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Mineralization of perfluorooctanesulfonate (PFOS) and perfluorodecanoate (PFDA) from aqueous solution by porous hexagonal boron nitride : adsorption followed by simultaneous thermal decomposition and regeneration

机译:多孔六方氮化硼从水溶液中矿化全氟辛烷磺酸盐(PFOS)和全氟癸酸盐(PFDA):吸附,然后同时进行热分解和再生

摘要

Poly- and perfluoroalkyl substances (PFASs) are of global concern due to their toxicity, high persistency, bioaccumulation, and worldwide occurrence. Boron nitride (BN), consisting of light elements and bearing excellent thermal stability, has shown great potential in wastewater purification as a readily-recyclable sorbent. In this study, porous hexagonal BN nanosheets (h-BNs) were synthesized and for the first time their sorption capacities toward perfluorooctanesulfonate (PFOS) and perfluorodecanoate (PFDA) (two representative PFASs) were evaluated under various solution compositions. The h-BNs used after sorption were regenerated by calcining at 600 °C in air for 20 min. The h-BNs synthesized were found to have fast sorption kinetics for both PFOS and PFDA, and the sorption processes fitted well with the Freundlich model and pseudo-second-order kinetics. Under the conditions of 50 mg L?1 PFDA or PFOS, 0.2 g L?1 h-BNs, and pH 6.0, sorption capacities of ?0.72 mg m?2 and ?0.45 mg m?2 were achieved for PFDA and PFOS, respectively. The effects of H+ and Ca2+ showed that electrostatic interactions were responsible for the sorption. The reutilization experiments revealed that the h-BNs had a persistent sorption capacity after three cycles. To reduce the production of fluorine-containing gases, calcium hydroxide was used as a calcination additive and the fluorine-fixing product calcium fluoride was successfully detected. The results suggest that h-BN sorption may be a promising approach for the removal of PFASs from an aqueous solution.
机译:聚和全氟烷基物质(PFAS)由于其毒性,高持久性,生物蓄积性和世界范围内的存在而备受全球关注。氮化硼(BN)由轻元素组成并具有出色的热稳定性,作为一种易于回收的吸附剂,在废水净化中显示出巨大潜力。在这项研究中,合成了多孔六角形BN纳米片(h-BNs),并首次在各种溶液组成下评估了它们对全氟辛烷磺酸盐(PFOS)和全氟癸酸酯(PFDA)(两种代表性PFAS)的吸附能力。吸附后使用的h-BN通过在600°C的空气中煅烧20分钟来再生。发现合成的h-BNs对PFOS和PFDA均具有快速的吸附动力学,并且吸附过程与Freundlich模型和拟二级动力学非常吻合。在50 mg L?1 PFDA或PFOS,0.2 g L?1 h-BNs和pH 6.0的条件下,PFDA和PFOS的吸附容量分别为?0.72 mg m?2和?0.45 mg m?2。 。 H +和Ca2 +的影响表明静电相互作用是吸附的原因。再利用实验表明,h-BNs在三个循环后具有持久的吸附能力。为了减少含氟气体的产生,使用氢氧化钙作为煅烧添加剂,并且成功检测到了固氟产物氟化钙。结果表明,h-BN吸附可能是从水溶液中去除PFAS的有前途的方法。

著录项

  • 作者

    Feng Y; Zhou Y; Lee PH; Shih K;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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