水处理厂污泥作为一种多种资源的有益利用:潜力和局限性

IF 5.4 Q1 ENVIRONMENTAL SCIENCES
Gabriela Nakayama Messa, Amanda Maria Dantas de Jesus, Fabiana Alves Fiore
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引用次数: 0

摘要

水处理厂污泥的不断增加和不断产生仍然是一个未得到充分认识的问题,尽管在大多数国家,将水处理厂污泥不当处置到水道中对环境产生了负面影响。需要将循环经济原则纳入这种废物的管理,这刺激了关于将WTPS重新引入生产链的研究,但这些调查一般评价具体过程。本研究的目的是确定WTPS重用的潜力和局限性。因此,我们采用文献检索法进行了系统的文献综述,筛选出106篇文章进行分析。研究结果表明,WTPS在建筑产品制造和化学工艺投入中的有益利用是研究最多的应用。这可以用污泥的成分来解释,它由超过80%的元素组成:硅、铝、铁和钙。应该指出的是,这些因素的优势与水净化中使用的投入类型和收集的原水的特性有关。WTPS的矿物组成以石英和高岭石为主。这些残留物还含有重金属,特别是钡、铬、铅和汞,以及变形菌门、厚壁菌门和蓝藻门等微生物,对人类健康和环境构成潜在风险,在管理和有益利用方面需要特别小心。缺乏标准化和研究解决环境和经济可行性是这一领域的研究空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Beneficial use of sludge from water treatment plants as a multiple resource: Potential and limitations

Beneficial use of sludge from water treatment plants as a multiple resource: Potential and limitations
The increasing and continuous generation of water treatment plant sludge (WTPS) is still an under-recognised problem, although in most countries the inappropriate disposal of WTPS into watercourses has a negative impact on the environment. The need to incorporate circular economic principles in the management of this waste has stimulated studies on the reintroduction of WTPS into the production chain, but these investigations generally evaluate specific processes. The aim of this research was to identify the potential and limitations of WTPS reuse. Therefore, a systematic literature review was carried out using the archival search method, which resulted in the analysis of 106 selected articles. The results show that the beneficial use of WTPS in the manufacture of construction products and as inputs for chemical processes are the most studied applications. This can be explained by sludge's composition that consists of more than 80% by mass of the elements: silicon, aluminum, iron and calcium. It should be noted that the predominance of these elements is related to the type of input used in water purification and the characteristics of the raw water collected. The mineralogical composition of WTPS is seasonally predominated by quartz and kaolinite. These residues also contain heavy metals especially such as barium, chrome, lead and mercury, and microorganisms such as proteobacteria, firmicutes and cyanobacteria, presenting potential risks to human health and the environment, and demanding special care in the management and beneficial uses. The lack of standardization and studies that address environmental and economic viability are research gaps in this area.
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来源期刊
Resources, conservation & recycling advances
Resources, conservation & recycling advances Environmental Science (General)
CiteScore
11.70
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76 days
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