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首页> 外文期刊>Mitigation and Adaptation Strategies for Global Change >DOES SOIL CARBON LOSS IN BIOMASS PRODUCTION SYSTEMS NEGATE THE GREENHOUSE BENEFITS OF BIOENERGY?
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DOES SOIL CARBON LOSS IN BIOMASS PRODUCTION SYSTEMS NEGATE THE GREENHOUSE BENEFITS OF BIOENERGY?

机译:生物量生产系统中的土壤碳损失是否会抵消生物能源的温室效应?

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摘要

Interest in bioenergy is growing across the Western world in response to mounting concerns about climate change. There is a risk of depletion of soil carbon stocks in biomass production systems, because a higher proportion of the organic matter and nutrients are removed from the site, compared with conventional agricultural and forestry systems. This paper reviews the factors that influence soil carbon dynamics in bioenergy systems, and utilises the model FullCAM to investigate the likely magnitude of soil carbon change where bioenergy systems replace conventional land uses. Environmental and management factors govern the magnitude and direction of change. Soil C losses are most likely where soil C is initially high, such as where improved pasture is converted to biomass production. Bioenergy systems are likely to enhance soil C where these replace conventional cropping, as intensively cropped soils are generally depleted in soil C. Measures that enhance soil C include maintenance of productivity through application of fertilisers, inclusion of legumes, and retention of nutrient-rich foliage on-site. Modelling results demonstrate that loss of soil carbon in bioenergy systems is associated with declines in the resistant plant matter and humified soil C pools. However, published experimental data and modelling results indicate that total soil C loss in bioenergy systems is generally small. Thus, although there may be some decline in soil carbon associated with biomass production, this is negligiblein comparison with the contribution of bioenergy systems towards greenhouse mitigation through avoided fossil fuel emissions.
机译:由于对气候变化的关注日益增加,整个西方世界对生物能源的兴趣正在增长。生物量生产系统中存在土壤碳储量枯竭的风险,因为与传统的农业和林业系统相比,该地点去除了更多比例的有机物和养分。本文回顾了影响生物能源系统中土壤碳动态的因素,并利用FullCAM模型研究了生物能源系统替代常规土地利用的情况下土壤碳变化的可能幅度。环境和管理因素决定着变化的幅度和方向。土壤C的损失最可能发生在土壤C最初较高的地方,例如改良牧场转变为生物量生产的地方。生物能源系统很可能会增强土壤C,因为这些土壤通常会取代集约耕作的集约化作物,而集约化土壤通常会消耗掉土壤C。提高土壤C的措施包括通过施用肥料维持生产力,包豆类和保留营养丰富的树叶现场。建模结果表明,生物能源系统中土壤碳的损失与抗性植物物质和腐殖质土壤碳库的下降有关。但是,已发表的实验数据和模型结果表明,生物能源系统中的土壤总C损失通常很小。因此,尽管与生物量生产相关的土壤碳含量可能有所下降,但是与生物能源系统通过避免化石燃料的排放对温室减排的贡献相比,这可以忽略不计。

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