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首页> 外文期刊>Sustainable Water Resources Management >Water and wastewater optimization in a food processing industry using water pinch technology
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Water and wastewater optimization in a food processing industry using water pinch technology

机译:利用水捏技术在食品加工行业中的水和废水优化

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摘要

Geosciences and geoethics emerge at the core of a globally increasing demand of resources and the risk of scarcity for the new generations, promoting social, economic and environmental awareness, better management of resources and our commitment to environmental issues. According to the United Nations World Water Assessment Program, water consumption rates increased in the last decades and this trend is likely to continue over the coming years. Driven by climatic hazards due to human activities or by the denaturation of freshwater sources, in certain regions of the planet, water is becoming increasingly scarce, already facing water supply deficits, water resources must be saved as much as possible. The industrial sector accounts for a considerable volume of freshwater consumption, lagging behind the agriculture sector. Nonetheless, the global annual water used in industry is expected to increase and, particularly, much of this increase will occur in developing countries, experiencing rapid industrial progress. The present work deals with a case study of the intervention and adaptation of a wastewater treatment process of a food company. Through a water pinch analysis, within the concept of circular economy, it is envisaged to improve the efficiency of the water management system through a reduction in water and energy use and also wastewater generation. The introduction of new stages in the treatment process is proposed to allow the reuse of treated wastewater and to reduce raw water consumption from natural sources. This research points to the use of phytoremediation processes combined with ion exchange columns, packed with a mix of cationic and anionic resins. The results were promising and point to an intervention proposal with a reduction of up to 55% in the consumption of raw water and a 45% reduction in the volume of treated wastewater sent for discharge.
机译:地球科学和地球化学在全球日益增长的资源需求和新代稀缺的风险中出现了核心,促进社会,经济和环境意识,更好地管理资源和我们对环境问题的承诺。据联合国世界水分评估计划介绍,过去几十年来耗水利率增加,这一趋势可能会在未来几年延续。由于人类活动或淡水来源的变性而导致的气候危险,在地球的某些地区,水变得越来越稀缺,已经面临供水缺陷,水资源必须尽可能地节省。工业部门占大量淡水消费,落后于农业部门。尽管如此,工业中使用的全球每年用水量将增加,特别是,发展中国家将发生大部分增加,经历快速的工业进步。本工作涉及食品公司废水处理过程的干预和适应案例研究。通过水捏分析,在循环经济的概念内,设想通过减少水和能源使用以及废水产生来提高水管理系统的效率。提出了在处理过程中引入新阶段,以便重用处理过的废水并减少自然来源的原水消耗。该研究指出使用植物修复方法与离子交换柱联合,填充有阳离子和阴离子树脂的混合物。结果令人欣赏,并指出了干预提案,在原水消耗中减少了高达55%的干预提案,并在送出的处理废水量减少45%。

著录项

  • 来源
    《Sustainable Water Resources Management》 |2021年第5期|82.1-82.13|共13页
  • 作者单位

    Civil Engineering Department School of Engineering (ISEP) Polytechnic of Porto Porto Portugal;

    Civil Engineering Department School of Engineering (ISEP) Polytechnic of Porto Porto Portugal CESAM-Centre for Environ and Marine Studies University of Aveiro Aveiro Portugal;

    Chemical Engineering Department School of Engineering (ISEP) Polytechnic of Porto Porto Portugal REQU1MTE-LAQV School of Engineering (ISEP) Polytechnic of Porto Porto Portugal;

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

    Circular economy; Effluent treatment; Wastewater; Water pinch analysis; Water reuse;

    机译:循环经济;流出物理;废水;水捏分析;水重复使用;

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