Efficiency of sediment capping with magnetic iron/zirconium-modified zeolites to control phosphorus release from sediments
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1College of Marine Ecology and Environment,Shanghai Ocean University

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X52

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    Abstract:

    The performance of phosphate removal by magnetic iron/zirconium-modified zeolite (FeZrZeo) using batch experiments and the efficiency of sediment capping with FeZrZeo to control phosphorus (P) release from river sediments were tested using incubation experiments. The results showed that the as-prepared FeZrZeo exhibited a high phosphate adsorption capacity. P in river sediments could be released into the overlying water under natural and anoxic conditions. However, sediment capping with FeZrZeo can greatly reduce the releasing flux of SRP from the sediment to the overlying water, resulting in a very low level of SRP in the overlying water (0.007-0.031 mg/L). When FeZrZeo-based barrier layer was destroyed, the mixing of FeZrZeo with sediment not only led to the reduction of SRP concentration in the overlying water, but also resulted in the transformation of the mobile P (sum of the NH4Cl extractable P (NH4Cl-P) and Na2S2O4/NaHCO3 extractable P (BD-P)) to the more stable phosphorus such as the NaOH extractable P (NaOH-rP) and residual P (Res-P). Furthermore, the mixing of FeZrZeo with sediment led to the transformation of bioavailable P including anion resin extractable P (Resin-P), water soluble P (WSP), readily desorbable P (RDP), NaOH extractable P (AAP) and NaHCO3 extractable P (Olsen-P) to the non-bioavailable P in the sediment, resulting in the decrease in the P bioavaiability of the sedidment. Results of this study show that FeZrZeo is a promising capping material for the control of SRP release from river sediments.

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汲雨,奚秀清,詹艳慧,陈海洋,林建伟,陈璐,侯雨苇,李志强,李十盛,韩星雨.磁性铁锆改性沸石覆盖对河道底泥磷释放的控制效果[J].上海海洋大学学报,2019,28(2):267-276.
JI Yu, XI Xiuqing, ZHAN Yanhui, CHEN Haiyang, LIN Jianwei, CHEN Lu, HOU Yuwei, LI Zhiqiang, LI Shisheng, HAN Xingyu. Efficiency of sediment capping with magnetic iron/zirconium-modified zeolites to control phosphorus release from sediments[J]. Journal of Shanghai Ocean University,2019,28(2):267-276.

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History
  • Received:June 30,2018
  • Revised:September 28,2018
  • Adopted:January 16,2019
  • Online: March 27,2019
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