations where one or the other provides the correct choice. The advantages and disadvantages of each type of CP system are described in below table. Advantages and Disadvantages of Impressed Current and Sacrificial Anode CP Systems. Impressed Current Sacrificial Anodes Advanta
What is the Use of Ground Beds in Cathodic Protection?
What is the Use of Ground Beds in Cathodic Protection? The cathodic protection type determines how the cathodic current is supplied to the structure. Cathodic protection can be applied by either an impressed current system or by a sacrificial anode system. Impressed current cathodic protection systems use an external DC current source and a variety of anode materials to supply the cathodic current. Sacrificial anode CP systems generate the cathodic current from the corrosion of metals less noble than the metal to be protected.
What is The Application of Dimensionally Stable Anode (DSA) in Wastewater Treatment?
What is The Application of Dimensionally Stable Anode (DSA) in Wastewater Treatment? Coated titanium electrode is also named DSA (dimensionally stable anode). This electrode is the main form of metallic oxide. The distance between anode and cathode will not change, so its electrode wear is small and the size is stable. This dimensionally stable anode has been widely used in the electrolysis industry because of its property, which brings lots of advantages. DSA is a type of electro-catalytic electrode, which
What Are the Advantages of Dimensionally Stable Anodes Compared with Graphite Anodes?
What Are the Advantages of Dimensionally Stable Anodes Compared with Graphite Anodes? Electro-catalyst enables the electron transfer reactions at the electrode-electrolyte interface with substantial energy savings. The total energy consumption in the chloro-alkali process is proportional to the total cell voltage, including the thermodynamic potential of anodic and cathodic reactions, electrode over potential, and an ohmic drop from the electrolyte, membrane, and bubble effect, etc. The electrode upon which oxidation occu
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