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首页> 外文期刊>Journal of Environmental Management >Greenhouse gas emissions and soil properties following amendment with manure-derived biochars: Influence of pyrolysis temperature and feedstock type
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Greenhouse gas emissions and soil properties following amendment with manure-derived biochars: Influence of pyrolysis temperature and feedstock type

机译:粪便来源的生物炭修正后的温室气体排放和土壤特性:热解温度和原料类型的影响

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摘要

Manure-derived biochars can offer a potential option for the stabilization of manure, while mitigating climate change through carbon sequestration and the attenuation of nitrous oxide emission. A laboratory incubation study was conducted to assess the effects of four different manure-derived biochars produced from different feedstocks (poultry litter and swine manure) at different temperatures (400 or 600 ℃). A commonly available standard wood chip biochar, produced at a greater temperature (1000 ℃), and non-amended treatments were used as references. Two different soils (sandy and silt-loam) were amended with 2% (w/w) biochar on a dry soil weight basis (corresponding to 20 Mg ha~(-1)), with the soil moisture being adjusted to 75% saturation level. After a pre-incubation period (21 days), 170 kg N ha~(-1) of NH_4NO_3 fertilizer was added. Measurements of CO_2, N_2O, CH_4 emissions and soil N mineralisation were carried out on different days during the 85 days of incubation. The net C mineralization and N_2O emissions from both soils amended with poultry litter biochar at 400 ℃ were significantly greater than the other biochar treatments. Nitrate availability was greater in both soils in which the manure-derived biochar was used instead of the standard biochar. All of the biochars increased the pH of the silt-loam, sub-acid soil, but failed to improve the cation exchange capacities (CEC) in either soil. Total C and N, P, K and Mg (except Ca) were significantly increased in the manure-derived biochar amended soils, compared to the Control, and were positively correlated to the biochar nutrient contents. This study indicates that the soil application of biochar engenders effects that can vary considerably according to the biochar properties, as determined on the basis of the feedstock types and process conditions. Low-temperature biochar production from manure represents a possible way of producing a soil amendment that can stabilize C while supplying a significant quantity of nutrients.
机译:粪便来源的生物炭可以为稳定粪便提供潜在的选择,同时通过固碳和减少一氧化二氮排放来缓解气候变化。进行了一项实验室孵化研究,以评估在不同温度(400或600℃)下由不同原料(家禽垃圾和猪粪)产生的四种不同的粪便生物炭的效果。以在较高温度(1000℃)下生产且未经修正的处理方法生产的常用标准木屑生物炭为参考。两种不同的土壤(沙质土壤和粉壤土)都以土壤干重(相当于20 Mg ha〜(-1))为基础,以2%(w / w)的生物炭进行了改良,将土壤水分调节至饱和度为75%水平。在预温育期(21天)后,添加170 kg N ha〜(-1)NH_4NO_3肥料。在培养的85天中的不同日期进行了CO_2,N_2O,CH_4排放和土壤氮矿化的测量。在400℃下用家禽垃圾生物炭改良的两种土壤的净碳矿化和N_2O排放均显着高于其他生物炭处理。在使用粪肥生物炭代替标准生物炭的两种土壤中,硝酸盐的利用率更高。所有的生物炭都增加了粉壤土,亚酸性土壤的pH,但未能提高两种土壤中的阳离子交换能力(CEC)。与对照相比,粪肥衍生的生物炭改良土壤中的总C,N,P,K和Mg(Ca除外)显着增加,并且与生物炭养分含量呈正相关。这项研究表明,在土壤中施用生物炭会产生不同的影响,具体取决于根据原料类型和加工条件确定的生物炭特性。从粪便中低温生产生物炭代表了一种生产土壤改良剂的可能方法,该土壤改良剂可以稳定C,同时提供大量营养。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第15期|73-83|共11页
  • 作者单位

    Department of Agricultural, Forest and Food Sciences, University of Turin, Largo Paolo Braccini 2, 10095 Grugliasco, Italy,Department of Chemical and Environmental Sciences, University of Limerick, Plassey Park Rd., Castletroy, Co., Limerick, Ireland;

    Department of Chemical and Environmental Sciences, University of Limerick, Plassey Park Rd., Castletroy, Co., Limerick, Ireland;

    Department of Agricultural, Forest and Food Sciences, University of Turin, Largo Paolo Braccini 2, 10095 Grugliasco, Italy;

    Department of Agricultural, Forest and Food Sciences, University of Turin, Largo Paolo Braccini 2, 10095 Grugliasco, Italy;

    Department of Agricultural, Forest and Food Sciences, University of Turin, Largo Paolo Braccini 2, 10095 Grugliasco, Italy;

    Department of Chemical and Environmental Sciences, University of Limerick, Plassey Park Rd., Castletroy, Co., Limerick, Ireland;

    Department of Agricultural, Forest and Food Sciences, University of Turin, Largo Paolo Braccini 2, 10095 Grugliasco, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Pyrolysis temperature; Feedstock; Greenhouse gases; C sequestration; Nitrate leaching; Physico-chemical properties;

    机译:生物炭热解温度;原料温室气体;螯合;硝酸盐浸出;理化性质;

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