Department of Geography, Institute of Ecology and Earth Sciences, University of Tartu, 46 Vanemuise St., Tartu 51014, Estonia.
Water Res. 2010 Oct;44(18):5232-9. doi: 10.1016/j.watres.2010.06.044. Epub 2010 Jun 23.
We studied the phosphorus (P) binding capacity of Ca-rich alkaline filter material - hydrated oil shale ash (i.e. hydrated ash) in two onsite pilot-scale experiments (with subsurface flow filters) in Estonia: one using pre-treated municipal wastewater with total phosphorus (TP) concentration of 0.13-17.0 mg L(-1) over a period of 6 months, another using pre-treated landfill leachate (median TP 3.4 mg L(-1)) for a total of 12 months. The results show efficient P removal (median removal of phosphates 99%) in horizontal flow (HF) filters at both sites regardless of variable concentrations of several inhibitors. The P removal efficiency of the hydrated ash increases with increasing P loading, suggesting direct precipitation of Ca-phosphate phases rather than an adsorption mechanism. Changes in the composition of the hydrated ash suggest a significant increase in P concentration in all filters (e.g. from 489.5 mg kg(-1) in initial ash to 664.9 mg kg(-1) in the HF filter after one year in operation), whereas almost all TP was removed from the inflow leachate (R(2) = 0.99). Efficiency was high throughout the experiments (median outflow from HF hydrated ash filters 0.05-0.50 mg L(-1)), and P accumulation did not show any signs of saturation.
我们在爱沙尼亚的两个现场中试规模实验(采用地下流过滤)中研究了富含钙的碱性过滤材料-水合油页岩灰(即水合灰)的磷(P)结合能力:一个实验使用预处理的城市污水,其总磷(TP)浓度为 0.13-17.0mg/L,持续了 6 个月;另一个实验使用预处理的垃圾渗滤液(中位数 TP 为 3.4mg/L),共 12 个月。结果表明,无论几种抑制剂的浓度如何变化,水平流(HF)过滤器均能有效地去除磷(磷酸盐的中位数去除率为 99%)。水合灰的磷去除效率随着磷负荷的增加而增加,这表明是直接沉淀出钙磷酸盐相,而不是吸附机制。水合灰组成的变化表明所有过滤器中的磷浓度显著增加(例如,初始灰分中的磷浓度为 489.5mg/kg,运行一年后的 HF 过滤器中的磷浓度为 664.9mg/kg),而几乎所有的 TP 都从渗滤液中去除(R(2) = 0.99)。整个实验过程中效率都很高(HF 水合灰过滤器的中值出流为 0.05-0.50mg/L),且磷积累没有显示出任何饱和的迹象。