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Effects of the Chemical Structure, Surface, and Micropore Properties of Activated and Oxidized Black Carbon on the Sorption and Desorption of Phenanthrene

机译:活化和氧化黑碳的化学结构,表面和微孔特性对菲苯甲苯的吸附和解吸的影响

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摘要

The effects of the chemical structure, surface properties, and micropore of modified black carbon samples (BCs) on the sorption mechanism of hydrophobic organic contaminants (HOCs) are discussed. Activated and oxidized BCs were produced from a shale kerogen at 250-500 degrees C by chemical activation regents (KOH and ZnCl2) and then by oxidative regents (H2O2 and NaClO). The surface properties (water contact angel, Boehm titration, and cation exchange capacity, CEC), structural properties (advanced solid-state C-13 NMR), micropore properties (CO2 adsorption), mesopore properties (N-2 adsorption), and sorption and desorption properties of phenanthrene were obtained. The results showed that ZnCl2-activated BCs had higher basic surface groups, CEC values, aromatic carbon contents, micropore volumes, and adsorption volumes but exhibited lower acidic surface groups than the KOH-activated BCs did. Micropore modeling and sorption irreversibility indicated that the micropore filling was the main sorption mechanism of phenanthrene. In addition, ZnCl2 activated and NaClO oxidized BCs showed a nice regression equation between adsorption volumes and micropore volumes (CO2-V-0) as follows: Q(0)' = 0.495V(0) + 6.28(R-2 = 0.98, p 0.001). Moreover, the contents of nonprotonated aromatic carbon, micropore volumes, and micropore sizes are the critical factors to micropore filling mechanism of phenanthrene on BCs. The size of fused aromatic rings was estimated from the recoupled H-1-C-13 dipolar dephasing, and the BC structural models at temperatures ranging from 300 to 500 were proposed. This finding improves our understanding of the sorption mechanism of HOCs from the perspectives of chemical structure and micropore properties.
机译:讨论了改性黑碳样品(BCS)对疏水有机污染物(HOCS)的吸附机理的化学结构,表面性质和微孔的影响。通过化学活化型(KOH和ZnCl 2)在250-500℃下由Shale Kerogen(KOH和ZnCl 2),然后通过氧化级(H 2 O 2和NaClO)产生活性和氧化的BC。表面特性(水与天使,Boehm滴定和阳离子交换能力,CEC),结构性能(晚期固态C-13 NMR),微孔特性(CO2吸附),中孔特性(N-2吸附)和吸附获得菲的解吸性质。结果表明,ZnCl2活化的BCs具有较高的基本表面基团,CEC值,芳族碳含量,微孔体积和吸附体积,但表现出比KOH活化的BCS的低酸性表面组。微孔建模和吸附不可逆转性表明,微孔填充是菲的主要吸附机理。此外,ZnCl2活化和NaClO氧化BC在吸附体积和微孔体积(CO2-V-0)之间显示出良好的回归方程,如下:Q(0)'= 0.495V(0)+ 6.28(R-2 = 0.98, p <0.001)。此外,非普促芳族碳,微孔体积和微孔尺寸的含量是菲多勒灌注机理对BCS的关键因素。从循环的H-1-C-13偶极角化估计熔融芳环的尺寸,提出了300至500的温度下的BC结构模型。这一发现改善了我们从化学结构和微孔特性的角度来了解Hocs的吸附机制。

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  • 来源
    《Environmental Science & Technology》 |2019年第13期|7683-7693|共11页
  • 作者单位

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Organ Geochem Guangzhou 510640 Guangdong Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Organ Geochem Guangzhou 510640 Guangdong Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Organ Geochem Guangzhou 510640 Guangdong Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Organ Geochem Guangzhou 510640 Guangdong Peoples R China;

    Old Dominion Univ Dept Chem & Biochem Norfolk VA 23529 USA;

    Old Dominion Univ Dept Chem & Biochem Norfolk VA 23529 USA;

    Brandeis Univ Dept Chem Waltham MA 02453 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:36:55

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