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首页> 外文期刊>Minerals Engineering >Productive use of steelmaking by-product in environmental applications - II: Leachate geochemistry, ecotoxicity and environmental radioactivity
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Productive use of steelmaking by-product in environmental applications - II: Leachate geochemistry, ecotoxicity and environmental radioactivity

机译:炼钢副产品在环境应用中的生产性使用-II:渗滤液地球化学,生态毒性和环境放射性

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Detailed laboratory studies have indicated that the HIsmelt steelmaking by-product has the ability to neutralise acidity and hence, may have potential application as an environmental amendment Prior to widespread environmental use, however, an ecotoxicological characterisation of the by-product leachate and an environmental radioactivity risk assessment are required. Ecotoxicity testing indicated that the HIsmelt steelmaking by-product softwater leachate, adjusted from its natural pH of 10.6-8.0 prior to use, was of low toxicity to Chlorella algae and the marine bacterium Vibrio fischeri, and not toxic to the cladoceran Ceriodaphnia dubia. Leachate metal concentrations in HIsmelt by-product were low. Relative to stringent health-based guidelines for Australian drinking water, the HIsmelt softwater leachate only exceeds the pH guideline of 6.5-8.5. The acidic toxicity characteristic leaching procedure (TCLP) HIsmelt leachate compares favourably with TCLP leachates from international steel-making by-products with low trace element concentrations reflecting low solid-phase concentrations. The HIsmelt steelmaking byproduct exhibited low to moderate U and Th decay chain radionuclide activities with an absorbed dose rate of 65 nGy/h. Given the low ecotoxicity, low leachate trace elements concentrations and acceptable radioactivity, the HIsmelt steelmaking by-product has potential applications as a construction material or as a soil amendment to ameliorate acidity. However, based on the results of the synthetic softwater leachate tests, it is likely that the HIsmelt steelmaking by-product will require mixing with other materials to reduce leachate pH prior to use as an environmental amendment.
机译:详细的实验室研究表明,HIsmelt炼钢副产品具有中和酸的能力,因此,在广泛用于环境之前,可能具有作为环境改良剂的潜在用途,但是,副产品浸出液的生态毒理学表征和环境放射性需要进行风险评估。生态毒性测试表明,HIsmelt炼钢副产品软水渗滤液在使用前从其自然pH值10.6-8.0调整,对小球藻藻和海洋细菌费氏弧菌毒性低,并且对锁骨角斑病Ceraodaphnia dubia没有毒性。 HIsmelt副产物中的渗滤液金属浓度较低。相对于严格的基于健康的澳大利亚饮用水准则,HIsmelt软水渗滤液仅超过pH准则6.5-8.5。酸性毒性特征浸出程序(TCLP)HIsmelt浸出液可与国际炼钢副产品中的TCLP浸出液相比,后者的痕量元素浓度低,反映出低的固相浓度。 HIsmelt炼钢副产品表现出低至中等的U和Th衰变链放射性核素活性,吸收剂量率为65 nGy / h。鉴于低生态毒性,低沥出液中的微量元素浓度和可接受的放射性,HIsmelt炼钢副产品具有潜在的用途,可作为建筑材料或土壤改良剂来改善酸度。但是,基于合成的软水渗滤液测试结果,HIsmelt炼钢副产品可能需要与其他材料混合以降低渗滤液的pH值,然后才能用作环境改良剂。

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