首页> 外文期刊>Environmental toxicology and chemistry >Behavior of B, Cr, Se, As, Pb, Cd, and Mo present in waste leachates generated from combustion residues during the formation of ettringite.
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Behavior of B, Cr, Se, As, Pb, Cd, and Mo present in waste leachates generated from combustion residues during the formation of ettringite.

机译:钙矾石形成过程中燃烧残渣产生的垃圾渗滤液中B,Cr,Se,As,Pb,Cd和Mo的行为。

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摘要

The behavior of B, Cr, Se, As, Pb, Cd, and Mo in the leachates generated from two combustion residues, coal-fired power plant fly ash and municipal solid waste incineration ash, during precipitation of ettringite is presented. Experiments also were performed using modeled waste leachates as well as controlled solutions containing all the investigated elements. Moreover, to determine the possible effect of pH, lime treatment was conducted using the waste and modeled leachates. Results indicated the removal of B, Se, and Cr from the leachates because of incorporation of their oxyanions in the ettringite structure. The removal of B could further be explained by considering the structure of ettringite and monosulfoaluminate. The removal of Pb also occurred, probably because of lime-induced precipitation of Pb(OH)2. Similarly, the removal of As was observed as a result of lime-induced precipitation of Ca3(AsO4)2 and incorporation into the ettringite structure. On the other hand, the precipitation of ettringite did not reduce the concentrations of Mo and Cd because of the complex nature of these elements in the leachates. The results also suggest that the presence of high amounts of constituents such as Cl-, an alkali metal in the solution, also affected ettringite precipitation behavior. Moreover, elemental speciations as well as the presence of other constituents in the solution affected the incorporation by ettringite.
机译:提出了钙矾石沉淀过程中,燃煤电厂粉煤灰和城市生活垃圾焚烧灰两种燃烧残渣产生的渗滤液中B,Cr,Se,As,Pb,Cd和Mo的行为。还使用模拟的垃圾渗滤液以及包含所有研究元素的受控溶液进行了实验。此外,为了确定pH值的可能影响,使用废物和模拟渗滤液进行了石灰处理。结果表明,由于渗碳体结构中引入了氧阴离子,因此从渗滤液中去除了B,Se和Cr。 B的去除可以通过考虑钙矾石和单磺铝酸盐的结构来进一步解释。还可能由于石灰引起的Pb(OH)2沉淀而去除了Pb。同样,由于石灰诱导的Ca3(AsO4)2沉淀并掺入钙矾石结构中,从而观察到了As的去除。另一方面,由于渗滤液中这些元素的复杂性质,钙矾石的沉淀并未降低Mo和Cd的浓度。结果还表明,溶液中碱金属Cl-等大量成分的存在也影响钙矾石的沉淀行为。此外,元素形态以及溶液中其他成分的存在都会影响钙矾石的掺入。

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