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DEVELOPMENT, TESTING AND FULL-SCALE OPERATION OF A NEW TREATMENT METHOD FOR SELENIUM REMOVAL FROM ACIDIC EFFLUENTS

机译:一种新的治疗方法的开发,测试和全尺​​度操作,用于从酸性流出物中去除硒

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Conventional physico-chemical treatment methods, either hydroxide or sulfide precipitation, can hardly achieve a high removal of selenium from the liquid effluents which can be generated in some metallurgical operations. In weak acid solutions, selenium exists mainly as anionic species (selenite SeO_3~(-2) and selenate SeO_4~(-2)) which, therefore, cannot precipitate as metal hydroxide or metal sulfide compounds. At the same time, neither selenite nor selenate form stable precipitates with the common cations (Ca, Mg, Fe, etc.) that are typically used in water treatment. At Noranda Inc., CEZinc Division in Valleyfield, Canada, the introduction of new discharge requirements for effluent toxicity initiated a R&D program which resulted in the full-scale implementation of a new treatment method for selenium removal. The goal of this paper is to present this new method which is now being patented by CEZinc. The process chemistry will be presented along with pilot-scale developments and full-scale operational results.
机译:常规的物理化学处理方法,氢氧化物或硫化物沉淀,可以从液体流出物中难以实现高分子,其可以在一些冶金操作中产生。在弱酸溶液中,硒主要存在于阴离子物质(硒沸石SEO_3〜(-2)和硒酸盐SEO_4〜(-2)),因此不能作为金属氢氧化物或金属硫化物化合物沉淀。同时,亚硒钛矿也不是稳定的沉淀沉淀,与通常用于水处理的常见阳离子(Ca,Mg,Fe等)。在加拿大Valleyfield的Cezinc部门诺兰达公司,引入了废水毒性的新放电要求启动了R&D计划,导致硒去除了新的治疗方法的全规模实施。本文的目标是介绍该方法,目前正在通过Cezinc获得专利。该过程化学将随着试点规模的发展和全面的运营结果呈现。

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