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Removal of phosphorus from water by using volcanic ash soil (VAS): batch and column experiments

机译:使用火山灰土壤(VAS)去除水中的磷:分批和柱实验

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Using low-cost and naturally available materials is considered an optimal adsorbent for removing phosphorus (P) from water due to its simplicity and economic efficiency. This study examined the removal of P from water using volcanic ash soil (VAS) by batch and column experiments. The maximum adsorption capacity of P was 2.94 mg g(-1), estimated from the batch experiment according to a Langmuir isotherm. The column study showed a higher adsorption capacity of 5.57 mg g(-1). The breakthrough curve showed that influent water containing 2 mg L-1 P was completely purified by VAS within 1,230 pore volumes (PV). The breakthrough and saturation points of the curves were 3,100 PV and 14,875 PV, respectively. After an adsorption column was loaded with 20,508 PV, a regeneration procedure was developed to determine whether an ion exchange of P with chloride occurred or adsorbed P in the columns could be eluted. Approximately 20% of P was recovered from columns by desorption tests, regardless of NaCl solution or deionized water. Specific surface area and mineral concentrations are both important characteristics that improve the adsorption capacity of VAS. The present study suggests that VAS is a promising adsorbent to remove P in water.
机译:由于其简单性和经济效益,使用低成本和自然可得的材料被认为是从水中去除磷(P)的最佳吸附剂。这项研究通过分批和柱实验研究了使用火山灰土壤(VAS)从水中去除P的方法。 P的最大吸附容量为2.94 mg g(-1),根据Langmuir等温线从分批实验中估算。柱研究显示更高的吸附容量为5.57 mg g(-1)。突破曲线表明,含VAS 2 mg L-1 P的进水通过VAS在1,230孔体积(PV)内完全净化。曲线的穿透点和饱和点分别为3,100 PV和14,875 PV。吸附柱上装有20,508 PV后,制定了再生程序以确定P与氯离子交换是否发生或吸附柱中吸附的P是否可以洗脱。不论NaCl溶液或去离子水如何,都通过解吸测试从色谱柱中回收了约20%的P。比表面积和矿物质浓度都是提高VAS吸附能力的重要特征。本研究表明,VAS是一种有望去除水中P的吸附剂。

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