首页> 外文期刊>The Science of the Total Environment >Novel, recyclable active capping systems using fabric-wrapped zirconium-modified magnetite/bentonite composite for sedimentary phosphorus release control
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Novel, recyclable active capping systems using fabric-wrapped zirconium-modified magnetite/bentonite composite for sedimentary phosphorus release control

机译:用于沉积磷释放控制的织物包裹锆改性磁铁矿/膨润土复合材料的新型,可回收的活性封端系统

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摘要

A zirconium-modified magnetite/bentonite composite (M-ZrFeBT) was synthesized, characterized and combined with water-permeable fabric to construct novel, recyclable active capping systems for sedimentary phosphorus (P) release control. Three fabric-wrapped M-ZrFeBT capping devices with different shapes were designed, i.e., CAP-1, CAP-2 and CAP-3, and they are disc-shaped, cuboid-shaped and spindle-shaped capping devices, respectively. The behavior and mechanism for phosphate adsorption onto M-ZrFeBT was studied. The impact of CAP-1, CAP-2 and CAP-3 capping on the mobilization of P in sediments was investigated. The results showed that M-ZrFeBT possessed good phosphate adsorption ability, with a largest monolayer adsorption capacity of 8.02 mg P/g. The replacement of Fe/Zr bound hydroxyl groups with phosphate through ligand-exchange reactions to generate the inner-sphere Fe-O-P and Zr-O-P bonding played a key part in the uptake of phosphate from water by M-ZrFeBT. Sediment capping with fabric-wrapped M-ZrFeBT not only brought about a significant decline in the concentrations of soluble reactive P (SRP) and DGT (diffusive gradient in thin films)-labile P (LP_(DGT)) in the overlying water, but also gave rise to the diminished SRP and LP_(DGT) concentrations in the upper sediment. Most (96.5%-98.2%) of P bound by the M-ZrFeBT in the capping layers was in the form of NaOH extractable inorganic P, HCl-extractable P and residual P, which were considered to be hard to be released back into the water column under common pH and oxygen-deficient conditions. The reduction of pore water SRP and LP_(DGT) in the upper sediment layer induced by the adsorption of SRP on the M-ZrFeBT-based capping layer played a key part in the interception of SRP liberation from the sediment solid into the overlying water. Results indicate that fabric-wrapped M-ZrFeBT capping is promising for controlling the internal P loading from sediments in shallow freshwater bodies.
机译:合成,其特征和结合渗透性织物,与耐水织物合成,结合耐水织物,以构建用于沉积磷(P)释放对照的新型,可回收的活性封端系统的锆 - 改性磁铁矿复合材料(M-ZRFEBT)。设计了具有不同形状的三个织物包装的M-ZrFeBT封盖装置,即CAP-1,CAP-2和CAP-3,它们是盘形,长方体形状和主轴形封端装置。研究了磷酸盐吸附在M-ZRFEBT上的行为和机制。研究了CAP-1,CAP-2和CAP-3封盖对沉积物中P的动员的影响。结果表明,M-ZRFEBT具有良好的磷酸盐吸附能力,最大的单层吸附能力为8.02mg p / g。用磷酸盐通过配体交换反应替换Fe / Zr结合的羟基,以产生内部球形Fe-O-P和Zr-O-P键合在M-ZrFeBT通过水的吸收中起关键部分。用织物包装的M-ZRFEBT沉积物封盖不仅使覆盖水中可溶性反应性P(SRP)和DGT(薄膜中的扩散梯度)的浓度显着下降,但是覆盖物中的粘合剂P(LP_(DGT)),但是还产生了上层沉积物中的降低的SRP和LP_(DGT)浓度。大多数(96.5%-98.2%)由封端层中的M-ZRFEBT的P的P是NaOH可提取的无机P,HCl可提取的P和残留P的形式,这被认为是难以释放到的水柱在常见的pH和缺氧条件下。通过在M-ZRFEBT的封端层上吸附SRP的吸附诱导的上沉积物中的孔水SRP和LP_(DGT)的还原在从沉积物固体中截取的SRP释放到覆盖水中的关键部分。结果表明,织物包装的M-ZRFEBT封装是对控制浅淡水体中沉积物的内部P载荷的承诺。

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