Exposure States, Environmental Fate, and Functional Effects of Microplastics in Soil: Bibliometric Mapping and Critical Mechanistic Synthesis
Yuhe Li, Su Yan, Xinting Lv, Yuxin Tian, Mingji Jin, Yue Quan, Yiran ZhengReported effects of microplastics in soil vary with particle properties, exposure conditions, and measured endpoints. We combined bibliometric mapping with a critical mechanistic synthesis to examine these differences. A 3200-record Web of Science Core Collection corpus was tested against broad (4787) and title-strict (2375) sensitivity corpora. A year-stratified manual relevance audit judged 115 of 120 sampled records (95.8%) to be in scope. An article-only subset of 2756 records retained positive directions for all twelve principal title-concept trends and preserved 112 of 119 primary co-citation nodes. Twelve title concepts increased consistently across corpus definitions and start years, led by plant and crop performance, biodegradable plastics, and aging and weathering. Only co-contamination and nitrogen cycling remained significant under every robust model specification. The mechanistic synthesis indicates that differences in particle state, soil-mediated contact, endpoints, and inferential scope can contribute to apparently contradictory findings. We propose an exposure-to-function framework that integrates exposure descriptors with a bounded sequence linking particle characterization, fate and biological contact, process change, functional consequences, and persistence or recovery. Risk and management claims should remain within the links supported by evidence.