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Removal of bisphenol A from aqueous solution using modified fibric peat as a novel biosorbent

机译:使用改性纤维泥炭作为新型生物吸附剂从水溶液中去除双酚A

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摘要

Fibric peat was modified with hexadecyltrimethylammonium bromide (HTAB) and its efficiency as a biosorbent for the removal of endocrine disrupting chemical-bisphenol A (BPA) was investigated. The HTAB-modified peat displayed a faster initial BPA sorption and substantially higher capacity than the unmodified peat over a wide concentration range. Kinetic study showed that the sorption followed the pseudo-second-order kinetic model. The maximum sorption capacity of 31.40 mg g~(-1) was obtained at initial concentration of 45 mg L~(-1). The BPA sorption to HTAB-modified peat was better described by Freundlich isotherm, while Langmuir isotherm fits better to the BPA sorption against unmodified peat. Comparing with raw fibric peat, the HTAB-modified peat removed more BPA molecules and the desorption rate was much lower. It shows that the improved hydrophobic interactions are the dominant mechanism and the chemical modification of the peat surface greatly enhanced the sorption capacity toward organic compound dissolved in water.
机译:用十六烷基三甲基溴化铵(HTAB)改性纤维泥炭,并研究了其作为生物吸附剂去除内分泌干扰化学双酚A(BPA)的效率。在较宽的浓度范围内,与未改性的泥炭相比,HTAB改性的泥炭显示出更快的初始BPA吸附和显着更高的容量。动力学研究表明,吸附遵循伪二级动力学模型。初始浓度为45 mg L〜(-1)时,最大吸附量为31.40 mg g〜(-1)。 Freundlich等温线更好地描述了BPA对HTAB改性泥炭的吸附,而Langmuir等温线更适合BPA对未改性泥炭的吸附。与生纤维泥炭相比,HTAB改性泥炭去除了更多的BPA分子,并且解吸速率低得多。结果表明,改善的疏水性相互作用是主要机理,泥炭表面的化学改性大大增强了对溶于水中的有机化合物的吸附能力。

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