Tire wear particles: An emerging threat to soil health
Figshare2022
Score: 35
?
0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Jing Ding,
Jing Ding,
Jing Ding,
Jing Ding,
Jing Ding,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Dong Zhu,
Dong Zhu,
Dong Zhu,
Dong Zhu,
Dong Zhu,
Eva F. Leifheit,
Eva F. Leifheit,
Dong Zhu,
Eva F. Leifheit,
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Matthias C. Rillig
Min Lv,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Jing Ding,
Dong Zhu,
Matthias C. Rillig
Qing‐Lin Chen,
Qing‐Lin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Jing Ding,
Jing Ding,
Yong‐Guan Zhu,
Matthias C. Rillig
Min Lv,
Min Lv,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Matthias C. Rillig
Min Lv,
Matthias C. Rillig
Matthias C. Rillig
Yunqing Wang,
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Yunqing Wang,
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Yunqing Wang,
Matthias C. Rillig
Yunqing Wang,
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Qing‐Lin Chen,
Yunqing Wang,
Dong Zhu,
Dong Zhu,
Eva F. Leifheit,
Matthias C. Rillig
Eva F. Leifheit,
Dong Zhu,
Eva F. Leifheit,
Dong Zhu,
Eva F. Leifheit,
Dong Zhu,
Matthias C. Rillig
Dong Zhu,
Eva F. Leifheit,
Matthias C. Rillig
Eva F. Leifheit,
Eva F. Leifheit,
Dong Zhu,
Matthias C. Rillig
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Qing‐Lin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Qing‐Lin Chen,
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Dong Zhu,
Min Lv,
Matthias C. Rillig
Dong Zhu,
Matthias C. Rillig
Qing‐Lin Chen,
Min Lv,
Qing‐Lin Chen,
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Eva F. Leifheit,
Matthias C. Rillig
Eva F. Leifheit,
Dong Zhu,
Dong Zhu,
Eva F. Leifheit,
Eva F. Leifheit,
Yunqing Wang,
Eva F. Leifheit,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Jing Ding,
Jing Ding,
Jing Ding,
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Matthias C. Rillig
Eva F. Leifheit,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Min Lv,
Dong Zhu,
Matthias C. Rillig
Eva F. Leifheit,
Matthias C. Rillig
Matthias C. Rillig
Qing‐Lin Chen,
Matthias C. Rillig
Qing‐Lin Chen,
Yunqing Wang,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Qing‐Lin Chen,
Yunqing Wang,
Matthias C. Rillig
Dong Zhu,
Yong‐Guan Zhu,
Dong Zhu,
Matthias C. Rillig
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Dong Zhu,
Lingxin Chen,
Qing‐Lin Chen,
Matthias C. Rillig
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Dong Zhu,
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Qing‐Lin Chen,
Yunqing Wang,
Yunqing Wang,
Yunqing Wang,
Min Lv,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Dong Zhu,
Matthias C. Rillig
Qing‐Lin Chen,
Lingxin Chen,
Yong‐Guan Zhu,
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Lingxin Chen,
Yong‐Guan Zhu,
Dong Zhu,
Yong‐Guan Zhu,
Lingxin Chen,
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Yong‐Guan Zhu,
Dong Zhu,
Lingxin Chen,
Matthias C. Rillig
Yong‐Guan Zhu,
Jing Ding,
Matthias C. Rillig
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Min Lv,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Lingxin Chen,
Lingxin Chen,
Dong Zhu,
Eva F. Leifheit,
Lingxin Chen,
Dong Zhu,
Lingxin Chen,
Dong Zhu,
Lingxin Chen,
Matthias C. Rillig
Dong Zhu,
Matthias C. Rillig
Yong‐Guan Zhu,
Dong Zhu,
Lingxin Chen,
Lingxin Chen,
Matthias C. Rillig
Qing‐Lin Chen,
Yong‐Guan Zhu,
Lingxin Chen,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Lingxin Chen,
Yong‐Guan Zhu,
Matthias C. Rillig
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Dong Zhu,
Matthias C. Rillig
Matthias C. Rillig
Lingxin Chen,
Matthias C. Rillig
Matthias C. Rillig
Matthias C. Rillig
Yong‐Guan Zhu,
Yong‐Guan Zhu,
Matthias C. Rillig
Yong‐Guan Zhu,
Matthias C. Rillig
Summary
This review synthesizes knowledge about tire wear particles — a major but often overlooked source of microplastic-like pollutants — in soil ecosystems. Tire wear particles contain toxic metals and organic compounds that harm soil microbes, invertebrates, and plants, but most research to date has focused on aquatic systems rather than soils.
Tire wear particles (TWP) have caused widespread contamination in the environment. However, their behavior and potential impacts in soil remain unclear since studies have so far been mainly conducted in aquatic ecosystems. It is possible that soil ecosystems are already under pressure from pollution by TWP. We here firstly synthesize knowledge about the composition, distribution, and behavior of TWP in soils. By comparing with effects of microplastics (MP) in soil, we further outline several potential impacts of TWP on soil biota and the underpinning mechanisms, and highlight the multiple pathways leading to adverse impacts of TWP on soil microbiota, soil fauna and plants. Furthermore, current knowledge about the effects of TWP is mostly based on single soil microbial species, which may underestimate the effects because of cascading consequences at the community and ecosystem levels. Therefore, more research is urgently needed to clarify the behavior and impacts of TWP from the individual organism to the Earth system level. We suggest that TWP may lead to changes in essential ecosystem services and multifunctionality, and therefore represent an emerging threat to soil health.