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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Purification of wet-process phosphoric acid by hydrogen peroxide oxidation, activated carbon adsorption and electrooxidation
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Purification of wet-process phosphoric acid by hydrogen peroxide oxidation, activated carbon adsorption and electrooxidation

机译:通过过氧化氢氧化,活性炭吸附和电氧化纯化湿法磷酸纯化

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摘要

In this work, three technologies are studied for the purification of phosphoric acid produced by the wet process: chemical oxidation with hydrogen peroxide, adsorption onto activated carbon, and electrochemical oxidation by boron-doped diamond anodes. The treatment of wet-process phosphoric acid by chemical oxidation with H2O2 as oxidizing agent can remove 75% of the initial TOC as maximum, indicating that this wet-process phosphoric acid contains an important amount of organics that cannot be oxidized by hydrogen peroxide under the operation conditions used. High temperatures and hydrogen peroxide/TOC ratios close to 150 g H2O2/g TOC allow obtaining the best chemical oxidation results. The adsorption onto activated carbon can remove between 40 and 60% of the initial TOC as maximum. Adsorption times of 2 hours and activated carbon/WPA ratios close to 12 g AC/Kg WTP assure both steady state and maximum adsorption of organics. The electrochemical process is the only technique by which complete mineralization of WPA organics can be achieved. Operating at 60 mA cm(-2) and at room temperature, high current efficiencies are achieved which only seem to decrease by mass transport limitations.
机译:在这项工作中,研究了三种技术,用于纯化湿法产生的磷酸:化学氧化与过氧化氢,吸附在活性炭上,并通过硼掺杂金刚石阳极吸附电化学氧化。通过用H 2 O 2的化学氧化处理湿法磷酸作为氧化剂可以最大地除去初始TOC的75%,表明该湿法磷酸含有绝不能通过过氧化氢氧化的重要物体。使用的操作条件。高温和过氧化氢/ TOC比率接近150g H 2 O 2 / G TOC,允许获得最佳的化学氧化结果。在活性炭上的吸附可以在最大值的初始TOC的40%和60%之间移除。 2小时的吸附时间和接近12g AC / kg WTP的活性炭/ WPA比率为稳定状态和最大的有机物吸附。电化学方法是唯一可以实现WPA有机物的完全矿化的技术。在60 mA cm(-2)和室温下操作,实现高电流效率,只有大规模运输限制似乎只会降低。

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