首页> 外文期刊>The Science of the Total Environment >Physicochemical properties and sorption capacities of sawdust-based biochars and commercial activated carbons towards ethoxylated alkylphenols and their phenolic metabolites in effluent wastewater from a textile district
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Physicochemical properties and sorption capacities of sawdust-based biochars and commercial activated carbons towards ethoxylated alkylphenols and their phenolic metabolites in effluent wastewater from a textile district

机译:木屑基生物炭和商业活性炭对纺织区废水中乙氧基化烷基酚及其酚代谢物的理化性质和吸附能力

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摘要

Three biochars were produced using sawdust from waste biomass, via a simple pyrolysis thermal conversion at 450, 650, and 850 ℃ (BC450, BC650, and BC850), without any activation process. These materials, together with vegetal and mineral commercial activated carbons (VAC and MAC), were characterized for their elemental composition, Brunauer-Emmett-Teller surface area, t-plot microporosity and Barrett-Joyner-Halenda mesoporosity. Moreover, iodine, phenol and methylene blue porosity indexes were measured. The materials were also evaluated for their pH of the point of zero charge, as well as near-surface chemical composition and surface functionality by means of X-ray photoelectron and Fourier-transform infrared spectroscopy. Ash content, water-extractable metals and polycyclic aromatic hydrocarbons (PAHs) were also determined. BC650 showed a much higher surface area (319 m~2 g~(-1)) compared to BC450 (102 m~2 g~(-1)), as well as an increase in aromatization and the residual presence of functional polar groups. BC850 exhibited a loss of polar and aromatic groups, with the dominance of graphitic carbon and the highest value of surface area (419 m~2 g~(-1)). Biochars comply with the EN 12915-1/2009 limits for metal and PAH release in water treatment. Biochars and MAC were tested using Langmuir and Freundlich isotherms for the sorption in real effluent wastewater of a mixture of 14 branched ethoxylated 4-t-octyl and 4-nonylphenols, as well as 4-t-octyl and 4-nonylphenol, the latter representing persistent, endocrine disrupting contaminants, widespread in the effluents from wastewater treatment plants and listed as priority/priority hazardous substances in the Directive 2013/39/EU. Biochars showed a lower sorption efficiency compared to MAC. The best performance was found for BC650 towards the alkylphenols (9-13 times less efficient than the MAC). Considering the lower market price of biochar compared to MAC (estimated as at least 16 times less expensive by a small market survey), the former can be considered more competitive than the latter.
机译:使用锯末从废弃的生物质中产生了三个生物炭,并通过简单的热解在450、650和850℃下热解(BC450,BC650和BC850),没有进行任何活化过程。这些材料以及植物和矿物商业活性炭(VAC和MAC)的元素组成,Brunauer-Emmett-Teller表面积,t曲线微孔率和Barrett-Joyner-Halenda介孔率均经过表征。此外,测量了碘,苯酚和亚甲基蓝的孔隙率指数。还通过X射线光电子和傅立叶变换红外光谱法对材料的零电荷点的pH值以及近表面化学成分和表面功能进行了评估。还测定了灰分含量,水可萃取金属和多环芳烃(PAHs)。 BC650的表面积(319 m〜2 g〜(-1))比BC450的表面积(102 m〜2 g〜(-1))高得多,芳香化作用的增加和功能性极性基团的残留。 BC850表现出极性和芳香族基团的丧失,石墨碳占优势,比表面积最高(419 m〜2 g〜(-1))。生物炭符合水处理中金属和PAH释放的EN 12915-1 / 2009限制。使用Langmuir和Freundlich等温线测试了生物炭和MAC,以分析14种支化乙氧基化4-叔辛基和4-壬基酚以及4-叔辛基和4-壬基酚的混合物在实际废水中的吸附持久的内分泌干扰污染物,广泛存在于废水处理厂的废水中,并在指令2013/39 / EU中列为优先/优先危险物质。与MAC相比,生物炭显示出较低的吸附效率。发现BC650对烷基酚的最佳性能(效率比MAC低9-13倍)。考虑到生物炭的市场价格低于MAC(据小规模市场调查估计至少便宜16倍),因此前者比后者更具竞争力。

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