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首页> 外文期刊>Chemical engineering journal >Phosphorus sorption and supply from eutrophic lake sediment amended with thermally-treated calcium-rich attapulgite and a safety evaluation
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Phosphorus sorption and supply from eutrophic lake sediment amended with thermally-treated calcium-rich attapulgite and a safety evaluation

机译:用富钙凹凸棒土热处理过的富营养化湖泊沉积物对磷的吸附和供应及其安全性评估

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Modified clays are being increasingly used as P-inactivation agents for lake eutrophic control. However, the interaction of P with these material amended sediments still remain unclear. This study investigates the P sorption and supply from the thermally treated calcium-rich attapulgite amended eutrophic lake sediments as well as the ecological safety of material addition. The results indicated that P sorption on material amended sediment can be well fitted by a modified Langmuir model. Material addition can greatly enhance the P sorption capacity of lake sediment and lower the zero equilibrium P concentration (EPC0), which can turn lake sediment from a source to a pool. P sorption on raw and material amended sediment generally decreases with an increase of the water pH value. But material amended sediment still can adsorb a large amount of P even in very alkaline conditions resulting from algal blooms. Furthermore, P sorption on amended lake sediment was less influenced by NO3- and HCO3- than by SO42- to a moderate degree and by SiO3- to a much larger degree. The results of diffusive gradients in thin films (DGT) measurement indicated the ability of P supply from lake sediment was largely inhibited by material addition. This was due to sediment mobile P had been transformed into stable Ca-P. A toxicity study indicated that material additions can increase pH value in lake sediment and can cause a toxic effect on benthic organisms when a large addition of material is involved, but this would be greatly attenuated in the field. The results of this study indicated that thermally treated calcium-rich attapulgite has the potential to be used as a P-inactivation agent for lake eutrophication control. (C) 2015 Elsevier B.V. All rights reserved.
机译:改性粘土正越来越多地用作湖泊富营养化控制的P灭活剂。然而,磷与这些物质修正沉积物的相互作用仍然不清楚。本研究调查了经过热处理的富含钙的凹凸棒石对富营养化湖泊沉积物的磷吸收和供应以及添加材料的生态安全性。结果表明,修改后的Langmuir模型可以很好地拟合P在材料修正沉积物上的吸附。添加材料可以大大提高湖泊沉积物对磷的吸附能力,并降低零平衡磷浓度(EPC0),这可以将湖泊沉积物从源头转变为水池。通常,随着水pH值的增加,对原料和原料修正沉积物的P吸附会降低。但是,即使在藻华引起的非常碱性的条件下,经过修正的沉积物仍然可以吸附大量的P。此外,在一定程度上,经修正的湖泊沉积物上的P吸附受NO3-和HCO3-的影响要小于SO42-和受SiO3-的影响。薄膜中的扩散梯度(DGT)测量结果表明,从湖底沉积物中供应磷的能力在很大程度上受到材料添加的抑制。这是由于沉积物中的可移动磷已转化为稳定的Ca-P。一项毒性研究表明,当涉及大量物质添加时,物质添加可增加湖泊沉积物中的pH值,并可能对底栖生物产生毒性作用,但在野外会大大减弱。这项研究的结果表明,经过热处理的富含钙的凹凸棒石有潜力用作湖泊富营养化控制的P灭活剂。 (C)2015 Elsevier B.V.保留所有权利。

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