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Circular economy for phosphorus supply chain and its impact on social sustainable development goals

机译:用于磷供应链的循环经济及其对社会可持续发展目标的影响

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摘要

To be able to grow crops, we have interfered with Earth's reserves of one of top three essential elements, phosphorus (P), as to which we face a problem related to its high consumption compared to available resources. This forces us to follow the alternative of closing the phosphorus loop from a circular economy perspective. However, there is a lack of research on regional and global social sustainability in this area, as emphasized in the United Nations' Agenda 2030 goals for sustainable development. In this paper, we address social challenges involved in global phosphorus supply chain, such as eradicating poverty, child labor and malnutrition; promoting gender equality; providing decent work and economic growth; maintaining sustainable water use; and achieving food security. Our research is driven by the question of whether the circular economy aims to direct phosphorus management towards tackling social issues associated with its supply chain. We use system dynamics modelling by combining the concept of material flow analysis and social life cycle assessment. Detailed analysis at regional and global levels indicates a paradoxical social impact of phosphorus circular model. This reflects the multiple stakeholders involved, and the regional interactions with phosphorus circular economy transitions. Improvements can be demonstrated in reducing poverty and providing safer work environment in many regions, e.g., Western Asia (93%), New Zealand, Central Asia, and Europe (44-61%), while achieving employment targets is limited in Northern and Eastern Europe. Circular model fails to promote gender equality, it also exacerbates exploitative child work problem for the Caribbean and most Africa. It provides sufficient nutrition to North America, Australia/New Zealand, and Northern Europe. It achieves water use targets in several regions with 53% savings worldwide. Finally, circular model contributes to P efficiency (average balance of 1.21 kgP/ha) and strengthens P security within most regions with an average of 64%.
机译:为了能够种植作物,我们干扰了地球的储备,其中一个基本要素之一,磷(P),与可用资源相比,我们面临与其高消耗相关的问题。这迫使我们遵循从循环经济角度关闭磷环的替代方案。但是,在联合国2030年的可持续发展目标中强调,在这一领域缺乏对该领域的区域和全球社会可持续发展的研究。在本文中,我们解决了在全球磷供应链中涉及的社会挑战,例如消除贫困,童工和营养不良;促进性别平等;提供体面的工作和经济增长;保持可持续用水;并实现粮食安全。我们的研究是由循环经济是否旨在指导磷管理到应对与其供应链相关的社会问题的问题的问题。通过组合材料流分析和社会生命周期评估的概念,我们使用系统动力学建模。区域和全球水平的详细分析表明磷循环模型的矛盾社会影响。这反映了所涉及的多个利益相关者,以及与磷循环经济转型的区域相互作用。减少贫困和在许多地区提供更安全的工作环境,例如西亚(93%),新西兰,中亚和欧洲(44-61%)的改进,同时实现就业目标是有限的北部和东部欧洲。循环模式未能促进性别平等,它也会加剧加勒比地区和大多数非洲的剥削儿童工作问题。它为北美,澳大利亚/新西兰和北欧提供了足够的营养。它在若干地区实现了水分使用目标,全球储蓄53%。最后,循环模型有助于P效率(平均余量为1.21 kgp / ha),并在大多数区域内加强P安全性,平均为64%。

著录项

  • 来源
    《Science of the total environment 》 |2021年第10期| 146060.1-146060.14| 共14页
  • 作者单位

    School of Engineering Science Industrial Engineering and Management (IEM) Lappeenranta-Lahti University of Technology (LUT University) P.O. Box 20 FI-53851 Lappeenranta Finland;

    School of Engineering Science Industrial Engineering and Management (IEM) Lappeenranta-Lahti University of Technology (LUT University) P.O. Box 20 FI-53851 Lappeenranta Finland;

    School of Engineering Science Industrial Engineering and Management (IEM) Lappeenranta-Lahti University of Technology (LUT University) P.O. Box 20 FI-53851 Lappeenranta Finland Faculty of Process and Environmental Engineering Lodz University of Technology ul. Wolczanska 213 90-924 Lodz Poland;

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

    Critical materials; Phosphorus; Social sustainability; Circular economy; Dynamic modelling;

    机译:关键材料;磷;社会可持续发展;循环经济;动态建模;

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