首页> 外文期刊>Environmental Geology >Utilization of zirconium-modified granular zeolite as capping and mixing materials to suppress phosphorus release from sediment in landscape water body
【24h】

Utilization of zirconium-modified granular zeolite as capping and mixing materials to suppress phosphorus release from sediment in landscape water body

机译:利用锆改性的粒状沸石作为覆盖和混合材料来抑制磷从景观水体中的沉积物中释放

获取原文
获取原文并翻译 | 示例
           

摘要

A zirconium-modified granular zeolite (ZMGZ) was created and investigated for the suppression of the internal P loading in shallow landscape water bodies in this study. Results showed that the as-synthesized ZMGZ possessed high phosphate sorption capacity with a Langmuir maximum monolayer uptake capacity of 6.87 mg PO43-/g. Capping of landscape water body sediments with ZMGZ reduced the releasing rate of soluble reactive P (SRP) from the sediments into the overlying water, and it significantly reduced the SRP releasing rate under anoxic condition. Furthermore, the sediment capping decreased the pore water SRP concentration, and it was difficult for most of P trapped by the ZMGZ covering layer to be re-released into the water column. When the ZMGZ in the covering layer was mixed with the sediment, the ZMGZ became a sediment amendment. Mixing of landscape water body sediments with ZMGZ also resulted in the reduction of the SRP concentrations in the overlying and pore waters under the conditions of low and high dissolved oxygen, and it was also hard for most of P adsorbed by the added ZMGZ to be released back into the water column. Additionally, the addition of sediments with ZMGZ led to the decrease of the amounts of mobile and bioavailable P in the sediments. To sum up, we conclude that the capping/mixing combination method, which involves sediment capping with ZMGZ at first and then gradual mixing of ZMGZ with sediment via various natural disturbances (e.g., physical disturbance and bioturbation), is a very promising strategy for inhibiting the release of SRP from shallow landscape water body sediments into the overlying water.
机译:在本研究中,创建了锆改性的粒状沸石(ZMGZ)并进行了研究以抑制内部浅水景观水体中的P负载。结果表明,合成后的ZMGZ具有较高的磷酸盐吸附能力,Langmuir最大单层吸收能力为6.87 mg PO43- / g。用ZMGZ覆盖景观水体沉积物降低了可溶性反应物P(SRP)从沉积物中释放到上覆水中的速率,并显着降低了缺氧条件下SRP的释放速率。此外,沉积物的封盖降低了孔隙水中SRP的浓度,并且被ZMGZ覆盖层捕获的大部分P很难重新释放到水柱中。当覆盖层中的ZMGZ与沉积物混合时,ZMGZ成为沉积物改良剂。在低和高溶解氧的条件下,景观水体沉积物与ZMGZ的混合还导致上覆水和孔隙水中SRP浓度降低,而且添加的ZMGZ吸附的大部分P也很难释放回到水柱。另外,用ZMGZ添加沉积物导致沉积物中可移动和生物利用的P量减少。综上所述,我们得出结论:封盖/混合组合方法涉及先通过ZMGZ进行沉积物封盖,然后通过各种自然干扰(例如物理干扰和生物扰动)将ZMGZ与沉积物逐渐混合,这是一种非常有希望的抑制策略SRP从浅层景观水体沉积物中释放到上覆水中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号