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Nitrogen, Phosphorus, and Potassium Flows through the Manure Management Chain in China

  • Zhaohai Bai
  • , Lin Ma
  • , Shuqin Jin
  • , Wenqi Ma
  • , Gerard L. Velthof
  • , Oene Oenema
  • , Ling Liu
  • , David Chadwick
  • , Fusuo Zhang
    • Institute of Genetic and Developmental Biology, Shijiazhuang.
    • Research Center for Rural Economy Ministry of Agriculture, Beijing
    • Agricultural University of Hebei
    • Wageningen University
    • China Agricultural University, Beijing

    Research output: Contribution to journalArticlepeer-review

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    Abstract

    The largest livestock production and greatest fertilizer use in the world occurs in China. However, quantification of the nutrient flows through the manure management chain and their interactions with management-related measures is lacking. Herein, we present a detailed analysis of the nutrient flows and losses in the “feed intake–excretion–housing–storage–treatment–application” manure chain, while considering differences among livestock production systems. We estimated the environmental loss from the manure chain in 2010 to be up to 78% of the excreted nitrogen and over 50% of the excreted phosphorus and potassium. The greatest losses occurred from housing and storage stages through NH3 emissions (39% of total nitrogen losses) and direct discharge of manure into water bodies or landfill (30–73% of total nutrient losses). There are large differences among animal production systems, where the landless system has the lowest manure recycling. Scenario analyses for the year 2020 suggest that significant reductions of fertilizer use (27–100%) and nutrient losses (27–56%) can be achieved through a combination of prohibiting manure discharge, improving manure collection and storages infrastructures, and improving manure application to cropland. We recommend that current policies and subsidies targeted at the fertilizer industry should shift to reduce the costs of manure storage, transport, and application.
    Original languageEnglish
    Pages (from-to)13409-13418
    JournalEnvironmental Science and Technology
    Volume50
    Issue number24
    Early online date15 Nov 2016
    DOIs
    Publication statusPublished - 2016

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 2 - Zero Hunger
      SDG 2 Zero Hunger

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