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首页> 外文期刊>Environmental Science and Pollution Research >Assessment of sediment capping with zirconium-modified bentonite to intercept phosphorus release from sediments
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Assessment of sediment capping with zirconium-modified bentonite to intercept phosphorus release from sediments

机译:用锆改性膨润土评估沉积物覆盖沉积物从沉积物中拦截磷释放

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摘要

Three different types of zirconium-modified bentonites (ZrMBs) including zirconium-modified original bentonite (ZrMOB), zirconium-modified magnesium-pretreated bentonite (ZrMMgB), and zirconium-modified calcium-pretreated bentonite (ZrMCaB) were synthesized and used as active covering materials to suppress the release of phosphorus (P) from sediments. To assess the covering efficiency of ZrMBs to inhibit P release from sediments, we examined the impact of ZrMB covering layer on P mobilization in sediments at different depths as well as the release of P through the interface between sediment and overlying water (SWI) by use of simulating P release control experiments and diffusive gradients in thin films (DGT) technology. The results showed that the amount of soluble reactive P (SRP) in the overlying water greatly decreased after covering with ZrMBs. Moreover, both pore water SRP and DGT-liable P (DGT-P) in the top sediments decreased after capping with ZrMBs. An obvious stratification of DGT-P was observed along the vertical direction after covering with ZrMBs, and static and active layers were found in the top sediment and in the lower sediment directly below the static layer, respectively. Furthermore, ZrMB covering led to the change of P species from easily released P to relatively or very stable P, making P in the top sediment more stable compared to that without ZrMB covering. Besides, an overwhelming majority of P immobilized by ZrMBs is hard to be re-released into the water column in a common environment. Overall, the above results demonstrate that sediment covering with ZrMBs could effectively prevent the transport of SRP from sediments into the overlying water through the SWI, and the control of P transport into the overlying water by ZrMB covering could be mostly due to the immobilization of pore water SRP, DGT-P, and mobile P in the top sediment by ZrMBs.
机译:三种不同类型的锆改性膨润土(ZrMBS)包括锆改性的原始膨润土(ZrmoB),锆改性的镁预处理膨润土(ZrmMGB)和锆改性的钙预处理膨润土(Zrmcab)被合成并用作主动覆盖物抑制沉积物中磷(P)释放的材料。评估ZRMBS的覆盖效率以抑制沉积物的P释放,我们检查了ZRMB覆盖层对不同深度的沉积物中P动员的影响以及通过使用的沉积物和覆盖水(SWI)之间的P释放P薄膜(DGT)技术模拟P释放控制实验和扩散梯度。结果表明,在用ZrMBS覆盖后,上覆水中的可溶性反应性P(SRP)的量大大降低。此外,在用ZrMBS封顶后,顶部沉积物中的孔水SRP和DGT-易易用的P(DGT-P)降低。沿着ZrMBS覆盖后沿垂直方向观察到DGT-P的明显分层,并且在顶部沉积物中发现静态和有源层,并分别在静态层下方直接在下沉的下沉。此外,ZrMB覆盖引导到P物种的变化从易于释放的P释放到相对或非常稳定的P,与没有ZRMB覆盖的情况相比,在顶部沉积物中制造P更稳定。此外,ZRMBS固定的压倒性大部分P难以在普通环境中重新释放到水柱中。总的来说,上述结果表明,用ZRMBS覆盖沉积物可以有效地通过SWI将SRP从沉积物中的SRP传输到覆盖物中,并且通过ZRMB覆盖物的P传送到上覆水的控制可能主要是由于孔的固定性ZRMBS在顶部沉积物中的水SRP,DGT-P和移动P.

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