Hybrid poplar short‐rotation coppices (SRC) provide feedstocks for bioenergy production and can be established on lands that are suboptimal for food production. The environmental consequences of deploying this production system on marginal agricultural land need to be evaluated, including the inv...
Díaz Pinés, Eugenio
,
Molina-Herrera, S.
,
Dannenmann, M.
,
Braun, J.
,
Haas, E.
,
Willibald, G.
,
Arias-Navarro, Cristina
,
Grote, R.
,
Wolf, B.
,
Saiz, G.
,
Aust, C.
,
Schnitzler, J.P.
,
Butterbach-Bahl, Klaus
,
[Nitrate leaching and soil nitrous oxide emissions diminish with time in a hybrid poplar short‐rotation coppice in southern Germany]
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Nitrate leaching and soil nitrous oxide emissions diminish with time in a hybrid poplar short‐rotation coppice in southern Germany
Balancing the nitrogen (N) budgets of agricultural systems is essential for sustaining yields at lower environmental costs. However, it is still rare to find reports on the total N budgets of agricultural systems including all N fluxes in the literature. Here, we conducted a comprehensive study o...
Minghua Zhou
,
Bo Zhu
,
Brüggemann, N.
,
Dannenmann, M.
,
Yanqiang Wang
,
Butterbach-Bahl, Klaus
,
[Sustaining crop productivity while reducing environmental nitrogen losses in the subtropical wheat-maize cropping systems: A comprehensive case study of nitrogen cycling and balance]
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Sustaining crop productivity while reducing environmental nitrogen losses in the subtropical wheat-maize cropping systems: A comprehensive case study of nitrogen cycling and balance
An alternative to conventional cultivation of rice on submerged paddy soil is the ground cover rice production system (GCRPS), in which soil is covered with a plastic film to reduce the use of irrigation water. However, reduced soil water, increased aeration and temperature under GCRPS could prom...
Zhe Chen
,
Shan Lin
,
Zhisheng Yao
,
Xunhua Zheng
,
Gschwendtner, S.
,
Schloterd, M.
,
Meiju Liu
,
Yanan Zhangb
,
Butterbach-Bahl, Klaus
,
Dannenmann, M.
,
[Enhanced nitrogen cycling and N2O loss in water-saving ground cover rice production systems (GCRPS)]
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Enhanced nitrogen cycling and N2O loss in water-saving ground cover rice production systems (GCRPS)