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Influence of operating conditions on the ammonia electro-oxidation rate in wastewaters from power plants (ELONITA™ technique)

机译:操作条件对发电厂废水中氨电氧化速率的影响(ELONITA™技术)

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摘要

Power plants, like many other industries, are confronted with the need to reduce the nitrogen content of their wastewaters. Indirect electro-oxidation, through hypochlorite formation, is a possible answer to an ammonia-nitrogen problem, through converting it into gaseous nitrogen. Several parameters affect the ammonia oxidation rate: current density, chloride concentration and the presence of oxygen-containing anions, mainly SO_4~(2-), CO_3~(2-) and PO_4~(3-). pH values between 5.5 and 10 have been found to have no effect on the ammonia oxidation rate. However, at higher pH values (above 11), the oxidation slows down and chlorate ions appear. A model can be fitted from the experiments to predict the ammonia oxidation rate based on four main parameters: pH, current density, sulfate concentration and chloride concentration. The average difference between the predicted oxidation rates and the experimental measures is only 6.5%. This model confirms that the optimal operating conditions are a high chloride concentration (7g l~(-1)), no sulfate and a high current density (1200A m~(-2)).
机译:像许多其他行业一样,发电厂也面临着减少其废水中氮含量的需求。通过次氯酸盐形成的间接电氧化可能通过将氨转化为气态氮来解决氨氮问题。有几个参数影响氨的氧化速率:电流密度,氯化物浓度和含氧阴离子的存在,主要是SO_4〜(2-),CO_3〜(2-)和PO_4〜(3-)。已经发现5.5至10之间的pH值对氨氧化速率没有影响。但是,在较高的pH值(高于11)下,氧化速度会减慢,并且会出现氯酸根离子。可以根据实验拟合模型,以基于四个主要参数预测氨氧化速率:pH,电流密度,硫酸盐浓度和氯化物浓度。预测的氧化速率与实验方法之间的平均差异仅为6.5%。该模型证实了最佳的操作条件是高氯化物浓度(7g l〜(-1)),无硫酸盐和高电流密度(1200A m〜(-2))。

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