2017
DOI: 10.15407/techned2017.05.089
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Experimental Plant for Water Purification With the Help of Discharges in Gas Bubbles

Abstract: The dependence of the current and voltage on time in discharges in gas bubbles in water used for its purification is studied experimentally. It is shown that at the front of the current pulses with discharges in bubbles there is a kink, after which the rate of current increase sharply increases. The frequency of discharges in bubbles is 10,000 pulses / s at a voltage amplitude of 8 kV on the reactor-the load of the experimental setup generator and currents of 0.2 A in a high-voltage discharge circuit with disc… Show more

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Cited by 4 publications
(3 citation statements)
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“…In the modern world, researchers are constantly searching for new energy-saving technologies for disinfection and water treatment. One of the most promising and relevant technologies in this direction is the technology of water treatment using micro-and nanosecond discharges in gas bubbles [1][2][3].…”
Section: мета порівняння електричних кіл експериментальних установокmentioning
confidence: 99%
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“…In the modern world, researchers are constantly searching for new energy-saving technologies for disinfection and water treatment. One of the most promising and relevant technologies in this direction is the technology of water treatment using micro-and nanosecond discharges in gas bubbles [1][2][3].…”
Section: мета порівняння електричних кіл експериментальних установокmentioning
confidence: 99%
“…Electric circuits of experimental installations. Figures 1,a,b show the electric circuits of experimental installations for water treatment using micro-and nanosecond discharges in gas bubbles [2,3]. In Fig.…”
Section: цель сравнение электрических схем экспериментальных установmentioning
confidence: 99%
“…Микро-и наносекундные разряды в газовых пузырях формируются генератором высоковольтных импульсов (ГВИ). Успешно проверен вариант работы [13] экспериментально исследовано влияния микросекундных разрядов в газовых пузырях на обработку воды, использованную в коксовом производстве, с целью ее очистки от фенолов и роданидов. По данным лаборатории Харьковского коксового завода фенолов уменьшено на 60% (с 358 мг/л до143), а роданидов на 94% (с 536 мг/л до 32 мг/л).…”
Section: екологічні науки № 4(27)unclassified