Register      Login
Soil Research Soil Research Society
Soil, land care and environmental research

Articles citing this paper

Effect of enhanced efficiency fertilisers on nitrous oxide emissions in a sub-tropical cereal cropping system

Clemens Scheer A D , David W. Rowlings A , Massimiliano De Antoni Migliorati A , David W. Lester B , Mike J. Bell C and Peter R. Grace A
+ Author Affiliations
- Author Affiliations

A Institute for Future Environments, Queensland University of Technology, Brisbane, Qld 4000, Australia.

B Queensland Department of Agriculture and Fisheries, PO Box 2282, Toowoomba, Qld 4350, Australia.

C Queensland Alliance for Agriculture and Food Innovation, School of Crop and Food Sciences, University of Queensland, Gatton, Qld 4343, Australia.

D Corresponding author. Email: clemens.scheer@qut.edu.au

Soil Research 54(5) 544-551 https://doi.org/10.1071/SR15332
Submitted: 10 November 2015  Accepted: 29 February 2016   Published: 6 July 2016



34 articles found in Crossref database.

The nitrification inhibitor DMPP (3,4-dimethylpyrazole phosphate) reduces N2 emissions from intensively managed pastures in subtropical Australia
Friedl Johannes, Scheer Clemens, Rowlings David W., Mumford Majella T., Grace Peter R.
Soil Biology and Biochemistry. 2017 108 p.55
No evidence for higher agronomic N use efficiency or lower nitrous oxide emissions from enhanced efficiency fertilisers in aerobic subtropical rice
Rose Terry J., Quin Peter, Morris Stephen G., Kearney Lee J., Kimber Stephen, Rose Michael T., Van Zwieten Lukas
Field Crops Research. 2018 225 p.47
Strategies for mitigating N2O and N2 emissions from an intensive sugarcane cropping system
Friedl Johannes, Warner Daniel, Wang Weijin, Rowlings David W., Grace Peter R., Scheer Clemens
Nutrient Cycling in Agroecosystems. 2023 125(2). p.295
Comparison of grain yields and N2O emissions on Oxisol and Vertisol soils in response to fertiliser N applied as urea or urea coated with the nitrification inhibitor 3,4-dimethylpyrazole phosphate
De Antoni Migliorati Massimiliano, Bell Mike, Lester David, Rowlings David W., Scheer Clemens, de Rosa Daniele, Grace Peter R.
Soil Research. 2016 54(5). p.552
Integrated field assessment of nitrogen release dynamics and crop recovery of band-applied controlled-release fertilisers
Martinez Cristina, Clarke Daniel, Dang Yash P., Janke Chelsea, Bell Michael J.
Plant and Soil. 2021 466(1-2). p.257
(2022)
Barton L., Hoyle F.C., Grace P.R., Schwenke G.D., Scanlan C.A., Armstrong R.D., Bell M.J.
Controlled release fertilizers (CRFs) for climate-smart agriculture practices: a comprehensive review on release mechanism, materials, methods of preparation, and effect on environmental parameters
Jariwala Hiral, Santos Rafael M., Lauzon John D., Dutta Animesh, Wai Chiang Yi
Environmental Science and Pollution Research. 2022 29(36). p.53967
Mitigation of nitrous oxide emissions from furrow-irrigated Vertosols by 3,4-dimethyl pyrazole tetra-methylene sulfone, an alternative nitrification inhibitor to nitrapyrin for direct injection with anhydrous ammonia
Schwenke Graeme, McPherson Annabelle
Soil Research. 2018 56(7). p.752
Maize production and nitrous oxide emissions from enhanced efficiency nitrogen fertilizers
Dang Yash P., Martinez Cristina, Smith Daniel, Rowlings David, Grace Peter, Bell Mike
Nutrient Cycling in Agroecosystems. 2021 121(2-3). p.191
Greenhouse gas (N2O and CH4) fluxes under nitrogen-fertilised dryland wheat and barley on subtropical Vertosols: risk, rainfall and alternatives
Schwenke Graeme D., Herridge David F., Scheer Clemens, Rowlings David W., Haigh Bruce M., McMullen K. Guy
Soil Research. 2016 54(5). p.634
An irrigated cotton farm emissions case study in NSW, Australia
Powell J.W., Welsh J.M., Eckard R.J.
Agricultural Systems. 2017 158 p.61
Urea-induced nitrous oxide emissions under sub-tropical rain-fed sorghum and sunflower were nullified by DMPP, partially mitigated by polymer-coated urea, or enhanced by a blend of urea and polymer-coated urea
Schwenke G. D., Haigh B. M.
Soil Research. 2019 57(4). p.342
Does 3,4-dimethylpyrazole phosphate or N-(n-butyl) thiophosphoric triamide reduce nitrous oxide emissions from a rain-fed cropping system?
Li Guangdi D., Schwenke Graeme D., Hayes Richard C., Xing Hongtao, Lowrie Adam J., Lowrie Richard J.
Soil Research. 2018 56(3). p.296
Evaluation of the effects of plastic mulching and nitrapyrin on nitrous oxide emissions and economic parameters in an arid agricultural field
Yu Yongxiang, Jia Hongtao, Zhao Chengyi
Geoderma. 2018 324 p.98
Urea-based nitrogen fertilization in agriculture: a key source of N2O emissions and recent development in mitigating strategies
Zhang Yingying, Wang Weijin, Yao Huaiying
Archives of Agronomy and Soil Science. 2023 69(5). p.663
Synthesis of microwave-mediated biochar-hydrogel composites for enhanced water absorbency and nitrogen release
Wu Yudi, Brickler Colten, Li Simeng, Chen Gang
Polymer Testing. 2021 93 p.106996
Seasonal rainfall distribution drives nitrogen use efficiency and losses in dryland summer sorghum
Rowlings David W., Lester David W., Grace Peter R., Scheer Clemens, De Rosa Daniele, De Antoni Migliorati Massimiliano, Friedl Johannes, Bell Michael J.
Field Crops Research. 2022 283 p.108527
Agronomic responses of grain sorghum to DMPP-treated urea on contrasting soil types in north-eastern Australia
Lester David W., Bell Michael J., Bell Kerry L., De Antoni Migliorati Massimiliano, Scheer Clemens, Rowlings David, Grace Peter R.
Soil Research. 2016 54(5). p.565
Can split or delayed application of N fertiliser to grain sorghum reduce soil N2O emissions from sub-tropical Vertosols and maintain grain yields?
Schwenke G. D., Haigh B. M.
Soil Research. 2019 57(8). p.859
Combined Application of Lime and a Nitrification Inhibitor (3,4-Dimethylpyrazole Phosphate) Markedly Decreased Nitrous Oxide Emissions from an Acid Soil
Das Shilpi, Wang Weijin, Reeves Steven, Dalal Ram C., Dang Yash P., Kopittke Peter M.
Agronomy. 2022 12(5). p.1040
DMPP-urea restricts nitrification in the first month without improving agronomic N use efficiency
Rose Terry J., Kearney Lee J., Zeng Yongjun, Van Zwieten Lukas, Rose Michael T.
Nutrient Cycling in Agroecosystems. 2023 126(1). p.115
Nitrification inhibitors can increase post-harvest nitrous oxide emissions in an intensive vegetable production system
Scheer Clemens, Rowlings David, Firrell Mary, Deuter Peter, Morris Stephen, Riches David, Porter Ian, Grace Peter
Scientific Reports. 2017 7(1).
Effect of the nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP) on N-turnover, the N2O reductase-gene nosZ and N2O:N2 partitioning from agricultural soils
Friedl Johannes, Scheer Clemens, Rowlings David W., Deltedesco Evi, Gorfer Markus, De Rosa Daniele, Grace Peter R., Müller Christoph, Keiblinger Katharina M.
Scientific Reports. 2020 10(1).
Three-dimensional dynamics of nitrogen from banded enhanced efficiency fertilizers
Janke Chelsea K., Moody Philip, Bell Michael J.
Nutrient Cycling in Agroecosystems. 2020 118(3). p.227
The nitrification inhibitor DMPP applied to subtropical rice has an inconsistent effect on nitrous oxide emissions
Rose Terry J., Morris Stephen G., Quin Peter, Kearney Lee J., Kimber Stephen, Van Zwieten Lukas
Soil Research. 2017 55(6). p.547
Greenhouse gas emission reductions in subtropical cereal-based cropping sequences using legumes, DMPP-coated urea and split timings of urea application
Schwenke Graeme D., Brock Philippa M., Haigh Bruce M., Herridge David F.
Soil Research. 2018 56(7). p.724
Modifying fertilizer rate and application method reduces environmental nitrogen losses and increases corn yield in Ontario
Banger Kamaljit, Wagner-Riddle Claudia, Grant Brian B., Smith Ward N., Drury Craig, Yang Jingyi
Science of The Total Environment. 2020 722 p.137851
Nitrous oxide emissions in response to long-term application of the nitrification inhibitor DMPP in an acidic luvisol
Dong Dan, Yang Weichao, Sun Hao, Kong Shuang, Xu Hui
Applied Soil Ecology. 2021 159 p.103861
Enhanced nitrogen fertiliser technologies support the ‘4R' concept to optimise crop production and minimise environmental losses
Snyder Clifford S.
Soil Research. 2017 55(6). p.463
Controlled traffic farming effects on productivity of grain sorghum, rainfall and fertiliser nitrogen use efficiency
Hussein Mahmood A., Antille Diogenes L., Kodur Shreevatsa, Chen Guangnan, Tullberg Jeff N.
Journal of Agriculture and Food Research. 2021 3 p.100111
Why are the benefits of enhanced-efficiency fertilizers inconsistent in the field? Prerequisite conditions identified from simulation analyses
Verburg Kirsten, Thorburn Peter J., Vilas Maria P., Biggs Jody S., Zhao Zhigan, Bonnett Graham D.
Agronomy for Sustainable Development. 2022 42(4).
Global Research Alliance N2O chamber methodology guidelines: Considerations for automated flux measurement
Grace Peter R., van der Weerden Tony J., Rowlings David W., Scheer Clemens, Brunk Christian, Kiese Ralf, Butterbach‐Bahl Klaus, Rees Robert M., Robertson G. Philip, Skiba Ute M.
Journal of Environmental Quality. 2020 49(5). p.1126
Assessing the vulnerability of food supply chains to climate change-induced disruptions
Tchonkouang Rose Daphnee, Onyeaka Helen, Nkoutchou Hugue
Science of The Total Environment. 2024 920 p.171047
Enhanced efficiency nitrogen fertilizers maintain yields and mitigate global warming potential in an intensified spring wheat system
Lyu Xiaodong, Wang Ting, Ma Zhongming, Zhao Chuanyan, Siddique Kadambot H.M., Ju Xiaotang
Field Crops Research. 2019 244 p.107624

Committee on Publication Ethics

Abstract Full Text PDF (304 KB) Export Citation Get Permission

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email