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亚热带地区蔬菜地甲烷净交换通量研究 被引量:1
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作者 奉小明 王凯 +3 位作者 郑循华 罗献宝 王睿 王东 《中国生态农业学报》 CSCD 北大核心 2018年第8期1091-1099,共9页
农田土壤是大气甲烷(CH_4)的重要源和汇,以往关于农田CH_4净交换通量的研究多关注水稻、小麦、玉米等作物,而蔬菜地的观测研究不足。本研究采用静态暗箱-气相色谱法对亚热带地区一块种植包菜的典型露天蔬菜地开展将近1年的田间原位CH_4... 农田土壤是大气甲烷(CH_4)的重要源和汇,以往关于农田CH_4净交换通量的研究多关注水稻、小麦、玉米等作物,而蔬菜地的观测研究不足。本研究采用静态暗箱-气相色谱法对亚热带地区一块种植包菜的典型露天蔬菜地开展将近1年的田间原位CH_4通量观测,以揭示蔬菜地CH_4净交换通量的周年变化特征及其影响因素,估算CH_4年累积净交换通量,并定量评估CH_4净交换通量的误差。本试验在包菜地的垄上和垄间同时布设观测点进行CH_4通量观测,并对环境因子进行同步测量,观测期为2016年1月1日至12月8日。结果表明,所研究的蔬菜地为大气CH_4的微弱汇,年平均通量为(-9.9±7.0)μg(C)×m^(-2)×h^(-1),全年累积通量为-0.84kg(C)×hm^(-2),较高的土壤水分条件和高施氮量可能是导致本研究蔬菜地CH_4吸收较弱的主要原因。全年CH_4累积通量的总体误差为-48%^-16%,其中,由于通量计算方法引起的系统误差会使估算的通量偏低32%,年尺度上的随机误差大小为16%,主要来自CH_4通量的空间差异,因此可适当增加空间重复,以减小空间随机误差。研究还发现垄上的CH_4吸收通量显著高于垄间(P<0.01),因此在开展农田温室气体通量观测时应兼顾垄上和垄间、种植行和行间等农田管理措施存在显著差异的区域,均布设观测点,避免对通量观测结果造成系统性偏差。 展开更多
关键词 亚热带蔬菜地 甲烷 净交换通量 静态箱法 年累积通量 通量误差
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Effects of acetylene at low concentrations on nitrification, mineralization and microbial biomass nitrogen concentrations in forest soils 被引量:1
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作者 ZHANG TengYu XU XingKai +3 位作者 luo xianbao HAN Lin WANG YingHong PAN GenXing 《Chinese Science Bulletin》 SCIE EI CAS 2009年第2期296-303,共8页
Temperate forest surface soils at the varying distances from main trunks (e.g., Pinus koraiensis and Quercus mongolica) were used to study the effects of acetylene (C2H2) at low concentrations on nitrification, minera... Temperate forest surface soils at the varying distances from main trunks (e.g., Pinus koraiensis and Quercus mongolica) were used to study the effects of acetylene (C2H2) at low concentrations on nitrification, mineralization and microbial biomass N concentrations of the soils, and to assess the contribution of heterotrophic nitrification to nitrous oxide (N2O) emissions from soils. The use of acetylene at partial pressures within a range from 10 to 100 Pa C2H2 in headspace gas gave a significant decrease in N2O emission at soil moisture of c. 45% water-filled porosity space, and the decrease was almost the same in each soil after exposure of C2H2 at low concentrations. Heterotrophic nitrification could account for 21%―48% of total N2O emission from each soil; the contribution would increase with increasing distances from the Pinus koraiensis trunks rather than from the Quercus mongolica trunks. Under the experimental conditions, the use of C2H2 at low concentrations showed no significant influ- ence on soil microbial biomass N, net N mineralization and microbial respiration. However, 100 Pa C2H2 in headspace gas could reduce carbon dioxide (CO2) emissions from soils. According to the rapid consumption of 10 Pa C2H2 by forest soils and convenience for laboratory incubations, 50 Pa C2H2 in headspace gas can be used to study the origin of N2O emissions from forest soils under aerobic con- ditions and the key associated driving mechanisms. The N2O and CO2 emissions from the soils at the same distances from the Quercus mongolica trunks were larger than those from the Pinus koraiensis trunks, and both emissions decreased as the distances from trunks increased. The stepwise regression analysis showed that 95% of the variability in soil CO2 emissions could be accounted for by the concentrations of soil total C and water soluble organic C and soil pH, and that 72% of the variability in soil N2O emissions could be accounted for by the concentrations of soil total N, exchangeable NH+4-N and microbial biomass N and 25% of the variability in heterotrophic nitrification by the soil microbial biomass N concentration. The emissions of N2O and CO2 from forest soils after exposure of C2H2 at low concentrations were positively related to the net nitrification of the soils. 展开更多
关键词 氮化合 森林土壤 微生物 周转基
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