Anode efficiency was measured using the ASTM G97 test method. Sample in Figure 3.7 prepared for this test. This sample act as an anode placed in the test pot as in Figure 3.8 for 14 days under impressed current at current density 0.039 mAcm-2 supplied by YEW Type 2553, Japan DC power supply. Current output recorded in Ampere per hour using Ampere hour meter model, Hokuto Denko H115, Japan . A steel plate 10 cm x 9.3 cm prepared for the cathode. The steel plate made from low carbon steel which similar to the buried pipeline material. This plate coated with paint leaving a 9.3 cm x 6.5 cm bare surface. This is to simulate the protection of steel pipe with minor coating damage.
FIGURE 3.7: Sample dimension for Anode Efficiency Test
During the test, hydrogen gas being collected in the volumetric cylinder. The quantity of gas produced during the test proportional to the anode efficiency value. After 14 days, the open circuit potential measured after 1 hour current has been disconnected. Sample then cleaned using the solution containing 200 g CrO3, 10 g AgNO3, 20 g Ba(NO3)2 and distilled water to 1000 ml by ultrasonic bath. This solution prepared as stated in ASTM G1 cleaning procedure. Sample then rinsed with distilled water and blow dry before being weight to measure the weight loss.
Anode capacity determined by measuring charge transfer in Ampere hour divided by massed of specimen. The calculation following the ASTM G97 as in Equation 3.3.
Anode capacity = Ah x 01 x 1000 Ahkg-1 (3.3)
M1 - M2
Where Ah = Readings at the Ampere hour meter
M1 = Sample weight before test, g
M2 = Sample weight after test, g.
While the anode efficiency calculated using next equation:
Anode Efficiency = Actual anode capacity x100 (3.4)
Theoretical anode capacity
Where theoretical anode capacity equals to 2206.4 Ahkg-1(Hock, 2001).
FIGURE 3.8: Schematic diagram of Anode Efficiency Testing.
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ReplyDeleteMay i know how about anode efficiency if we replace Mg to Zn as a sacrificial anode?how to determine anode life for Zn anode
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