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A state-of-the-art review on indoor air pollution and strategies for indoor air pollution control

机译:关于室内空气污染和室内空气污染控制策略的最先进的综述

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摘要

Indoor air pollution has traditionally received less attention than outdoors pollution despite indoors pollutant levels are typically twice higher, and people spend 80-90% of their life in increasing air-tight buildings. More than 5 million people die every year prematurely from illnesses attributable to poor indoor air quality, which also causes multi-millionaire losses due to reduced employee's productivity, material damages and increased health system expenses. Indoor air pollutants include particulate matter, biological pollutants and over 400 different chemical organic and inorganic compounds, whose concentrations are governed by several outdoor and indoor factors. Prevention of pollutant is not always technically feasible, so the implementation of cost-effective active abatement units is required. Up to date no single physical-chemical technology is capable of coping with all indoor air pollutants in a cost-effective manner. This problem requires the use of sequential technology configurations at the expenses of superior capital and operating costs. In addition, the performance of conventional physical-chemical technologies is still limited by the low concentrations, the diversity and the variability of pollutants in indoor environments. In this context, biotechnologies have emerged as a cost-effective and sustainable platform capable of coping with these limitations based on the biocatalytic action of plants, bacteria, fungi and microalgae. Indeed, biological-based purification systems can improve the energy efficiency of buildings, while providing additional aesthetic and psychological benefits. This review critically assessed the state-of-the-art of the indoor air pollution problem and prevention strategies, along with the recent advances in physical-chemical and biological technologies for indoor pollutants abatement. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在传统上,室内空气污染在户外污染的影响中,尽管室内污染水平通常是较高的两倍,但人们在增加气密建筑时花费80-90%。超过500万人每年死于归因于室内空气质量差的疾病,这也导致员工生产力,物质损害赔偿和卫生系统费用增加的百万富翁损失。室内空气污染物包括颗粒物质,生物污染物和超过400种不同的化学有机和无机化合物,其浓度受到几个室外和室内因素的管辖。预防污染物并不总是在技术上可行的,因此需要实施成本效益的主动减排单位。迄今为止,没有单一的物理化学技术能够以成本效益的方式应对所有室内空气污染物。此问题需要在优越的资本和运营成本的费用中使用顺序技术配置。此外,传统物理化学技术的性能仍然受到室内环境中污染物的低浓度,多样性和可变性的限制。在这种情况下,生物技术已经成为一种能够应对这些限制的成本效益和可持续的平台,基于植物,细菌,真菌和微藻的生物催化作用。实际上,基于生物学的净化系统可以提高建筑物的能量效率,同时提供额外的审美和心理益处。本综述批判性地评估了室内空气污染问题和预防策略的最先进,以及室内污染物减少的物理化学和生物技术的最新进展。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2021年第2期|128376.1-128376.16|共16页
  • 作者单位

    Univ Valladolid Dept Chem Engn & Environm Technol Dr Mergelina S-N Valladolid 47011 Spain|Univ Valladolid Inst Sustainable Proc Dr Mergelina S-N Valladolid 47011 Spain;

    Univ Valladolid Inst Sustainable Proc Dr Mergelina S-N Valladolid 47011 Spain|Jacobs Engn Bristol Avon England;

    Univ Valladolid Inst Sustainable Proc Dr Mergelina S-N Valladolid 47011 Spain;

    Univ Valladolid Dept Chem Engn & Environm Technol Dr Mergelina S-N Valladolid 47011 Spain|Univ Valladolid Inst Sustainable Proc Dr Mergelina S-N Valladolid 47011 Spain;

    Univ Valladolid Dept Chem Engn & Environm Technol Dr Mergelina S-N Valladolid 47011 Spain|Univ Valladolid Inst Sustainable Proc Dr Mergelina S-N Valladolid 47011 Spain;

  • 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

    Air pollutant; Biotechnology; Indoor air quality; Prevention strategy; Physical-chemical technology; Volatile organic compound;

    机译:空气污染物;生物技术;室内空气质量;预防策略;物理化学技术;挥发性有机化合物;

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