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铁/铝共改性沸石对沉积物中磷释放的控制:效率、机制及沉积物中微生物群落的响应

Control of phosphorus release from sediment by iron/aluminum co-modified zeolite: efficiency, mechanism, and response of microbial communities in sediment.

作者信息

Zhou Jiayang, Lin Jianwei, Zhan Yanhui

机构信息

College of Oceanography and Ecological Science, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

Environ Sci Pollut Res Int. 2024 May;31(23):33708-33732. doi: 10.1007/s11356-024-33482-9. Epub 2024 Apr 30.

Abstract

The efficiency of iron/aluminum co-modified zeolite (FeAl-Z) covering and amendment for controlling the internal loading of phosphorus (P) from sediment to the overlying water (OW) and its controlling mechanism were explored. The response of the composition of sedimentary microbial communities in sediment and their function to the FeAl-Z capping and amendment was also examined. FeAl-Z showed good removal performance for phosphate in aqueous solution. The maximum phosphate adsorption quantity for FeAl-Z at pH 7 attained 11.2 mg P/g. The release of sediment endogenous phosphorus to OW can be successfully restrained by the FeAl-Z covering and amendment, and the suppression ability of FeAl-Z covering was stronger than that of FeAl-Z amendment. Under the capping or amendment condition, FeAl-Z can effectively inactivate the labile phosphorus measured by diffusion gradient in thin film (DGT-LP) in the overlying water and surface sediment. The added FeAl-Z transformed redox-sensitive phosphorus (BD-P) to metal oxide-bound phosphorus (NaOH-IP) and residual phosphorus (Res-P) in sediment, which increased the stability of inorganic phosphorus in the sediment. The passivation of soluble reactive phosphorus (SRP) and DGT-LP in the surface sediment by FeAl-Z significantly contributed to the inhibition of sediment endogenous phosphorus release to OW by the FeAl-Z capping, and the passivation of SRP, DGT-LP and mobile phosphorus in the surface sediment played a pivotal role in the control of sediment internal phosphorus release by the FeAl-Z amendment. The FeAl-Z amendment and capping did not increase the liberation risk of Fe from sediment, and the microorganisms in the sediments under the conditions of FeAl-Z amendment and covering still can perform good ecological functions. Results of this research demonstrate that FeAl-Z capping has high application potential in the control of phosphorus transfer from sediment to OW.

摘要

探讨了铁/铝共改性沸石(FeAl-Z)覆盖和改良对控制沉积物中磷(P)向上覆水(OW)的内源释放及其控制机制。还研究了沉积物中微生物群落组成及其功能对FeAl-Z覆盖和改良的响应。FeAl-Z对水溶液中的磷酸盐具有良好的去除性能。在pH值为7时,FeAl-Z对磷酸盐的最大吸附量达到11.2 mg P/g。FeAl-Z覆盖和改良能够成功抑制沉积物内源磷向上覆水的释放,且FeAl-Z覆盖的抑制能力强于FeAl-Z改良。在覆盖或改良条件下,FeAl-Z能有效使上覆水和表层沉积物中通过薄膜扩散梯度(DGT-LP)测定的活性磷失活。添加的FeAl-Z使沉积物中的氧化还原敏感磷(BD-P)转化为金属氧化物结合磷(NaOH-IP)和残余磷(Res-P),提高了沉积物中无机磷的稳定性。FeAl-Z对表层沉积物中可溶性活性磷(SRP)和DGT-LP的钝化作用显著有助于FeAl-Z覆盖抑制沉积物内源磷向上覆水的释放,而FeAl-Z改良对表层沉积物中SRP、DGT-LP和可移动磷的钝化作用在控制沉积物内源磷释放中起关键作用。FeAl-Z改良和覆盖不会增加沉积物中铁的释放风险,且FeAl-Z改良和覆盖条件下沉积物中的微生物仍能发挥良好的生态功能。本研究结果表明,FeAl-Z覆盖在控制沉积物向OW的磷转移方面具有很高的应用潜力。

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