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Design and optimization of sustainable passive treatment systems for phosphogypsum leachates in an orphan disposal site

机译:孤儿处置现场磷酸磷酸渗滤液可持续无源处理系统的设计与优化

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摘要

The optimization of the dispersed alkaline substrate (DAS) technology was investigated to achieve the treatment of highly acidic and polluted effluents from a phosphogypsum pile in an orphan site of SW Spain. This phosphogypsum disposal area is located on the Tinto river marsh soils, where it acts as a source of pollution for the estuarine environment, releasing high concentrations of metal(loid)s and radionuclides, which degrade the surrounding waters. The methodology consists of flowing the leachates through columns loaded with a combination of a fine-grained alkaline reagent scattered in a non-reactive matrix to raise the water pH while decreasing the solubility of dissolved contaminants. Seven columns were built, one for each of the alkaline reagent used: limestone, barium carbonate, biomass ash, fly ash, MgO, Mg(OH)_2, and Ca(OH)_2. The Ca(OH)_2-DAS and MgO-DAS treatment systems showed the highest effectiveness, reaching near-total removal for PO4, F, Fe, Zn, Cu, Al, Cr, and U with initial reagent mass:treated volume ratios of 36.3 g/L and 7.57 g/L, respectively. Total As removal was only achieved in the Ca(OH)_2-DAS treatment. Phosphate precipitation was the main mechanism responsible for pollutants removal. Geochemical modeling using PHREEQC code and mineralogical evidence confirmed the precipitation of these minerals. This study forms the basis of an effective and environmentally sustainable treatment system for phosphogypsum leachates to reduce the impact of the fertilizer industry worldwide.
机译:研究了分散的碱性底物(DAS)技术的优化,实现了在SW西班牙的孤儿部位中的磷酸杆菌桩治疗高度酸性和污染的流出物。这种磷酸缺口处置区域位于TINTO河沼泽土壤上,它充当河口环境的污染源,释放高浓度的金属(潜能)和放射性核素,这降低了周围的水域。该方法包括通过装载的柱流动的柱塞流动,所述柱状碱性试剂的组合散射在非反应性基质中以升高水pH,同时降低溶解的污染物的溶解度。建造了七柱,其中一个用于每种碱性试剂:石灰石,碳酸钡,生物质灰,飞灰,MgO,Mg(OH)_2和Ca(OH)_2。 Ca(OH)_2-DAS和MgO-DAS处理系统显示出最高效果,达到PO4,F,Fe,Zn,Cu,Al,Cr和U具有初始试剂质量的近 - 总去除:处理的体积比36.3 g / l和7.57 g / l。只有在Ca(OH)_2-DAS处理中仅达到除去。磷酸盐沉淀是负责去除污染物的主要机制。使用Phreeqc码和矿物学证据的地球化学建模证实了这些矿物质的降水。本研究形成了磷酸缺口渗滤液有效和环境可持续的治疗系统的基础,以减少全球化肥工业的影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|111251.1-111251.10|共10页
  • 作者单位

    Department of Earth Sciences & Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' 21071 Huelva Spain;

    Department of Earth Sciences & Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' 21071 Huelva Spain;

    Department of Earth Sciences & Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' 21071 Huelva Spain;

    Department of Earth Sciences & Research Center on Natural Resources Health and the Environment University of Huelva Campus 'El Carmen' 21071 Huelva Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Highly polluted industrial waters; Dispersed alkaline substrate; Net acidity removal; eco-Friendly technology;

    机译:高度污染的工业水域;分散的碱性基材;净酸度去除;环保技术;

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