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Impact of Biomass Sources on Acoustic-Based Chemical Functionalization of Biochars for Improved CO_2 Adsorption

机译:生物质源对改善CO_2吸附的生物脉基的基于声学官能化的影响

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摘要

The present study investigates the impact of biomass origin on the properties of biochar and its interaction with different treatment conditions, CO2 adsorption, and regeneration ability. The biochars were synthesized from eight biomasses-herbaceous (miscanthus and switchgrass), agro-industrial (corn stover and sugarcane bagasse), and crop residues (sorghum, wheat straw, rice straw, and rice husk)-and were subjected to three different treatment conditions: (I) acoustic treatment using lowfrequency ultrasound, (II) amination using the penta-amine, and (III) integrated sono-chemical activation. Adsorption studies revealed that sono-amination increased adsorption capacities up to 2-2.5 times that of physical or chemical activation techniques alone, with the maximum improvements for herbaceous and agro-industrial residues over crop residues due to their large specific surface areas and high carbon and low ash contents. Accordingly, miscanthus with increased nitrogen content after sono-amination (7.5 times that of raw miscanthus biochar) showed the highest adsorption capacity compared to any other biochars. The regeneration studies that were conducted on all of the eight ultrasono-aminated samples showed 68% (crop residues) to 76% (herbaceous and agro-industrials) retainment of the initial adsorption capacities after 15 cycles.
机译:本研究研究了生物质来源对生物炭性能的影响及其与不同治疗条件,CO 2吸附和再生能力的相互作用。生物脉基由八个生物量 - 草本(Miscanthus和Switchgrass)合成,农业工业(玉米秸秆和甘蔗甘蔗),以及作物残留物(高粱,小麦秸秆,稻草和稻壳) - 以及进行三种不同的治疗方法条件:(i)使用低频率超声,(ii)使用Penta-胺的胺化和(iii)综合超声化学活化的声学处理。吸附研究表明,Sono胺化的吸附能力增加了单独的物理或化学活化技术的2-2.5倍,由于其大的特定表面积和高碳以及高碳以及高碳而过度的作物残留物的最大改善低灰分内容。因此,与任何其他Biochar相比,Sono-almination后的氮含量增加的Miscanthus含有增加的氮含量(7.5倍),其吸附能力最高。在所有八个超阳性胺化样品中进行的再生研究显示68%(农作物残留物)至76%(草本和农业工业)在15个循环后保持初始吸附能力。

著录项

  • 来源
    《Energy & fuels》 |2020年第7期|8608-8627|共20页
  • 作者单位

    Univ Mississippi Dept Chem Engn Sch Engn University MS 38677 USA;

    Univ Mississippi Dept Chem Engn Sch Engn University MS 38677 USA;

    Univ Mississippi Dept Chem Engn Sch Engn University MS 38677 USA;

    Univ Mississippi Dept Chem & Biochem University MS 38677 USA;

    Univ Mississippi Dept Chem & Biochem University MS 38677 USA;

    Natl Ctr Nat Prod University MS 38677 USA;

    Univ Mississippi Dept Chem & Biochem University MS 38677 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
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