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Assessment of chemical sensitivity of Waelz slag

机译:Waelz炉渣的化学敏感性评估

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In the recycling industry, the recuperation of zinc from electric arc furnace dust by the Waelz process generates important quantities of slag. This slag presents good mechanical properties, and for the most siliceous slag, a high stability that would enable its use by total or partial substitution of certain granulates in civil engineering. Our study (within the framework of a European program, co-funded by the European Commission-DGXII) concerns the physico-chemical and mineralogical characterization and leaching behaviour of several types of Waelz slag. The leaching tests used are regulatory tests and specific characterization tests of leaching behaviour. They take into account the influence of several main parameters of the valonzation scenarios envisaged for the slag (e.g. pH. Redox potential, chemical nature of the leachant, type of contact-liquid/solid etc). The influence of the che- mical nature of the alkaline leachant (lime or NaOH) is particularly important in the case of release of lead (strongly leached by a lime solution), of zinc and of arsenic. The agreement between ANC test results and controlled pH test results can be noted. Leachability is largely controlled by pH in solution. Alkaline slags are more sensitive to the influence of pH. The low buffer capacity of the silica-rich slags implies that application or disposal of untreated slag in acid environments (pH 4-6) should avoided. To optimize integration of slags in materials. it will be necessary to orient research towards less alkaline binders than classical OP cements. A concrete with low limestone content where the alkalinity in the porewater would have a less corrosive effect on the vitreous phases of slags would seem more appropriate.
机译:在回收行业中,通过Waelz工艺从电弧炉粉尘中回收锌会产生大量的炉渣。这种矿渣具有良好的机械性能,并且对于大多数硅质矿渣而言,具有很高的稳定性,可以通过在土木工程中全部或部分替代某些颗粒来使用。我们的研究(在由欧盟委员会DGXII共同资助的欧洲计划框架内)涉及几种类型的Waelz炉渣的理化和矿物学特征以及浸出行为。所使用的浸出测试是法规测试和浸出行为的特定表征测试。他们考虑了针对渣所预期的化合价方案的几个主要参数的影响(例如pH值,氧化还原电势,浸出液的化学性质,接触液体/固体的类型等)。在铅(锌溶液中强烈浸出),锌和砷释放的情况下,碱性浸出剂(石灰或NaOH)的化学性质的影响尤为重要。可以注意到ANC测试结果与受控pH测试结果之间的一致性。溶出性在很大程度上受溶液中pH的控制。碱渣对pH值的影响更为敏感。富含二氧化硅的炉渣的缓冲能力低,这意味着应避免在酸性环境(pH 4-6)中施用或处置未经处理的炉渣。优化材料中炉渣的整合。有必要将研究重点放在比传统OP水泥少碱性的粘结剂上。石灰石含量低的混凝土(孔隙水中的碱度对矿渣的玻璃相的腐蚀作用较小)似乎更合适。

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