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Biochar-based adsorbents for carbon dioxide capture: A critical review

机译:基于生物炭的二氧化碳捕获吸附剂:批判性评论

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摘要

Carbon dioxide (CO2) is the main anthropogenic greenhouse gas contributing to global warming, causing tremendous impacts on the global ecosystem. Fossil fuel combustion is the main anthropogenic source of CO2 emissions. Biochar, a porous carbonaceous material produced through the thermochemical conversion of organic materials in oxygen-depleted conditions, is emerging as a cost-effective green sorbent to maintain environmental quality by capturing CO2. Currently, the modification of biochar using different physico-chemical processes, as well as the synthesis of biochar composites to enhance the contaminant sorption capacity, has drawn significant interest from the scientific community, which could also be used for capturing CO2. This review summarizes and evaluates the potential of using pristine and engineered biochar as CO2 capturing media, as well as the factors influencing the CO2 adsorption capacity of biochar and issues related to the synthesis of biochar-based CO2 adsorbents. The CO2 adsorption capacity of biochar is greatly governed by physico-chemical properties of biochar such as specific surface area, microporosity, ammaticity, hydrophobicity and the presence of basic functional groups which are influenced by feedstock type and production conditions of biochar. Micropore area (R-2 = 0.9032, n = 32) and micropore volume (R-2 = 0.8793, n = 32) showed a significant positive relationship with CO2 adsorption capacity of biochar. These properties of biochar are closely related to the type of feedstock and the thermochemical conditions of biochar production. Engineered biochar significantly increases CO2 adsorption capacity of pristine biochar due to modification of surface properties. Despite the progress in biochar development, further studies should be conducted to develop cost-effective, sustainable biochar-based composites for use in large-scale CO2 capture.
机译:二氧化碳(CO2)是主要的人为温室气体,导致全球变暖,导致对全球生态系统的巨大影响。化石燃料燃烧是二氧化碳排放的主要人为源。通过氧耗尽条件下的有机材料的热化学转化产生的多孔碳质材料,是通过捕获二氧化碳来保持环境质量的经济型绿色吸附剂,产生通过有机材料的热化学转化产生的多孔碳质材料。目前,使用不同的物理化学方法的生物炭改性,以及生物炭复合材料的合成,以提高污染物吸附能力,从科学界汲取了显着的兴趣,这也可以用于捕获二氧化碳。本综述总结和评估了使用原始和工程生物炭作为CO2捕获介质的潜力,以及影响生物炭二氧化碳吸附能力的因素及其与基于生物炭的二氧化碳吸附剂的合成有关的问题。 Biochar的CO 2吸附容量极大地由生物炭的物理化学性质(如特异性表面积,微孔,微孔,散发性,疏水性以及受Biochar的原料类型和生产条件影响的基本官能团的存在。微孔区域(R-2 = 0.9032,n = 32)和微孔体积(R-2 = 0.8793,n = 32)显示了与生物炭的CO2吸附能力显着阳性关系。 Biochar的这些性质与原料类型和生物炭生产的热化学条件密切相关。由于表面特性的改性,工程化生物炭显着提高了原始生物炭的CO2吸附能力。尽管Biochar开发进展,但还应进行进一步的研究,以开发成本效益,可持续的生物炭基复合材料,用于大型二氧化碳捕获。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2020年第3期|109582.1-109582.14|共14页
  • 作者单位

    Korea Univ O Jeong Ecoresilience Inst Korea Biochar Res Ctr 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;

    Univ Glasgow Sch Engn Glasgow Lanark Scotland;

    Korea Univ O Jeong Ecoresilience Inst Korea Biochar Res Ctr Seoul 02841 South Korea|Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea;

    Zhejiang Univ Water Resources & Elect Power Coll Water Conservancy & Environm Engn Hangzhou 310018 Peoples R China;

    Univ Eastern Finland Dept Environm & Biol Sci POB 1627 FI-70211 Kuopio Finland;

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

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

    Yonsei Univ Dept Architecture & Architectural Engn Seoul 03722 South Korea;

    Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea;

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

    Korea Univ O Jeong Ecoresilience Inst Korea Biochar Res Ctr Seoul 02841 South Korea|Korea Univ Div Environm Sci & Ecol Engn Seoul 02841 South Korea|Henan Agr Univ Sch Forestry Henan Prov Engn Res Ctr Biomass Value Added Prod Zhengzhou 450002 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Black carbon; CO2 capture; Climate change; Engineered biochar; Greenhouse gas;

    机译:黑碳;二氧化碳捕获;气候变化;工程化生物炭;温室气体;

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