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首页> 外文期刊>Transactions of the ASABE >Enhancement of heavy metals retention in sandy soil by amendment with fly ash.
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Enhancement of heavy metals retention in sandy soil by amendment with fly ash.

机译:通过粉煤灰改良提高重金属在沙质土壤中的保留。

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Stormwater runoff from urban areas can transport a significant load of heavy metals. Thus, the metals retention capacity of filter media in stormwater infiltration systems, such as bioretention cells, is an important consideration. Batch sorption and column leaching experiments were conducted to determine the sorption of copper, lead, and zinc in three soils (Dougherty sand, Teller loam, and Slaughterville loam), fly ash, and fly ash/sand mixtures. Dougherty sand had the lowest heavy metals retention, while fly ash had the highest. The addition of fly ash to Dougherty sand greatly increased its heavy metals retention. Heavy metals transport in bioretention cells was modelled using a linear equilibrium, convection-dispersion transport model with parameters determined from laboratory columns. The modelling results indicated that a treatment layer of filter media with l m depth will remove heavy metals from stormwater for only 10 years if pure sand is used, but metals removal will continue for over 900 years if a fly ash/sand mixture is used.
机译:来自市区的雨水径流可以运输大量的重金属。因此,雨水渗透系统(例如生物保留池)中过滤介质的金属保留能力是一个重要的考虑因素。进行了分批吸附和柱浸实验,以确定三种土壤(Dougherty沙,Teller沃土和Slaughterville沃土),粉煤灰和粉煤灰/砂混合物中铜,铅和锌的吸附。硬砂的重金属保留量最低,而粉煤灰的重金属保留量最高。将粉煤灰添加到Dougherty砂中大大提高了其重金属保留能力。使用线性平衡,对流-分散传输模型对生物保留池中的重金属迁移进行建模,并从实验室色谱柱确定参数。建模结果表明,如果使用纯砂,则深度为1 m的过滤介质处理层将仅从雨水中去除重金属10年,但如果使用粉煤灰/沙土混合物,则金属去除将持续900年以上。

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