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12篇 您的检索式:作者名="Senbayram"
    题名 作者 年代 出处 被引量
1N2O emission and the N2O/(N2O+N2) product ratio of denitrification as controlled by available carbon substrates and nitrate concentrations显示文摘Senbayram M Chen R Budai A 2012Agriculture Ecosystems & Environment2012,147,:1
2N 2 O emission and the N 2 O/(N 2 O+N 2 ) product ratio of denitrification as controlled by available carbon substrates and nitrate concentrations显示文摘M. Senbayram R. Chen A. Budai L. Bakken K. Dittert 2011Agriculture, Ecosystems and Environment2011,,:1
3N20 emission and the N2 O/( N20 + N2 ) product ratio of denitrifleatlon as controlled by available carbon substrates and nitrate concentrations 显示文摘Senbayram M Chen R Budai A 2012Agriculture Ecosystems & Environment2012,147,:1
4Potassium in agriculture-status and perspectives显示文摘Z?rb C Senbayram M Peiter E 2014Journal of Plant Physiology2014,171,:1
5Potassium in agriculture – Status and perspectives显示文摘Christian Z?rb Mehmet Senbayram Edgar Peiter 2014Journal of Plant Physiology2014,,9:1
6Decomposition of biogas residues in soil and their effects on microbial growth kinetics and enzyme activities显示文摘Chen R Blagodatskaya E Senbayram M Blagodatsky S Myachina O Dittert K Kuzyakov Y 0,,:1
7Potassium inagriculture-status and perspectives显示文摘Z Orb C Senbayram M Peiter E 2014Journal ofPlant Physiology2014,171,9:1
8Low nitrogen supply decreases water-use efficiency of oriental tobacco 显示文摘Brueck H Senbayram M 2009J Plant Nutr Soil Sci2009,172,2:1
9Potassium in agriculture- Status and perspectives 显示文摘Christian Zorb Mehmet Senbayram Edgar Peiter 2014Journal of Plant Physiology2014,171,:1
10Soil C and N availability determine the priming effect: microbial N mining and stoiehiometric decomposition theories 显示文摘Chen R Senbayram M Blagodatsky S 2014Global Change Biology2014,20,7:1
11Potassium in agriculture- Status and perspectives 显示文摘ZORB C SENBAYRAM M PEITER E 2014Journal of Plant Physiology2014,171,9:1
12Biochar amendment alters the partitioning of nitrate reduction by significantly enhancing DNRA in a paddy field显示文摘Using 15N tracer technique,we investigated the potential rates of denitrification,anaerobic ammonium oxidation,dis-similatory nitrate reduction to ammonium(DNRA),and their partitioning among nitrate reduction,as well as the N_(2)O emission rates in a paddy soil receiving various biochar(0%,0.03%,0.1%,0.5%,and 1.0%;w/w)and straw(0.1%)over six consecutive years.Results showed that except for the 1.0%amendment treatment,biochar significantly(P<0.05)increased denitrification rates by 10.19‒75.96%compared with non-biochar amended treatment,and that biochar significantly(P<0.05)increased DNRA rates by 1.63‒6.84 folds relative to non-biochar amended treatment.Conse-quently,biochar shifted more NO3-partitioning toward DNRA process,as suggested by the increased DNRA/(denitri-fication+DNRA)ratios from 1.60 to 13.18%.On the other hand,biochar significantly(P<0.05)reduced N_(2)O emission rates by 61.86-97.65%accompanied by a significant decrease in N_(2)O/(N_(2)O+N_(2))ratios(65.29-98.39%),indicating bio-char amendment facilitated the reduction of N_(2)O to N_(2).The promoting effects of biochar on DNRA rates and DNRA/(denitrification+DNRA)ratios were attributed to the increased carbon availability and the altered nitrate reducer communities.Collectively,our study suggests that biochar amendment in the paddy soil is helpful for N conservation by favoring nitrate partitioning toward DNRA process,which deepens our understanding of how biochar mediates N cycling in the paddy field.Zhijun Wei Mehmet Senbayram Xu Zhao Chenglin Li Ke Jin Min Wu M.Mizanur Rahman Jun Shan Xiaoyuan Yan 2022Biochar2022,4,1:0
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