Carnegie Mellon University, Pittsburgh, PA, 15213, United States; Center for Environmental Implications of Nanotechnology, Pittsburgh, PA, 15213, United States.
Chevron Energy Technology Company, Richmond, CA, 94802, United States.
Water Res. 2019 Jun 15;157:600-609. doi: 10.1016/j.watres.2019.04.006. Epub 2019 Apr 9.
Mercury (Hg) speciation can affect its removal efficiency by adsorbents. This study assessed the removal of dissolved inorganic Hg(II) species (Hg(II)), β-HgS nanoparticles (HgS NP), and Hg complexed with dissolved organic matter (Hg-DOM) by three sorbents: activated carbon (AC), sulfur-impregnated activated carbon (SAC), and organoclay (OC). The effect of ionic composition, solution ionic strength, and natural organic matter (NOM) concentration on the removal of each Hg species was also evaluated. The three adsorbents were all effective in removing Hg(II), Hg-DOM, and HgS NPs. Increasing ionic strength decreased the removal of Hg(II)* species due to the formation of ionic Hg species with lower affinity for the sorbents. Added NOM decreased the removal of Hg(II)* and HgS NPs by all sorbents with the OC sorbent being most susceptible to NOM fouling. On a surface area-normalized basis, the OC removed all types of Hg species better than the AC and SAC samples. Moreover, adsorbed Hg-DOM transformed to a β-HgS phase on the OC, but not for AC and SAC. These studies indicate that both Hg speciation and the water quality parameters need to be considered when designing sorbent-based emission controls to meet Hg removal targets.
汞(Hg)的形态会影响其被吸附剂去除的效率。本研究评估了三种吸附剂(活性炭(AC)、硫浸渍活性炭(SAC)和有机粘土(OC))对溶解态无机汞(Hg(II))、β-HgS 纳米颗粒(HgS NP)和与溶解态有机物(Hg-DOM)络合的汞的去除效果。还评估了离子组成、溶液离子强度和天然有机物(NOM)浓度对每种 Hg 形态去除的影响。三种吸附剂都能有效去除 Hg(II)、Hg-DOM 和 HgS NPs。增加离子强度会降低 Hg(II)* 物种的去除率,因为形成了与吸附剂亲和力较低的离子态 Hg 物种。添加 NOM 会降低所有吸附剂对 Hg(II)*和 HgS NPs 的去除率,而 OC 对 NOM 污染最敏感。基于比表面积归一化,OC 对所有类型的 Hg 物种的去除效果均优于 AC 和 SAC 样品。此外,吸附的 Hg-DOM 在 OC 上转化为 β-HgS 相,但在 AC 和 SAC 上则没有。这些研究表明,在设计基于吸附剂的排放控制以达到 Hg 去除目标时,需要考虑 Hg 的形态和水质参数。