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首页> 外文期刊>Environmental Engineering Science >High Temperature Co-pyrolysis Thermal Air Activation Enhances Biochar Adsorption of Herbicides from Surface Water
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High Temperature Co-pyrolysis Thermal Air Activation Enhances Biochar Adsorption of Herbicides from Surface Water

机译:高温共热解热空气活化增强了地表水中除草剂对生物炭的吸附

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摘要

Recent interest has arisen in the use of biochar as a low-cost adsorbent for control of organic micropollutants in water. However, compared with activated carbon (AC), biochar adsorption capacity is typically one to two orders of magnitude lower. This study reports batch mode adsorption of anionic (2,4-D, C-0 100 mu g/L) and neutral (simazine [SZN], C-0 1.5 mu g/L) herbicides from surface water containing dissolved organic matter at 4 mg/L total organic carbon concentration. Enhanced adsorption was observed by biochars generated from updraft gasifiers under conditions of simultaneous co-pyrolysis thermal air activation (CPTA). 2,4-D adsorption by = 850 degrees C CPTA biochars was more than 10 times greater on a mass basis compared with biochars generated from a conventional anoxic pyrolysis (CAP) reactor and was equivalent to AC reference adsorbents on a surface area normalized basis. Biochars generated at = 850 degrees C under CPTA conditions had similar micropore surface area to CAP biochars (similar to 330 m(2)/g) but about 2.5 times the mesopore surface area (similar to 110 m(2)/g CPTA, similar to 40 m(2)/g CAP), suggestive of increased pore accessibility generated by thermochemical widening of pores and/or removal of pyrolysis tars by CPTA. 2,4-D adsorption from surface water was shown to correlate strongly with biochar H:C molar ratio within but not between biochars grouped by CAP and CPTA generation conditions. Comparing adsorption of 2,4-D and SZN by biochars generated from CAP and CPTA conditions suggested that herbicide interaction with biochar surface functional groups through formation of charge-assisted H-bonds did not play a significant role in herbicide uptake from surface water.
机译:使用生物炭作为控制水中微量有机污染物的低成本吸附剂的最新兴趣已经出现。但是,与活性炭(AC)相比,生物炭的吸附能力通常低1-2个数量级。这项研究报告了在含有溶解性有机物的地表水中,阴离子型(2,4-D,C-0 100μg / L)和中性(辛嗪[SZN],C-0 1.5μg / L)的分批模式吸附。总有机碳浓度为4 mg / L。在同时共热解热空气活化(CPTA)的条件下,由上升气流式气化炉产生的生物炭观察到了增强的吸附。按质量计算,> = 850摄氏度的CPTA生物炭对2,4-D的吸附量是从常规缺氧热解(CAP)反应器产生的生物炭的10倍以上,在表面积标准化后相当于AC参考吸附剂。在CPTA条件下,在> = 850摄氏度下产生的生物炭具有与CAP生物炭相似的微孔表面积(类似于330 m(2)/ g),但是中孔表面积的2.5倍(类似于110 m(2)/ g CPTA,类似于40 m(2)/ g CAP),表明由CPTA扩大了热化学扩大孔隙和/或去除了热解焦油所产生的孔隙可及性。结果表明,地表水中的2,4-D吸附与CAP和CPTA生成条件分组的生物炭中的生物炭H:C摩尔比密切相关,但与之无关。比较由CAP和CPTA条件产生的生物炭对2,4-D和SZN的吸附表明,除草剂通过形成电荷辅助的H键与生物炭表面官能团的相互作用在从地表水吸收除草剂中没有显着作用。

著录项

  • 来源
    《Environmental Engineering Science》 |2019年第6期|710-723|共14页
  • 作者单位

    North Carolina State Univ, Dept Civil Construct & Environm Engn, 2501 Stinson Dr,208 Mann Hall, Raleigh, NC 27695 USA;

    North Carolina State Univ, Dept Civil Construct & Environm Engn, 2501 Stinson Dr,208 Mann Hall, Raleigh, NC 27695 USA;

    North Carolina State Univ, Dept Civil Construct & Environm Engn, 2501 Stinson Dr,208 Mann Hall, Raleigh, NC 27695 USA;

    Univ Colorado, Dept Civil Environm & Architectural Engn, Boulder, CO 80309 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2; 4-D; adsorption; aerobic pyrolysis; biochar; simazine;

    机译:2;4-D;吸附;有氧热解;生物炭;Simazine;

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