首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
南极菲尔德斯半岛植被微区CO2浓度的监测   总被引:2,自引:0,他引:2  
在南极苔藓植被的微环境区内,CO2的浓度在473.5mg·m-3以上,大大高于全球CO2的平均浓度(356 mg·m-3),可见苔藓等植被区可能是大气CO2的源之一.这与特殊的南极条件下植被的生理生态特性有关.在苔藓分布区,CO2浓度日变化的主要影响因素是光照和温度.菲尔德斯半岛变化无常的天气状况使得CO2浓度昼夜变化规律出现局部波动,不同的天气状况也使CO2浓度发生变化.研究表明:光照条件是CO2浓度变化的主导影响因素,从CO2浓度的季节变化中可以看出,CO2浓度变化与大气温度呈负相关;与降水量和空气相对湿度呈正相关.本文首次给出了极地环境下植被微区的CO2浓度变化及其影响因素,为极地温室气体的研究提供了新的材料.  相似文献   

2.
CO2倍增条件下不同生育期水稻碳氮磷含量及其计量比特征   总被引:1,自引:0,他引:1  
生态化学计量比的变化特征在一定程度上可反映植物对环境条件变化适应的本质.本研究利用CO_2连续标记系统模拟大气CO_2体积分数升高(800×10-6)条件,探讨水稻各器官C、N、P含量及其计量比变化的特征.结果表明,CO_2倍增促进水稻各器官生长,并增加了根冠比.在植株生长过程中CO_2倍增可一定程度上降低不同生育期内秸秆全氮(TN)含量,同时使得水稻根系、秸秆和籽粒的C/N比值增大,降低N和提高P的利用效率.多重比较和韦恩图分析表明CO_2体积分数仅对水稻秸秆TN有着显著影响,对水稻养分含量及其计量比特征的变异解释率均为-1. 0%,即几乎不受CO_2倍增影响.在大气CO_2体积分数升高条件下,水稻各器官C、N、P含量及其计量比具有良好的计量学内稳性特征,同时在不同生育期内其计量比变化特征与"生长速率理论"相符.在农田管理措施中,可适当施加氮肥来缓解CO_2体积分数升高带来的养分平衡压力.  相似文献   

3.
Temporary Carbon Sequestration Cannot Prevent Climate Change   总被引:1,自引:0,他引:1  
Storing carbon in biosphere sinks can reduce atmospheric CO2 concentrations in the short term. However, this lowers the concentration gradient between the atmosphere and the oceans and other potential carbon reservoirs, and consequently reduces the rate of CO2 removal from the atmosphere. If carbon is released again from that temporary storage, subsequent atmospheric CO2 concentrations will, therefore, be higher than without temporary carbon storage. It is thus important to analyse whether temporary carbon storage in biosphere sinks can mitigate climate-change impacts. To analyse that, climate-change impacts need to be quantified explicitly. Impacts can be quantified:
  1. as the instantaneous effect of increased temperature
  2. through the rate of temperature increase
  3. as the cumulative effect of increased temperatures.
The analysis presented here shows that temporary carbon storage only reduces climate-change impacts related to the cumulative effect of increased temperature and could even worsen impacts mediated via the instantaneous effect of temperature or the rate of temperature change. This applies under both high and low greenhouse-gas emission scenarios. Because temporary carbon storage improves some, but worsens other, climate-change impacts, it achieves very little on average. For greenhouse mitigation, it is, therefore, not warranted to provide policy incentives for temporary carbon storage.  相似文献   

4.
Carbon dioxide (CO2) is one of the primary greenhouse gases that contribute to climate change. Consequently, emission reduction technologies will be needed to reduce CO2 atmospheric concentration. Microalgae may have an important role in this context. They are photosynthetic microorganisms that are able to fix atmospheric CO2 using solar energy with efficiency ten times higher than terrestrial plants. The objectives of this study were: (i) to analyse the effect of light supply on the growth of Chlorella vulgaris and Pseudokirchneriella subcapitata; (ii) to assess the atmospheric CO2 capture by these microalgae; and (iii) to determine the parameters of the Monod model that describe the influence of irradiance on the growth of the selected microalgae. Both microalgae presented higher growth rates with high irradiance values and discontinuous light supply. The continuous supply of light at the highest irradiance value was not beneficial for C. vulgaris due to photooxidation. Additionally, C. vulgaris achieved the highest CO2 fixation rate with the value of 0.305 g-CO2 L?1 d?1. The parameters of the Monod model demonstrated that C. vulgaris can achieve higher specific growth rates (and higher CO2 fixation rates) if cultivated under higher irradiances than the studied values. The presented results showed that microalgal culture is a promising strategy for CO2 capture from atmosphere.  相似文献   

5.
Strict air pollution control measures were conducted during the Youth Olympic Games(YOG) period at Nanjing city and surrounding areas in August 2014.This event provides a unique chance to evaluate the effect of government control measures on regional atmospheric pollution and greenhouse gas emissions.Many previous studies have observed significant reductions of atmospheric pollution species and improvement in air quality,while no study has quantified its synergism on anthropogenic CO2...  相似文献   

6.
农田土壤N2O产生的关键微生物过程及减排措施   总被引:27,自引:7,他引:27  
氧化亚氮(N2O)作为一种重要的温室气体,其全球排放总量仍然在持续上升.它不仅可以产生温室效应,还可以间接破坏臭氧层,使其在全球气候变化和生态环境变化研究中备受关注.土壤生态系统是大气中N2O的最重要排放源.本文详细论述了农田土壤中反硝化作用、硝化作用、硝化微生物的反硝化作用以及硝酸盐异化还原成铵作用等过程产生N2O的微生物学机制,并从土壤理化性质(土壤pH、氮素、有机质、土壤温度和湿度)和土壤生物等方面对农田土壤N2O排放的影响进行综述,在此基础上对农田土壤N2O的减排措施进行总结,并就今后农田土壤N2O排放的研究重点和方向进行了展望,为调控农田土壤温室气体排放、氮转化过程和提高氮素利用效率提供科学依据.  相似文献   

7.
A set of global greenhouse gas emission inventories has been compiled per source category for the 1990 annual emissions of the direct greenhouse gases CO2, CH4 and N2O, as well as of the indirect greenhouse gases (ozone precursors) CO, NOx and NMVOC, and of SO2. The inventories are available by sector, both on a per country/region basis and on a 1°×1° grid. Developed by TNO and RIVM for constructing the Emission Database for Global Atmospheric Research (EDGAR) Version 2.0, in co-operation with the Global Emission Inventory Activity (GEIA) of IGAC/IGBP, the inventories meet the needs of both policy-makers and atmospheric modellers. The data sources for activity data, emission factors and grid maps are discussed with the focus on anthropogenic sources of primarily CO2, CH4 and N2O. The estimates of a standard group of anthropogenic sources are presented for each compound per world region.  相似文献   

8.
Azolla pinnata was grown out-of-doors at Phoenix, AZ, U.S.A. in open-topped plastic-walled chambers supplied with either 340 or 640 μl CO2l−1 air. Net photosynthesis and growth rate were measured weekly between September 1985 and May 1986 and a significant (P < 0.01) positive correlation was established between these two parameters in both CO2 environments. Regression coefficients for the linear regression of growth rate onto net photosynthesis were not significantly different in the two CO2 environments, indicating that the rate of growth per unit of CO2 uptake is not influenced by an atmospheric CO2 concentration - environment interaction.  相似文献   

9.
淡水生态系统温室气体(CO_2、CH_4、N_2O)排放是全球气候变化背景下的研究热点。水生植物作为淡水生态系统重要的组成部分,对水体生源要素的生物地球化学循环过程具有重要影响,进而影响水体温室气体产生与排放。本研究基于目前水生植物与水体温室气体排放关系的研究,探讨了水生植物对淡水生态系统温室气体排放动力学过程的影响,提出水生植物分布区可能是温室气体排放热点;水生植物种类、生活型的多样性增加了水体温室气体排放的变异性和不确定性,对监测和估算方法的准确性产生一定影响;进一步总结了水生植物对淡水生态系统温室气体排放的影响机制:1)机械作用,包括气体传输通道作用和浮叶植物的滞留作用; 2)水生植物光合/呼吸作用参与水体碳循环,同时水生植物凋落物分解为水体代谢提供新鲜碳、氮源,提高温室气体产生速率; 3)改变根际厌氧环境,影响根际CH_4和N_2O产生与排放; 4)水生植物群落改变水体生态因子分配格局,影响水体异养代谢等。基于当前研究现状,本文提出要进一步开展不同尺度或不同生境条件下水生植物种类、生活型和生长代谢等对水体温室气体排放动力学的影响研究,并从水生植物群落尺度构建温室气体排放动力学模型,优化监测方法与估算模型,为推进我国淡水生态系统温室气体排放研究提供理论基础。  相似文献   

10.
Fossil fuel combustion and many industrial processes generate gaseous emissions that contain a number of toxic organic pollutants and carbon dioxide (CO2) which contribute to climate change and atmospheric pollution. There is a need for green and sustainable solutions to remove air pollutants, as opposed to conventional techniques which can be expensive, consume additional energy and generate further waste. We developed a novel integrated bioreactor combined with recyclable iron oxide nano/micro-particle adsorption interfaces, to remove CO2, and undesired organic air pollutants using natural particles, while generating oxygen. This semi-continuous bench-scale photo-bioreactor was shown to successfully clean up simulated emission streams of up to 45% CO2 with a conversion rate of approximately 4% CO2 per hour, generating a steady supply of oxygen (6 mmol/hr), while nanoparticles effectively remove several undesired organic by-products. We also showed algal waste of the bioreactor can be used for mercury remediation. We estimated the potential CO2 emissions that could be captured from our new method for three industrial cases in which, coal, oil and natural gas were used. With a 30% carbon capture system, the reduction of CO2 was estimated to decrease by about 420,000, 320,000 and 240,000 metric tonnes, respectively for a typical 500 MW power plant. The cost analysis we conducted showed potential to scale-up, and the entire system is recyclable and sustainable. We further discuss the implications of usage of this complete system, or as individual units, that could provide a hybrid option to existing industrial setups.  相似文献   

11.
陶宝先 《环境科学研究》2017,30(12):1927-1933
为研究我国北方典型设施菜地的土壤CO2排放特征及其影响因素,通过原位监测手段,研究山东省寿光市农田转变为不同种植年限(6、12 a)设施菜地及设施菜地荒废12 a后土壤CO2排放规律及影响因素.结果表明:①种植6 a设施菜地较农田具有较高的土壤CO2排放量,可能是由于设施菜地种植过程中大量施加有机肥造成的,并且设施菜地土壤温度及含水率较高,增加了土壤蔗糖酶活性,加剧土壤CO2排放.②当种植年限超过10 a,设施菜地施肥量减少,降低了土壤微生物可利用底物的供应.因此,种植12 a设施菜地土壤CO2排放量降至农田水平.③种植6 a设施菜地土壤的w(DOC)(DOC表示水溶性有机碳)比农田较高.④土壤CO2排放年内分配不均匀,表现为农田及荒废设施菜地土壤CO2排放主要集中在5—8月,其排放量占全年的75.09%、87.02%,峰值出现在7月.种植6 a设施菜地土壤CO2排放主要集中在5—8月和11月—翌年2月,两阶段排放量分别占全年的48.48%、42.34%,峰值分别出现在7月、12月.研究显示,农田转变为设施菜地短期(种植6 a)内可显著促进土壤CO2排放及DOC的输出,但随着种植年限延长至12 a,土壤CO2排放降至农田水平.   相似文献   

12.
瓦里关气相色谱法大气CO_2和CH_4在线观测数据处理分析   总被引:3,自引:2,他引:1  
加强我国本底站温室气体数据资源的科学管理与共享,首先应保证观测全流程的标准化和规范化,确立数据处理和质量控制方法.我国青海瓦里关全球本底站自1994年开始了气相色谱-氢火焰离子化检测器法(GC-FID)大气CO2和CH4在线观测,本文详细讨论了该系统原始资料采集、数据信息合并、时间序列检查、观测员级质量控制和专家级质量控制等流程.利用局部近似回归法对大气CO2和CH4数据进行本底值筛分,获得CO2本底数据百分比约占有效数据的72%、CH4占44%.在线观测的CO2和CH4月平均浓度与同期瓶采样分析结果基本一致,相对偏差均在±0.5%以内.经流程化处理和质控的瓦里关大气CO2和CH4本底浓度变化资料已进入全球同化数据库(Globalview-CO2、Globalview-CH4),报送世界温室气体数据中心(WDCGG)并应用于世界气象组织(WMO)温室气体公报和联合国政府间气候变化专门委员会(IPCC)评估.  相似文献   

13.
We applied a terrestrial net primary production (NPP) model driven by satellite remote sensing observations of vegetation properties and daily surface meteorology from a regional weather forecast model to assess NPP spatial and temporal variability for the pan-Arctic basin and Alaska from 1982 to 2000. Our results show a general decadal trend of increasing NPP for the region of approximately 2.7%, with respective higher (3.4%) and lower (2.2%) rates for North America and Eurasia. NPP is both spatially and temporally dynamic for the region, driven largely by differences in productivity rates among major biomes and temporal changes in photosynthetic canopy structure and spring and summer air temperatures. Mean annual NPP for boreal forests was approximately 3 times greater than for Arctic tundra on a unit area basis and accounted for approximately 55% of total annual carbon sequestration for the region. The timing of growing season onset inferred from regional network measurements of atmospheric CO2 drawdown in spring was inversely proportional to annual NPP calculations. Our findings indicate that recent regional warming trends in spring and summer and associated advances in the growing season are stimulating net photosynthesis and annual carbon sequestration by vegetation at high latitudes, partially mitigating anthropogenic increases in atmospheric CO2. These results also imply that regional sequestration and storage of atmospheric CO2 is being altered, with potentially greater instability and acceleration of the carbon cycle at high latitudes.  相似文献   

14.
建立科学规范的本底大气CO2采样观测分析过程中的质量保证与质量控制方法,是实现该数据资源同化和共享的基础.本研究以中国气象局温室气体网络化采样观测经验为基础,以便携式采样观测、波长扫描-光腔衰荡(WS-CRDS)分析技术为例,系统介绍了我国青海瓦里关全球本底站大气中CO2采样观测过程中的质量保证措施,样品分析过程中的玻璃瓶质量保证措施和样品分析过程中的系统质量控制方法、数据处理过程中的校正方法、数据分级质量标记和数据拟合插补方法等;并重点对该方法中几个关键步骤进行了评估验证;最后,应用本研究方法,对我国3个区域大气本底站CO2的采样观测数据进行了处理和浓度变化特征分析,说明本研究方法也可以较好地捕捉区域和局地环境因素影响对观测结果的影响,并客观、准确地反映该区域的自然和人为活动特征.  相似文献   

15.
要有效地减少城市碳排放和正确地判断城市现有减排措施的有效性就必须准确地确定城市大气CO2的来源.由于碳同位素比从污染源到受体的传输过程中同位素分馏现象不明显,本研究建立了一套基于碳同位素比技术定量估算城市大气CO2来源的方法,并用该方法初步定量分析了上海市嘉定区大气CO2中来自燃煤、机动车尾气和生物质贡献的时空分布.上海市嘉定区大气CO2的上述3种来源中,生物质的贡献最大.燃煤的贡献在夜间(00:00、04:00和20:00)多于白天(08:00、12:00和16:00),且随高度的升高而增大;机动车尾气的贡献则随高度的升高而降低.大气CO2浓度时空分布特征体现了上海市郊嘉定区大气CO2的排放特征和各来源的传输特性.  相似文献   

16.
We have found that giant hornets (Vespa mandarinia japonica) are killed in less than 10 min when they are trapped in a bee ball created by the Japanese honeybees Apis cerana japonica, but their death cannot be solely accounted for by the elevated temperature in the bee ball. In controlled experiments, hornets can survive for 10 min at the temperature up to 47°C, whereas the temperature inside the bee balls does not rise higher than 45.9°C. We have found here that the CO2 concentration inside the bee ball also reaches a maximum (3.6 ± 0.2%) in the initial 0–5 min phase after bee ball formation. The lethal temperature of the hornet (45–46°C) under conditions of CO2 concentration (3.7 ± 0.44%) produced using human expiratory air is almost the same as that in the bee ball. The lethal temperature of the honeybee is 50–51°C under the same air conditions. We concluded that CO2 produced inside the bee ball by honeybees is a major factor together with the temperature involved in defense against giant hornets.  相似文献   

17.
The UN Framework Convention on Climate Change and the Kyoto protocol made under the Convention, aim at controlling the greenhouse gas emissions and their concentrations in the atmosphere. The contributions of fossil fuel use in industrial and developing countries to the atmospheric CO2 concentration are calculated using estimates for emission developments and a simple carbon cycle model. The contribution of the industrial countries to the CO2 concentration increase, above the preindustrial level, is estimated to be about 50 ppm in 1990 if only the emissions from fossil fuels are considered. The contribution from developing countries is about 15 ppm. The contribution from industrial countries would increase by about 20 ppm between 1990 and 2010 if no emission reductions were assumed and by about 15 ppm in the considered rather strict reduction scenario. According to the Kyoto protocol the emissions from industrial countries should be reduced by 5.2% from the 1990 level in about 20 years. This development of the emissions would cause a concentration increase of 18 ppm. The concentration increase due to developing countries between 1990 and 2010 would be about 15 ppm. In order that the present global increase rate of CO2 concentration 1.5 ppm/a would not be exceeded, steeper reductions than those made in Kyoto should be agreed. Increasing global emissions and slow removal of CO2 from the atmosphere makes it difficult to reach the ultimate objective of the Climate Convention, the stabilisation of the atmospheric concentration.  相似文献   

18.
河口潮滩湿地CH4、CO2排放通量对氮硫负荷增强的响应   总被引:2,自引:1,他引:1  
以闽江河口区高、中潮滩短叶茳芏湿地为研究对象,于2014年6—11月植物生长季进行氮硫负荷增强实验,利用静态箱-气象色谱法测定土壤CH_4、CO_2排放通量,并同步观测相关环境因子.结果表明,氮硫负荷增强对潮滩湿地CH_4、CO_2排放通量的影响不尽一致.与对照相比,NH_4~+-N输入使高、中潮滩CH4排放通量分别提高了(107.53%,7.19%),使高潮滩CO_2排放通量增加了3.39%,中潮滩减少了3.00%;NO_3~--N输入使高潮滩CH4、CO_2排放通量分别增加了(29.99%,16.99%),使中潮滩分别减少了(3.45%,4.77%);SO_4~(2-)-S输入使高、中潮滩CH4排放通量分别减少了(8.99%,7.67%),使高潮滩CO_2排放通量减少了3.87%,中潮滩增加了5.44%;N-S复合输入使高、中潮滩CH4排放通量分别提高了(72.48%,25.66%),CO_2排放通量提高了(13.32%,13.48%).氮硫负荷增强改变了短叶茳芏沼泽生长季CH_4、CO_2排放通量变化规律,但除了NH+4-N处理对高潮滩CH4通量的影响显著外,其他处理影响均未达到显著性水平.相关分析显示,高、中潮滩湿地CH_4、CO_2排放通量与土壤温度,含水率具有显著的正线性相关关系,与土壤电导率相关性不显著.在全球环境问题日益严重背景下,系统研究湿地生态系统温室气体排放的机制与规律,对于准确估算全球温室气体排放量具有重要而直接的意义.  相似文献   

19.
"温室效应"日趋严重,生物固碳特别是微生物固碳将发挥独特的作用.固定N2的微生物固氮菌和固定CO2的微生物固碳菌早已被研究和发现,但能同时固定大气中的CO2、N2并以CO2、N2分别为碳、氮源的微生物至今未见报道,本研究称之为兼性固CO2、N2菌.研究通过固碳菌、固氮菌培养基的优化组合出无碳、氮培养基(分别以空中的CO2、N2为碳源和氮源);通过无氮碳源的兼性固碳氮菌培养基进行分离,筛选分离到一株分别以CO2和N2为碳源和氮源.通过对该菌株的生长特性和固碳酶活性及固氮酶活性进行测定;利用PCR和琼脂糖凝胶电泳技术检测到该菌含有固碳酶RubisCO中cbbL基因及固氮酶nifH基因片段的特异性条带;对该菌进行对照验证实验证明该菌能同时固定空气中的CO2和N2并分别以CO2和N2为碳源和氮源;最后对其形态观察和16SrRNA全序列分析证明该菌株HSJ隶属于链霉菌.  相似文献   

20.
Plant biomass is known to increase in response to elevated atmospheric CO2 concentration (pCO2); however, no experiments have quantified the trajectory of crop fertilization across the full range of pCO2 levels estimated for the next 300 years. Here we quantify the above- and below-ground biomass response of Raphanus sativus (common radish) across eight pCO2 levels ranging from 348 to 1791 ppmv. We observed a large net biomass increase of 58% above ground and 279% below ground. A large part of the net increase (38% of the above-ground and 53% of the below-ground) represented biomass fertilization at the high levels of pCO2 (700–1791 ppmv) predicted if fossil fuel emissions continue unabated. The trajectory of below-ground fertilization in R. sativus greatly exceeded a trajectory based on extrapolation of previous experiments for plants grown at pCO2 < 800 ppmv. Based on the experimental parameters used to grow these plants, we hypothesize that these experiments represent the maximum CO2 fertilization that can be achieved for this plant growing under low light levels. If the below-ground biomass enhancement that we have quantified for R. sativus represents a generalized root-crop response that can be extrapolated to agricultural systems, below-ground fertilization under very high pCO2 levels could dramatically augment crop production in some of the poorest nations of the world, provided that water resources are sufficient and sustainable.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号