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首页> 外文期刊>環境資源工学 >Elusion Tests of Scorodite Synthesized by Oxidation of Ferrous Ions
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Elusion Tests of Scorodite Synthesized by Oxidation of Ferrous Ions

机译:亚铁离子氧化合成臭臭石的侵蚀试验

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摘要

Atmospheric scorodite synthesis reaction was developed. The reaction is oxidation of ferrous ion by oxygen gas in the presence of pentavalent arsenic ion, and synthesized scorodite is well-crystallized in a short retention time of 1 to 7 h. The resulting scorodite particles are as large as 15 μm, with less than 10% in moisture content, and they are readily washed and feature excellent packing properties. This scorodite synthesis process can be incorporated in hydrometallurgy process.The early stage of a mechanism scorodite synthesized in a novel atmospheric process was investigated. Crystalline scorodite was prepared even within 10 min in our novel process. We checked how to build up scorodite crystal by XRD, SEM and TEM. Then at very early stage, string type precipitates were found and after few hours it became plates and octahedron bodies.Environmental leach tests were also performed according to various countries' batch leaching procedures. The comparisons were made among Japanese, U.S., Canadian, and Dutch leaching tests. In the United States Environmental Protection Agency's Toxicity Characteristic Leaching Procedure (TCLP) test (method 1311), the obtained scorodite particles released a very low, almost negligible concentration of arsenic in the pH range of 3 to 5, suggesting its long-term stability. In the leach tests of various pH solutions, it was shown that the scorodite solubility was turned greatly by outside environmental factors such as pH rather than long-term stability. In addition, the results showed scorodite released a considerably high concentration of arsenic under specific leaching conditions.
机译:开发了大气臭葱石合成反应。反应是在五价砷离子存在下用氧气将亚铁离子氧化,合成的臭葱石在1至7小时的短停留时间内就可以很好地结晶。所得臭葱石颗粒大至15μm,水分含量小于10%,并且它们易于洗涤并且具有优异的包装性能。这种臭葱石的合成方法可以并入湿法冶金中。研究了在新型大气过程中合成臭葱石的机理的早期阶段。在我们的新工艺中,甚至在10分钟内即可制备出结晶臭葱石。我们检查了如何通过XRD,SEM和TEM来构建臭葱石晶体。然后在很早的阶段就发现了串状沉淀物,几个小时后就变成了板状和八面体。还根据各国的分批浸出程序进行了环境浸出试验。比较是在日本,美国,加拿大和荷兰的浸出试验中进行的。在美国环境保护局的毒性特征浸出程序(TCLP)测试(方法1311)中,所获得的臭葱石颗粒在3至5的pH范围内释放出非常低的砷浓度,几乎可以忽略不计,表明其长期稳定性。在各种pH溶液的浸出试验中,表明臭葱石的溶解度受pH等外部环境因素的影响很大,而不是长期稳定性。另外,结果表明臭葱石在特定的浸出条件下释放出相当高浓度的砷。

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