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Stable and efficient demulsifier of functional fluorinated graphene for oil separation from emulsified oily wastewaters

机译:稳定高效的官能氟化石墨烯的破乳剂,用于从乳化油性废水中的油分离

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摘要

A series of functional fluorinated graphene (FG) materials including urea modified FG (UFG), alkali modified FG (AFG) and hydrazine hydrate modified FG (HFG) with different fluorine contents were prepared and introduced as demulsifiers for efficient separation of oil from oil-in-water (O/W) emulsion. Their demulsification performances were evaluated by measuring oil absorbance in separated water phase. Effects of demulsifier dosage, pH of wastewater and the NaCl concentration on demulsification efficiency have been studied detailedly. The demulsification mechanism was also explored. Results showed that demulsification efficiency increased with the decrease of fluorine content of functional FG and the oil concentration in the separated water phase decreased to the lowest value when the 600 mg/L HFG was added into the wastewater. In particular, the HFG has superior demulsification performances ranging from acidic to alkaline conditions. The strong pi-pi interaction and electrostatic attraction between HFG and oil droplets promote the separation of oil from oily wastewater. Besides, the HFG also presents high demulsification efficiency at different concentrations of NaCl wastewater solution, suggesting the excellent salt resistance. This work indicates that the HFG is a simple and highly efficient demulsifier to separate the oil from the oily wastewater in a wide range of pH levels. (C) 2018 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:制备了一系列功能氟化石墨烯(FG)材料,包括尿素改性的FG(UFG),碱改性的FG(AFG)和肼水合物改性的FG(HFG),具有不同的氟含量,并作为破乳剂引入,以便从油中有效地分离油 - 在水中(O / W)乳液。通过测量分离的水相中的吸油性来评估它们的破乳性能。详细研究了破乳剂剂量,废水pH的影响和NaCl浓度对破乳效率进行了详细研究。还探讨了破乳机制。结果表明,随着函数FG的氟含量降低,分离水中的油浓度降低到废水中的600mg / l HFG时,分离水中的油浓度降低。特别是,HFG具有优异的破乳性能,从酸性到碱性条件范围。 HFG和油滴之间的强PI-PI相互作用和静电吸引促进了油从油性废水中的分离。此外,HFG还以不同浓度的NaCl废水溶液提出了高破乳效率,表明优异的耐盐性。这项工作表明,HFG是一种简单且高效的破乳器,可以将油从油性废水中分离在广泛的pH水平。 (c)2018台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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