Construction and demolition waste (CDW) in urban soils as a factor controlling their diversity

IF 5.6 1区 农林科学 Q1 SOIL SCIENCE
Andrzej Greinert , Agnieszka Piernik , Umberto Grande , Piotr Hulisz
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Abstract

Despite the crucial importance of technogenic materials in the urban environment, the influence of construction and demolition waste (CDW) on soil diversity still needs to be recognized. To address this knowledge gap, our study aimed to analyze how CDW can shape urban soil diversity. We propose a comprehensive approach based on a statistical analysis of over 100 profiles from Zielona Góra (western Poland) assigned to four groups distinguished using criteria of the WRB classification (2022). Physicochemical and chemical parameters differentiated the groups, and similarities between groups were determined. High heterogeneity of soil properties of the soils was found, mainly shaped by parameters associated with CDW such as artifact content, pH-H2O, coarse fragments (ø >2 mm), and total Fe and Co content. However, a completely different picture of the diversity of urban soils was obtained, presenting their internal variation within specific WRB classification units. Moderately and strongly human-transformed soils (Technosols, Regosols, Anthrosols) were characterized by greater similarity than natural soils (Podzols, Arenosols, Gleysols). This increased similarity is likely due to the homogenizing effect of human activities, particularly the significant impact of construction and demolition waste (CDW) on soil characteristics. It also indicates the rationality of WRB classification criteria for soils with different degrees of technogenic transformation and CDW contribution to soil material. This study also demonstrated the usefulness of the Bray-Curtis distance and ANOSIM comparison in the analysis of soil diversity.

Abstract Image

城市土壤中的建筑和拆迁废弃物(CDW)是控制其多样性的一个因素
尽管技术材料在城市环境中至关重要,但建筑和拆除垃圾(CDW)对土壤多样性的影响仍有待认识。为了填补这一知识空白,我们的研究旨在分析建筑和拆除垃圾如何影响城市土壤多样性。我们提出了一种基于统计分析的综合方法,将来自 Zielona Góra(波兰西部)的 100 多份剖面图按照 WRB 分类标准(2022 年)划分为四个组别。理化和化学参数对各组进行了区分,并确定了各组之间的相似性。发现土壤性质的高度异质性主要是由与 CDW 相关的参数形成的,如人工物含量、pH-HO、粗碎屑(ø > 2 毫米)以及总铁和总钴含量。然而,城市土壤的多样性却呈现出完全不同的面貌,在特定的 WRB 分类单元内呈现出内部差异。与自然土壤(Podzols、Arenosols、Gleysols)相比,中度和强烈人为改造土壤(Technosols、Regosols、Anthrosols)具有更大的相似性。这种相似性的增加可能是由于人类活动的同质化效应,特别是建筑和拆除废物(CDW)对土壤特性的重大影响。这也表明了 WRB 分类标准对于不同程度的技术转化和建筑垃圾填埋场对土壤材料影响的合理性。这项研究还证明了布雷-柯蒂斯距离和 ANOSIM 比较法在土壤多样性分析中的实用性。
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来源期刊
Geoderma
Geoderma 农林科学-土壤科学
CiteScore
11.80
自引率
6.60%
发文量
597
审稿时长
58 days
期刊介绍: Geoderma - the global journal of soil science - welcomes authors, readers and soil research from all parts of the world, encourages worldwide soil studies, and embraces all aspects of soil science and its associated pedagogy. The journal particularly welcomes interdisciplinary work focusing on dynamic soil processes and functions across space and time.
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