首页> 外文期刊>Resources, Conservation and Recycling >The recycling and reuse of steelmaking slags - A review
【24h】

The recycling and reuse of steelmaking slags - A review

机译:炼钢渣的回收和重用 - 综述

获取原文
获取原文并翻译 | 示例
           

摘要

Large volumes of slags are formed as by-products during the refinement of pig iron by basic oxygen steelmaking or electric arc furnace steelmaking. In order to lower the environmental impact of the steel industry and ensure its economic sustainability, there have been significant studies finding the ways to recycle by-products. The formation, composition and physical properties of steel making slag are discussed with regard to the problems associated with its reuse. The volume instability caused by free lime exposure to moisture means that the reuse of steelmaking slag is often limited as many potential applications, and the leaching behavior of steelmaking slag is important for environmental considerations. Land-based applications that have been demonstrated include replacing natural sand as aggregate in cement, which may be combined with the CO2 sequestration properties. Steel slag shows use as a liming material (when spread over acidic soils to help to raise the pH to a more neutral level) and to enhance the physical properties of soft soils. Potential benefits to the marine environment is due to high porosity and large surface area, making slags ideal for coral reef repair (e.g., overcoming coral bleaching) and replacement (e.g., artificial reef to promote growth of green marine plants and seagrass), as well as a growth promoter for seaweed and phytoplankton that are microscopic organisms that are an essential component of ecosystems in oceans around the world. The chemistry of steelmaking slag also makes it a contender for adsorption of H2S and metalloids from marine environments.
机译:通过基本氧气炼钢或电弧炉炼钢在猪铁改进过程中形成大量的渣。为了降低钢铁行业的环境影响,确保其经济可持续性,有重大研究发现副产品的回收方式。关于与其重用相关的问题,讨论了钢制造渣的形成,组成和物理性质。自由石灰暴露在水分中引起的体积不稳定性意味着炼钢渣的再利用通常有限于潜在的应用,炼钢渣的浸出行为对于环境考虑而言是重要的。已经证明的陆基应用包括将天然砂替换为水泥中的聚集体,其可以与CO 2螯合性能结合。钢渣显示用作雷丝材料(当酸化土壤涂抹时,有助于将pH提高到更较为中性水平)并增强软土的物理性质。对海洋环境的潜在益处是由于高孔隙度和大表面积,使矿渣成为珊瑚礁修复(例如,克服珊瑚漂白)和更换(例如,人工珊瑚礁,促进绿色海洋植物和海草的生长)作为海藻和浮游植物的生长促进剂,是作为世界各地海洋生态系统的重要组成部分的微观生物。炼钢渣的化学也使其成为吸附来自海洋环境的H2S和金属体的伴侣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号