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- W2807012308 abstract "In last five years, most of scientists and researchers have looked for new energy sources as a special innovation in the field of renewable energy. Water cell or hydroelectric power cell is the new innovation in this field of the green energy, and it can replace the carbon intensive energy, as a result it will challenge the global warming emissions. Water cell gives electricity when it immerses in water. Three samples of water cells were produced in this project, and these electrodes samples are Zn-Al, Zn-Cu, and Al-Cu cells. The thickness of each metal sheet is 0.3mm with 30 holes of 2mm diameter distributed uniformly area on 5∗5 cm2 metal sheets. The distance between the electrodes were (2 different metal sheets) is about t=2 mm. Pasty pellets of PMMA and carbon powder (1W/1W) % by weight set up inside the cell and sandwiched between the electrodes. The Al-Zn and Al-Cu cells were tested in 600 ml of deionized water, drinking water and 1 Molar NaCl solution. Zn-Cu cell was the main cell in this project depending on its results, and it was tested in 600 ml of deionized water, drinking water, 1 Molar NaCl solution, 1 Molar HCL solution, and 1 Molar NaOH solution to test the performance of the cell in different environments and conditions. All the currents, voltages, and powers were recorded. The maximum power gain from the Zn-Cu cell in deionized water, drinking water, 1 molar(M) NaCl, 1M HCL acid and 1M NaOH solution were (0.246mW), (1.7mW), (2.7mW), (57mW) and (70mW) respectively. The test of Al-Cu cell reflects the following results in deionized water, drinking water and 1M NaCl were (0.125mW), (0.5mW) and (3.5mW) respectively. The same test of the Al-Zn cell shows the following results: deionized water, drinking water and 1M NaCl were (0.002mW), (0.12mW), and (0.125mW) respectively." @default.
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- W2807012308 date "2018-03-01" @default.
- W2807012308 modified "2023-09-26" @default.
- W2807012308 title "Metal-carbon — Polymer water cells green energy source" @default.
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- W2807012308 doi "https://doi.org/10.1109/irec.2018.8362512" @default.
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