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Sustainable gasification biochar as a high efficiency adsorbent for CO_2 capture: A facile method to designer biochar fabrication

机译:可持续的气化生物炭作为用于CO_2捕获的高效吸附剂:设计生物炭的简便方法

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摘要

Biochars can be a potential means of CO2 capture if designed with hierarchical structures and suitable surface properties. Objective of this research was to assess the effectiveness of KOH activation and a combination of KOH and CO2 activation for enhancing the CO2 adsorption capacity of gasification biochar. Biochars were produced with either 100% wood chips (W) or a mixture of 70% wood chips and 30% chicken manure (WCM) through gasification, and then activated using either 1 M KOH (sample label appended with "K") or 1 M KOH and 500 mL CO2 min(-1) at 850 degrees C (sample label appended with "KC"). The pristine and activated biochars were evaluated in terms of physicochemical properties, CO2 adsorption capacity at 25 degrees C, adsorption kinetics, and regeneration ability. The WCMK biochar exhibited the highest CO2 adsorption capacity (2.92 mol/kg) with highest surface area (1408 m(2)/g), micropore area (690.18 m(2)/g), and micropore volume (0.36 cm(3)/g). WKC and WK showed comparable CO2 adsorptions, both of which were lower than that of WCMK. Both WCMK and WKC showed considerable selectivity for CO2 over N-2, fast adsorption and excellent regeneration abilities over 10 consecutive adsorption-desorption cycles. Activation of biochar, either with KOH or KOH thorn CO2, enhanced its CO2 adsorption capacity due to an increase in surface area and microporosity, irrespective of the feedstock type. However, hydrophobicity, and aromaticity of biochar and presence of hetero atoms (N and S) also positively influenced CO2 adsorption capacity of biochar. Both KOH and KOH thorn CO2 activation will be promising options for enhancing CO2 adsorption capacity of pristine biochar irrespective of the feedstock type.
机译:如果采用分层结构和合适的表面特性进行设计,生物炭可能是捕获二氧化碳的潜在手段。这项研究的目的是评估KOH活化以及KOH和CO2活化相结合对增强气化生物炭的CO2吸附能力的有效性。生物炭是通过气化用100%木屑(W)或70%木屑和30%鸡粪(WCM)的混合物生产的,然后用1 M KOH(带有“ K”的样品标签)或1激活。在850摄氏度下M KOH和500 mL CO2 min(-1)(样品标签附加“ KC”)。根据理化性质,25℃下的CO 2吸附能力,吸附动力学和再生能力评估了原始的和活化的生物炭。 WCMK生物炭显示出最高的CO2吸附容量(2.92 mol / kg),最高的表面积(1408 m(2)/ g),微孔面积(690.18 m(2)/ g)和微孔体积(0.36 cm(3)) /G)。 WKC和WK表现出可比的CO2吸附,两者均低于WCMK。 WCMK和WKC在N-2上对CO2的选择性都很高,在10个连续的吸附-解吸循环中均具有快速吸附和出色的再生能力。不论原料类型如何,由于表面积和微孔率的增加,无论是用KOH还是KOH刺入的CO2活化生物炭,均可提高其对CO2的吸附能力。但是,生物炭的疏水性和芳香性以及杂原子(N和S)的存在也对生物炭的CO2吸附能力产生了积极影响。无论原料类型如何,KOH和KOH刺刺的CO2活化都是增强原始生物炭的CO2吸附能力的有前途的选择。

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  • 来源
    《Renewable & Sustainable Energy Reviews》 |2020年第5期|109785.1-109785.8|共8页
  • 作者

  • 作者单位

    Korea Univ Korea Biochar Res Ctr APRU Sustainable Waste Management Seoul 02841 South Korea|Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea|Coconut Res Inst Soils & Plant Nutr Div Lunuwila 61150 Sri Lanka;

    Korea Univ Dept Chem & Biol Engn Seoul 02841 South Korea;

    Korea Univ Korea Biochar Res Ctr APRU Sustainable Waste Management Seoul 02841 South Korea|Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea;

    Korea Univ Korea Biochar Res Ctr APRU Sustainable Waste Management Seoul 02841 South Korea|Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea|Hong Kong Polytech Univ Dept Civil & Environm Engn Hung Hom Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Civil & Environm Engn Hung Hom Hong Kong Peoples R China;

    Natl Univ Singapore Dept Chem & Biomol Engn Singapore 117576 Singapore;

    Natl Univ Singapore Sch Design & Environm Dept Bldg 4 Architecture Dr S-117566 Singapore Singapore;

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  • 正文语种 eng
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  • 关键词

    Black carbon; Engineered biochar; Charcoal; Gas sorption and separation; Waste valorization and sustainability; Sustainable waste management;

    机译:黑炭;工程生物炭木炭;气体吸附分离废物估价和可持续性;可持续废物管理;

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