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◆ Journal of hazardous materials2026-08-04

Urban land use and management drive soil pollution across urban and nearby natural ecosystems in the Iberian Peninsula.

Andrea C Sala-Navarro, Nuria Casado-Coy, Axel Campos-Castro, Camelia Algora, Elena Aguilar-Santana, Kaiyan Zhai, Josu G Alday, Cristina Armas, C Guillermo Bueno, Leonor Calvo, María Dolores Carmona-Yáñez, Giada Centenaro, Svetlana Dashevskaya, Jorge Durán Humia, Alexandra Rodríguez Pereiras, Mónica Ladrón de Guevara, María R Felipe-Lucia, María José Fernández-Alonso, Pablo García-Palacios, Sonia Chamizo, Enrique G de la Riva, Beatriz Jiménez-Prieto, Juan José Jiménez, María Leo, Ana López-Velasco, Carmen Lorenzo, Manuel Esteban Lucas-Borja, Jesús Pérez-López, Pedro Antonio Plaza-Álvarez, Iván Prieto, Alejandro Terrones, Aurora Torres, Alba L Martos-Maestre, José Alberto Herrera Melián, Ulises Álvarez Ferraz, María José Sánchez García, Joana Costa, Eva García, Daniela Figueira, Felipe Bastida, Manuel Delgado-Baquerizo, Santiago Soliveres, Ana Beltrán-Sanahuja, Carlos Sanz-Lazaro

原始摘要(英文原文)· Original abstract
Cities concentrate most of the world's population and human activities, generating pollution that threatens ecosystem functioning and human well-being. Yet, the relative importance of different drivers shaping urban pollution and the spatial distribution of multiple contaminants across cities remain poorly understood. Here, we conducted a standardized survey in 250 plots across 51 cities in the Iberian Peninsula to quantify heavy metals, pesticides, macrolitter and microplastics. We sampled four urban greenspace types (parks, golf courses, urban farms, roundabouts) and nearby natural areas to link contaminants with soil microbiome structure and functioning. Urban parks, roundabouts and urban farms accumulated the highest metal levels, with several sites exceeding regulatory thresholds for Zn, Pb, Ni, and As, whereas golf courses showed lower contamination levels. Pesticides were detected across both urban and natural soils, with no significant differences in concentrations among land use types. In contrast, microplastic concentrations peaked in natural areas, indicating that regional transport and deposition processes can decouple their accumulation from local urban sources. Macrolitter was most abundant in parks and roundabouts, while golf courses exhibited the lowest densities, highlighting the influence of local management and access control. The level of soil contamination, as quantified by contamination indices, was correlated with microbial richness, community composition, and key soil functions. Pesticides were negatively associated with bacterial richness and redox activity, whereas macrolitter was negatively associated with phosphatase activity. Heavy metal contamination was associated with shifts in bacterial and fungal richness and with changes in soil respiration and phosphatase activity, reflecting a potential influence of heavy metals on microbial communities. This study highlights that land use and management shape soil contamination, soil biodiversity, and ecosystem functioning, emphasizing the need for mitigation actions to support the implementation of the EU Soil Strategy in cities.
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Urban land use and management drive soil pollution across urban and nearby natural ecosystems in the Iberian Peninsula. — 科研速览 Science Skim