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首页> 外文期刊>The Science of the Total Environment >SIMS_(waste-ad) - A modelling framework for the environmental assessment of agricultural waste management strategies: Anaerobic digestion
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SIMS_(waste-ad) - A modelling framework for the environmental assessment of agricultural waste management strategies: Anaerobic digestion

机译:SIMS_(waste-ad)-用于农业废物管理策略的环境评估的建模框架:厌氧消化

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摘要

On-farm anaerobic digestion (AD) has been promoted due to its improved environmental performance, which is based on a number of life cycle assessments (LCA). However, the influence of site-specific conditions and practices on AD performance is rarely captured in LCA studies and the effects on C and N cycles are often overlooked. In this paper, a new model for AD (SIMS_(WAstc-ad)) is described in full and tested against a selection of available measured data. Good agreement between modelled and measured values was obtained, reflecting the model capability to predict biogas production (r~2 = 0.84) and N mineralization (r~2 = 0.85) under a range of substrate mixtures and operational conditions. SIMSwaste-ad was also used to simulate C and N flows and GHG emissions for a set of scenarios exploring different AD technology levels, feedstock mixtures and climate conditions. The importance of post-digestion emissions and its relationship with the AD performance have been stressed as crucial factors to reduce the net GHG emissions (- 75%) but also to enhance digestate fertilizer potential (15%). Gas tight digestate storage with residual biogas collection is highly recommended (especially in temperate to warm climates), as well as those operational conditions that can improve the process efficiency on degrading VS (e.g. ther-mophilic range, longer hydraulic retention time). Beyond the effects on the manure management stage, SIMS_(wasre-AD) also aims to help account for potential effects of AD on other stages by providing the C and nutrient flows. While primarily designed to be applied within the SIMS_(DAiry) modelling framework, it can also interact with other models implemented in integrated approaches. Such system scope assessments are essential for stakeholders and policy makers in order to develop effective strategies for reducing GHG emissions and environmental issues in the agriculture sector.
机译:基于许多生命周期评估(LCA),由于改善了环境性能,因此促进了农场厌氧消化(AD)。但是,在LCA研究中很少发现特定地点条件和实践对AD性能的影响,并且经常忽略对C和N周期的影响。在本文中,对AD的新模型(SIMS_(WAstc-ad))进行了完整描述,并针对一系列可用的测量数据进行了测试。在模型值和测量值之间取得了良好的一致性,反映了模型在各种底物混合物和操作条件下预测沼气产量(r〜2 = 0.84)和氮矿化(r〜2 = 0.85)的能力。 SIMSwaste-ad还用于模拟一系列不同AD技术水平,原料混合物和气候条件的场景中的C和N流量以及GHG排放。强调了消化后排放的重要性及其与AD表现的关系,这是减少温室气体净排放量(-75%)但也提高了消化肥料潜力(15%)的关键因素。强烈建议使用气密性消化液并残留沼气(特别是在温带至温暖的气候下),以及那些可以提高VS降解效率的操作条件(例如,嗜热范围,更长的水力停留时间)。除了对粪便管理阶段的影响外,SIMS_(wasre-AD)还旨在通过提供碳和养分流来帮助解决AD对其他阶段的潜在影响。虽然主要设计为在SIMS_(DAiry)建模框架内应用,但它也可以与以集成方法实现的其他模型进行交互。这种系统范围的评估对于利益相关者和政策制定者至关重要,以便制定有效的战略来减少农业部门的温室气体排放和环境问题。

著录项

  • 来源
    《The Science of the Total Environment 》 |2017年第1期| 806-817| 共12页
  • 作者单位

    Basque Centre for Climate Change (BC3), Edificio Sede N° 1, Planta 1°, Parque Cientifico de UPV/EHU, Barrio Sarriena s, 48940 Leioa, Bizkaia, Spain;

    Miguel Hernandez University, EPS-Orihuela, Ctra Beniel Km 3.2,03312 Orihuela, Spain;

    Basque Centre for Climate Change (BC3), Edificio Sede N° 1, Planta 1°, Parque Cientifico de UPV/EHU, Barrio Sarriena s, 48940 Leioa, Bizkaia, Spain;

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

    Biogas; Manure; CHG emissions; Modelling; LCA; Mitigation;

    机译:沼气肥料;CHG排放;造型;LCA;减轻;

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