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Environmental implications of stored cattle slurry treatment with sulphuric acid and biochar: A life cycle assessment approach

机译:硫酸和生物炭储存牛浆处理的环境影响:生命周期评估方法

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摘要

With the increase of animal slurry produced from livestock production, the monitoring and mitigation of greenhouse gas (GHG) and ammonia (NH_3) emissions represent a major issue. Life cycle assessment (LCA) has been used to evaluate the long-term environmental effects of applied strategies and technologies on cattle slurry management for mitigation of environmental harmful gases. This study was carried on two main aims: first, the effect of the addition of sulphuric acid (SA), biochar (SBi) or A + Bi to liquid cattle-slurry (treated systems) on gas emissions during storage compared to the untreated system (S) was investigated in a laboratory-controlled experiment; second, the environmental implications of each treated or untreated system were assessed through a LCA approach according to ISO 14040/44. Five CML 2001 impact categories were used: eutrophication potential (EP), acidification potential (AP), global warming potential (GWP), human toxicity potential (HTP) and Ozone Layer Depletion Potential (ODP). Comparisons were based on 1 ton fresh dairy cattle slurry. The environmental profile of untreated system showed lower efficiency in mitigation of total GHG and NH3 emissions (0.0312 and 0.0001 kg CO_2-eq respectively), during storage period and greater impact on GWP and HTP categories. The electricity consumption in mechanical separation dominated the environmental impacts. From the three proposed treated systems, SA showed the highest efficiency on mitigation of gas emissions compared to the other treatments, reducing NH_3, CH_4 and CO_2 emissions respectively in 61%, 98% and 15%, when compared to the SBi system. In all categories, acidified slurry also showed the lowest environmental impact relative to other treated systems and the benefit was more evident when the impacts were expressed per kilogram of nitrogen in the slurry. Therefore, LCA methodology was of great importance to assess the environmental implications of the treatments and acidification can be considered as an effective technique on the mitigation of environmental implications of livestock production and cattle-effluent valorization. Optimization and uniformity of performed studies are essential to validate new strategies to improve the sustainability of this sector in the management of animal wastewater.
机译:与来自牲畜生产中,监视和温室气体(GHG)和氨的减轻生产的动物浆料的增加(NH_3)的排放量表示一个主要问题。生命周期评估(LCA)已被用来评估对牛浆管理对环境有害气体的减排应用策略和技术的长期环境影响。本研究进行了两个主要目的:首先,相对于未经处理的系统中的存储过程中加入硫酸(SA),生物炭(SBI)或A +毕到液体牛的浆料上气体排放(处理系统)的效果(S)在实验室对照实验进行了研究;第二,每个处理或未处理系统对环境的影响根据ISO44分之14040通过LCA方法评估。五CML 2001年的影响类别中使用:富营养化潜力(EP),酸化潜力(AP),全球变暖潜能值(GWP),人体毒性潜力(HTP)和臭氧层破坏潜能值(ODP)。比较基于1吨新鲜奶牛浆。未处理的系统的环境简档显示贮藏期间在总GHG和NH3排放(0.0312和0.0001公斤CO_2当量分别),缓解低效率和GWP和HTP类别更大的影响。在机械分离的电力消耗占主导地位的环境影响。来自三个提议处理系统,SA显示出对气体排放的缓解的最高效率相对于其他处理,从而降低NH_3,CH_4和CO_2排放量分别在61%,98%和15%,相对于SBI系统时。在所有类别,酸化泥浆也表现出最低的环境相对于其他处理系统的影响,以及时的影响是在浆料氮每公斤表达的好处更加明显。因此,LCA方法是非常重要的,以评估的处理对环境的影响和酸化可以看作是对畜牧业生产和牛的流出物价稳定的环境影响减缓的有效方法。优化和进行研究的均匀性是必不可少的,以验证新的战略,以改善这个部门在动物废水管理的可持续性。

著录项

  • 来源
    《Environmental research》 |2021年第3期|110640.1-110640.10|共10页
  • 作者单位

    Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB) Universidade de Tras-os-Montes e Alto Douro Quinta de Prados 5000-801 Vila Real Portugal;

    Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB) Universidade de Tras-os-Montes e Alto Douro Quinta de Prados 5000-801 Vila Real Portugal;

    Animal and Veterinary Research Center (CECAV) Universidade de Tras-os-Montes e Alto Douro Quinta de Prados 5000-801 Vila Real Portugal;

    Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB) Universidade de Tras-os-Montes e Alto Douro Quinta de Prados 5000-801 Vila Real Portugal;

    Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB) Universidade de Tras-os-Montes e Alto Douro Quinta de Prados 5000-801 Vila Real Portugal;

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

    Animal manure; GHG emissions; Ammonia; Acidification; Life cycle assessment;

    机译:动物粪便;温室气体排放;氨;酸化;生命周期评估;
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