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Feedstock particle size and pyrolysis temperature regulate effects of biochar on soil nitrous oxide and carbon dioxide emissions

机译:BioChar对土壤二氧化二氮和二氧化碳排放的原料粒径和热解温调节效应

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摘要

Atmospheric greenhouse gas (GHG) concentration increases are a serious problem impacting global climate. Mitigation of agricultural GHG production is crucial as fertilized soils contribute substantially to changes in GHG atmospheric composition. Biochar derived from agricultural or forestry biowaste has been widely used in agriculture and may help mitigate GHG emissions. While different kinds of biochar and their effects on GHG emissions have been studied, feedstock particle size may interact with pyrolysis temperature to impact biochar effects on GHG emissions, but this has not been investigated. Here, feedstock particle size effects on biochar characteristics and soil nitrous oxide (N_2O) and carbon dioxide (CO_2) emissions were studied using Camellia oleifera fruit shell feedstock with three particle size fractions (0.5-2, 2-5, and 5-10 mm) each pyrolyzed at 300,450, and 600 °C. Results showed that dissolved organic carbon in biochar increased with particle size when pyrolyzed at 300 °C, but decreased with pyrolysis temperature. The 0.5-2 mm shell-derived biochar was associated with the lowest N_2O and CO_2 emission rates but the highest net nitrogen mineralization rates compared to 2-5 mm and 5-10 mm shell-derived biochar when pyrolyzed at 300 °C. Overall, shell particle size was more important for soil processes at lower pyrolysis temperatures with less variation among particle sizes at higher pyrolysis temperatures. The results indicated that feedstock particle size may interact with pyrolysis temperature and impact mitigation of soil N_2O and CO_2 emissions.
机译:大气温室气体(GHG)浓度增加是一个严重的问题,影响全球气候。减缓农业温室气体产量至关重要,因为受精土会大大改变温室气体大气组合物。生物炭来自农业或林业生物炉的生物炭已被广泛用于农业,可能有助于缓解气体排放。虽然已经研究了不同种类的生物炭及其对温室气体排放的影响,但原料粒度可以与热解温度相互作用,以冲击生物炭对温室气体排放的影响,但这尚未研究。这里,使用具有三个粒度级分的山茶花油果壳原料研究了对生物炭特性和土壤二氧化物(N_2O)和二氧化碳(CO_2)排放的原料粒度和二氧化碳排放(0.5-2,2-5和5-10mm )每种热解300,450和600℃。结果表明,在300℃下热解时,生物炭中的溶解有机碳在粒度增加,但随着热解温度降低。 0.5-2毫米壳衍生的生物炭与最低N_2O和CO_2排放率相关,但在300℃下热解时,最高净氮矿化速率与2-5mm和5-10mm的壳种生物凝块相比。总体而言,壳体粒度对于在较高热解温度下的粒径较低的粒径变化下的土壤过程更为重要。结果表明,原料粒度可以与热解温和土壤N_2O和CO_2排放的影响缓解相互作用。

著录项

  • 来源
    《Waste Management》 |2021年第2期|33-40|共8页
  • 作者单位

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China Jiangxi Provincial Key Laboratory for Restoration of Degraded Ecosystems & Watershed Ecohydrology College of Water Conservancy and Ecological Engineering Nanchang Institute of Technology Nanchang 330099 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Department of Biosciences Rice University Houston TX 77005 USA;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

    Key Laboratory of Silviculture College of Forestry Jiangxi Agricultural University Nanchang 330045 China;

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

    Biochar; Biowaste; Camellia oleifera; Feedstock particle size; Nitrous oxide; Pyrolysis temperature;

    机译:生物炭;Biowaste;山茶花oleifera;原料粒径;笑气;热解温度;

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