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Shuwei Liu

Researcher at Nanjing Agricultural University

Publications -  53
Citations -  2197

Shuwei Liu is an academic researcher from Nanjing Agricultural University. The author has contributed to research in topics: Paddy field & Fertilizer. The author has an hindex of 20, co-authored 43 publications receiving 1394 citations.

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Response of soil carbon dioxide fluxes, soil organic carbon and microbial biomass carbon to biochar amendment: a meta‐analysis

TL;DR: In this paper, a review of 50 papers with 395 paired observations were reviewed using meta-analysis procedures to examine responses of soil carbon dioxide (CO2) fluxes, soil organic C (SOC), and soil microbial biomass C (MBC) contents to biochar amendment.
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Methane and nitrous oxide emissions from organic and conventional rice cropping systems in Southeast China

TL;DR: In this article, the impacts of organic cropping system on global warming potentials were evaluated in conventional and organic rice (Oryza sativa L.) cropping systems in southeast China.
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A meta-analysis of fertilizer-induced soil NO and combined NO+N2O emissions

TL;DR: Detailed data derived from 114 peer-reviewed publications with 520 field measurements were synthesized using meta-analysis procedure to examine the N fertilizer-induced soil NO and the combined NO+N2 O emissions across global soils to mitigate soil NO emissions.
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Changes in fertilizer‐induced direct N2O emissions from paddy fields during rice‐growing season in China between 1950s and 1990s

TL;DR: In this article, the authors estimate the changes in direct N2O emissions from paddy fields during the rice-growing season in Mainland of China between the 1950s and the 1990s, the country-specific emission factors of N 2O-N under different water regimes combined with rice production data were adopted in the present study.
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Effects of water regime during rice-growing season on annual direct N2O emission in a paddy rice–winter wheat rotation system in southeast China

TL;DR: A field experiment in a rice-winter wheat rotation system was conducted to gain an insight into the water regime-specific emission factors and background emissions of nitrous oxide (N(2)O) over the whole annual cycle.