Mechanistic insights into red mud, blast furnace slag, or metakaolin-assisted stabilization/solidification of arsenic-contaminated sediment

  • Wang, Lei
  • Chen, Liang
  • Tsang, Daniel C. W.
  • Zhou, Yaoyu
  • Rinklebe, Joerg
  • ... Ok, Yong Sik
  • 외 3명
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초록

Elevated level of arsenic (As) in marine sediment via deposition and accumulation presents long-term ecological risks. This study proposed a sustainable stabilization/solidification (S/S) of As-contaminated sediment via novel valorization of red mud waste, blast furnace slag and calcined clay mineral, which were selected to mitigate the increased leaching of As under alkaline environment of S/S treatment. Quantitative X-ray diffraction and thermogravimetric analyses illustrated that stable Ca-As complexes (e.g., Ca-5(AsO4)(3)OH) could be formed at the expense of Ca(OH)(2) consumption, which inevitably hindered the hydration process and S/S efficiency. The Si-29 nuclear magnetic resonance analysis revealed that incorporation of metakaolin for As immobilization resulted in a low degree of hydration and polymerization, whereas addition of red mud promoted Fe-As complexation and demonstrated excellent compatibility with As. Transmission electron microscopy and elemental mapping further confirmed the precipitation of crystalline Ca-As and amorphous Fe-As compounds. Therefore, red mud-incorporated S/S binder achieved the highest efficiency of As immobilization (99.9%), which proved to be applicable for both in-situ and ex-situ S/S of As-contaminated sediment. These results advance our mechanistic understanding for the design of green and sustainable remediation approach for effective As immobilization.

키워드

Green/sustainable remediationPotentially toxic elementArsenic leachabilityWaste valorization/recyclingHydration and polymerizationPrecipitation chemistryGREEN REMEDIATIONHEAVY-METALSFLY-ASHCEMENTSPECIATIONSOILPBSTABILIZATIONCLAYMICROSTRUCTURE
제목
Mechanistic insights into red mud, blast furnace slag, or metakaolin-assisted stabilization/solidification of arsenic-contaminated sediment
저자
Wang, LeiChen, LiangTsang, Daniel C. W.Zhou, YaoyuRinklebe, JoergSong, HocheolKwon, Eilhann E.Baek, KitaeOk, Yong Sik
DOI
10.1016/j.envint.2019.105247
발행일
2019-12
유형
Article
저널명
Environment International
133