Shoujuan Li
Chinese Academy of Sciences
13 Papers
10 Citations
Shoujuan Li is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Soil water & Soil horizon. The author has an hindex of 8, co-authored 12 publications.
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Papers
Bioaccumulation of antibiotics in crops under long-term manure application: Occurrence, biomass response and human exposure.
TL;DR: The estimated threshold of daily intake values suggests that the consumption of peanut kernels grown in field conditions with long-term manure application presents a moderate risk to human health.
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Distribution, dynamics and determinants of antibiotics in soils in a peri-urban area of Yangtze River Delta, Eastern China.
TL;DR: It is suggested that soil pH and organic matter closely correlated with the levels of antibiotics, and Actinobacteria was the predominant contributor to the biodegradation of antibiotics in this study area.
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Soil contamination with antibiotics in a typical peri-urban area in eastern China: Seasonal variation, risk assessment, and microbial responses.
TL;DR: The seasonal soil sampling campaigns were conducted in a typical peri-urban watershed in eastern China to investigate distribution of antibiotics, and the results provide an overview of the seasonal variability of antibiotics and the associated effects on bacterial communities in per-urban soils.
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Tracing the soil water response to autumn rainfall in different land uses at multi-day timescale in a subtropical zone
TL;DR: In this paper, the results of soil water content and isotopic compositions response to a typical rainfall in the subtropical zone in east China were analyzed, and the results showed that soil water recharge processes were varied in different land uses.
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Multimedia mass balance approach to characterizing the transport potential of antibiotics in soil-plant systems following manure application.
TL;DR: Mass balance approach based on tracking environmental fates of antibiotics can facilitate the understandings in the source comparisons and mitigation strategies, and therefore provide insights to inform modeling and limiting the transport of manure-borne antibiotics to neighboring environmental compartments.
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