نتایج جستجو برای: ch4

تعداد نتایج: 7336  

2014
Yongsheng Wang Shulan Cheng Huajun Fang Guirui Yu Minjie Xu Xusheng Dang Linsen Li Lei Wang

To date, few studies are conducted to quantify the effects of reduced ammonium (NH4+) and oxidized nitrate (NO3-) on soil CH4 uptake and N2O emission in the subtropical forests. In this study, NH4Cl and NaNO3 fertilizers were applied at three rates: 0, 40 and 120 kg N ha(-1) yr(-1). Soil CH4 and N2O fluxes were determined twice a week using the static chamber technique and gas chromatography. S...

2016
Haohao Wu Xingkai Xu Cuntao Duan Tuansheng Li Weiguo Cheng

There is limited knowledge about how the interaction of dissolved organic carbon (DOC) and inorganic nitrogen (N) released into the soil just after freezing can affect methane (CH4) uptake in forest soils. Here, we present how freezing treatment and glucose, as a DOC source, can affect the roles of NH4(+)-N and NO3(-)-N in inhibiting soil CH4 uptake, by using soil-core incubation experiments. A...

2014
Lorenna Machado Marie Magnusson Nicholas A. Paul Rocky de Nys Nigel Tomkins

This study aimed to evaluate the effects of twenty species of tropical macroalgae on in vitro fermentation parameters, total gas production (TGP) and methane (CH4) production when incubated in rumen fluid from cattle fed a low quality roughage diet. Primary biochemical parameters of macroalgae were characterized and included proximate, elemental, and fatty acid (FAME) analysis. Macroalgae and t...

2006
Arlene M. Fiore Larry W. Horowitz Edward J. Dlugokencky Jason West

[1] Over the past century, atmospheric methane (CH4) rose dramatically before leveling off in the late 1990s. The processes controlling this trend are poorly understood, limiting confidence in projections of future CH4. The MOZART-2 global tropospheric chemistry model qualitatively captures the observed CH4 trend (increasing in the early 1990s and then leveling off) with constant emissions. Fro...

2004
W. Liang J. Yue J. Wu Y. Shi G. H. Huang

Microbial biomass C, soil respiration and CH4 emissions were measured during the whole rice growth period in rice paddies in black earth. The results showed microbial biomass C and soil respiration were depressed significantly by application of slow-releasing urea at the early stage of rice growth period (P<0.05), but were almost not affected by intermittent irrigation . CH4 emission, on the av...

2005
Xianming Liu Donald E. Shemansky

Published experimental photon and electron impact ionization cross sections of CH4 have been reviewed and analyzed. Absolute partial ionization oscillator strengths (fij) for CH4 , CH + 3 , CH + 2 , CH , H and H2 have been obtained. Electron impact ionization cross sections are recommended based on agreement between the oscillator strength values derived from photoionization and electron impact...

2015
Niall P. McNamara Ruth Gregg Simon Oakley Andy Stott Md. Tanvir Rahman J. Colin Murrell David A. Wardle Richard D. Bardgett Nick J. Ostle R. Michael Lehman

Boreal forests occupy nearly one fifth of the terrestrial land surface and are recognised as globally important regulators of carbon (C) cycling and greenhouse gas emissions. Carbon sequestration processes in these forests include assimilation of CO2 into biomass and subsequently into soil organic matter, and soil microbial oxidation of methane (CH4). In this study we explored how ecosystem ret...

2013
Judith M. Schicks Erik Spangenberg Ronny Giese Manja Luzi-Helbing Mike Priegnitz

Since huge amounts of CH4 are bound in natural gas hydrates occurring at active and passive continental margins and in permafrost regions, the production of natural gas from hydrate-bearing sediments has become of more and more interest. Three different methods to destabilize hydrates and release the CH4 gas are discussed in principle: thermal stimulation, depressurization and chemical stimulat...

2017
Bin Han Xingliang Duan Yu Wang Kaikai Zhu Jing Zhang Ren Wang Huali Hu Fang Qi Jincheng Pan Yuanxin Yan Wenbiao Shen

Although aerobic methane (CH4) release from plants leads to an intense scientific and public controversy in the recent years, the potential functions of endogenous CH4 production in plants are still largely unknown. Here, we reported that polyethylene glycol (PEG)-induced osmotic stress significantly increased CH4 production and soluble sugar contents in maize (Zea mays L.) root tissues. These ...

2014
Chenghao Wang Shangbin Xiao Yingchen Li Huayao Zhong Xuechen Li Feng Peng

Indoor simulation experiment was carried out to evaluate the formation and consumption rates of methane (CH4) in Xiangxi Bay of the Three Gorges Reservoir (TGR), China. The results show that both the CH4 formation and consumption rates were significantly positively correlated with temperature. CH4 efflux decreased with rising temperature due to its potential increasing oxidation rate. CH4 oxida...

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