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The Energy & Raw Materials Factory: Role and Potential Contribution to the Circular Economy of the Netherlands

机译:能源和原料工厂:对荷兰循环经济的作用和潜在贡献

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摘要

Water is an abundant resource worldwide, but fresh and clean water is scarce in many areas of the world. Increases in water consumption and climate change will affect global water security even further in the near future. With increasing numbers of people living in metropolitan areas, water, energy, and materials need to be used carefully, reused and renewed. Resource scarcity is the driver behind the circular economy. The recovery of materials and energy can add significant new value streams and improve cost recovery and water quality. In this paper, we present the creation of the Energy & Raw Materials Factory (ERMF) of the Dutch Water Authorities, also known as the Resource Factory, as one of the solutions to this global challenge of water in the circular economy. Resources like cellulose, bioplastics, phosphate, alginate-like exopolymers from aerobic granular sludge (bio-ALE), and biomass can be recovered. Bio-ALE is an alginate-like polymer of sugars and proteins and can be used in agriculture and horticulture, the paper industry, medical, and construction industries. The ERMF demands significant investments but the return on investment is high both from a financial and environmental perspective, provided that markets can be realized. Experiences in the Netherlands show that the concept of the ERMF is viable and adds to the creation of a circular economy. Achieving climate neutrality and production of new and promising resources like bio-ALE are possible. The ERMF can contribute to the sustainable development goals (SDGs) of the United Nations on water and sanitation, once fully operational.
机译:水是世界范围内丰富的资源,但世界许多地区都缺乏淡水和清洁水。耗水量和气候变化的增加将在不久的将来进一步影响全球的水安全。随着生活在大都市地区的人们数量的增加,水,能源和材料的使用需要谨慎,重复使用和更新。资源稀缺是循环经济的驱动力。材料和能源的回收可以增加重要的新价值流,并改善成本回收和水质。在本文中,我们介绍了荷兰水务局能源与原材料工厂(ERMF)的创建,也称为资源工厂,作为应对循环经济中全球水资源挑战的解决方案之一。可以回收好氧颗粒污泥(bio-ALE)中的纤维素,生物塑料,磷酸盐,藻酸盐类外聚合物和生物质等资源。 Bio-ALE是一种类似藻酸盐的糖和蛋白质聚合物,可用于农业和园艺,造纸业,医疗和建筑业。 ERMF需要大量投资,但从财务和环境角度看,只要能够实现市场,投资回报率就很高。荷兰的经验表明,ERMF的概念是可行的,并增加了循环经济的创建。实现气候中和以及生产新的和有前途的资源(如bio-ALE)是可能的。一旦全面运作,应急基金就可以为联合国在水和环境卫生方面的可持续发展目标做出贡献。

著录项

  • 来源
    《Environmental Management》 |2018年第5期|786-795|共10页
  • 作者单位

    Copernicus Institute for Sustainable Development and Innovation, Utrecht University,KWR Watercycle Research Institute;

    Copernicus Institute for Sustainable Development and Innovation, Utrecht University,Ministry of Infrastructure and Water Management;

    Copernicus Institute for Sustainable Development and Innovation, Utrecht University,KWR Watercycle Research Institute;

    KWR Watercycle Research Institute;

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

    Circular economy; Resource recovery; Wastewater treatment; Energy recovery; Bio-ALE; Bioplastics;

    机译:循环经济;资源回收;废水处理;能源回收;Bio-ALE;生物塑料;
  • 入库时间 2022-08-17 13:24:57

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