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The stability of arsenic and selenium compounds that were retained in limestone in a coal gasification atmosphere

机译:煤气化气氛中保留在石灰石中的砷和硒化合物的稳定性

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摘要

The aim of this work was to evaluate the stability of arsenic and selenium species retained in a lime/limestone mixture obtained by using limestone as a sorbent for gas cleaning in a coal gasification atmosphere. It was found that the stability of arsenic and selenium species produced by the gas–solid reactions with lime/limestone may be affected by their exposure to air and by their contact with water. The results confirm the conclusions of a previous work in which Ca(AsO2)2 and CaSe was postulated as the products of the reaction between the arsenic and selenium species present in a coal gasification atmosphere with lime/limestone. Moreover it was proved that the compounds (Ca(AsO2)2 and CaSe) may undergo transformations when the sorbents post-retention are stored or disposed of in air. From the results obtained by XAFS it was possible to identify the Ca3(AsO4)2 produced by the oxidation of the Ca(AsO2)2 on the sorbent surface. The XAFS results for selenium showed that the CaSe formed on the sorbent was transformed to form several species, but mainly elemental Se. These changes in the speciation of arsenic and selenium may explain the behavior of the sorbent post-retention during the water solubility test. Although the selenium compounds and the products that may originate from their decomposition in water are not toxic, in the case of arsenic, species like Ca(AsO2)2 and Ca3(AsO4)2 may lixiviate, and generate toxic arsenic compounds in solution that could pose a risk when the sorbent is finally disposed of.
机译:这项工作的目的是评估保留在石灰/石灰石混合物中的砷和硒物种的稳定性,该混合物是通过使用石灰石作为吸附剂在煤气化气氛中进行气体净化而获得的。研究发现,与石灰/石灰石的气固反应所产生的砷和硒物质的稳定性可能受到其暴露于空气和与水接触的影响。结果证实了先前工作的结论,其中假定Ca(AsO2)2和CaSe是存在于煤气化气氛中的石灰与石灰石中的砷和硒物质之间反应的产物。此外,已证明当保留后的吸附剂在空气中存储或处置时,化合物(Ca(AsO2)2和CaSe)可能发生转变。从XAFS获得的结果中,有可能鉴定出Ca(AsO2)2在吸附剂表面上的氧化产生的Ca3(AsO4)2。硒的XAFS结果表明,吸附剂上形成的CaSe被转化形成了几种,但主要是元素硒。砷和硒形态的这些变化可能解释了水溶性测试过程中吸附剂保留后的行为。尽管硒化合物及其在水中分解产生的产物无毒,但在砷的情况下,Ca(AsO2)2和Ca3(AsO4)2之类的物质可能会溶解,并在溶液中生成有毒的砷化合物,最终处置吸附剂时会造成危险。

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