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1.
降水变化对荒漠草原土壤呼吸的影响   总被引:2,自引:1,他引:1  
全球气候变化使得降水格局发生显著改变.土壤呼吸作为土壤碳库向大气释放CO2的重要途径,其对降水变化的响应可能会影响陆地生态系统碳循环进程,并对全球气候变化产生反馈作用,但目前关于土壤呼吸对降水变化的响应没有一致的结论.以黄土高原西部荒漠草原为对象,通过野外降水控制实验减水40%(-40%)、减水20%(-20%)、自然降水、增水20%(20%)和增水40%(40%),探究降水变化对土壤呼吸动态的影响及其与土壤含水量、土壤温度、地上生物量、土壤有机碳、微生物量碳和碳氮比(有机碳总氮比)等因素的关系.结果表明,在3 a期间不同降水处理下土壤呼吸的日变化呈现较一致的单峰和双峰模式.土壤呼吸随降水量的增加均呈增加趋势,且相较对照,土壤呼吸在降水控制实验第二年(偏湿年份)和第三年(偏干年份)表现出显著差异,表明降水变化对土壤呼吸产生了遗留效应.同时,相比对照,偏湿年土壤呼吸在-40%处理下显著最低,在40%处理下显著最高,土壤呼吸对减水处理的负响应强于对增水处理的正响应;偏干年土壤呼吸在增水处理下显著高于对照,且对增水处理的正响应明显强于减水处理.此外,土壤含水量、地上生物量、土壤有机碳和碳氮比是显著影响土壤呼吸的环境因子,且随降水量的增加而增加;土壤呼吸随土壤含水量、地上生物量、土壤有机碳和碳氮比的增加而增加,随微生物量碳的增加而减少,其中土壤含水量对土壤呼吸的解释率最高,这表明土壤含水量是控制荒漠草原区土壤呼吸的主要环境因子.无论在偏湿或偏干年份,降水变化下,植物生物量输入幅度均低于土壤呼吸输出幅度,表明降水变化可能不利于土壤碳固存,尤其偏干年份降水变化对碳库输出的影响更强.因此,荒漠草原区不同干湿年份降水变化对土壤呼吸的影响可能对生态系统碳循环过程产生不同的影响,进而为区域碳预算评估提供参考.  相似文献   

2.
土壤呼吸和有机碳对增温的响应及其影响因素分析   总被引:1,自引:0,他引:1  
增温是影响土壤呼吸和有机碳变化的一个重要因素,但近年来关于增温对土壤呼吸和有机碳影响的研究结果存在不一致的情况。本研究利用从国内外已发表的128篇研究论文中提取的有效数据进行Meta分析,探讨了增温对土壤呼吸和有机碳的影响。结果表明:(1)增温促进了土壤二氧化碳的排放并降低了土壤有机碳的含量,增温对土壤呼吸的影响程度(11.7%)明显大于对土壤有机碳的影响程度(4.4%)。(2)相较于其他生态系统,增温对森林生态系统的土壤呼吸和有机碳的影响程度最小,分别为9.3%、4.1%。(3)土壤呼吸对增温的响应与增温幅度之间呈二次负相关,且<2℃的增温对土壤呼吸和有机碳的影响最大;增温时间的延长不利于土壤碳的释放,土壤呼吸作用随着增温时间延长对温度升高产生了一定的适应性。以上研究结果进一步强化了增温对土壤呼吸和有机碳影响的理解。  相似文献   

3.
微生物碳源利用效率(CUE)是指微生物将吸收的碳(C)转化为自身生物量C的效率,土壤微生物CUE的研究对深入认识土壤C循环过程十分重要.利用18 O-H2 O-DNA标记法,研究戴云山不同海拔(980~1765 m)天然林土壤微生物CUE、微生物生长速率(Cgrowth)和呼吸速率(Crespiration)的变化特征和影响机制.结果表明,微生物CUE在0.1~0.4之间变化,并随海拔升高而增加;微生物CUE与CgrowthCrespiration和单位微生物生长正相关,而与呼吸熵负相关,说明随海拔的增加,微生物通过增加个体生长和抑制个体呼吸来提高CUE;温度是影响CUE的主要因素,微生物CUE与温度负相关,说明随海拔增加,温度下降是促进土壤微生物CUE升高的关键因素.  相似文献   

4.
北极陆地生态系统的碳循环与全球温暖化   总被引:17,自引:0,他引:17  
根据最新研究资料,综述并分析了全球温暖化与北极陆地生态系统碳循环的关系,指出近代全球大气CO2和CH4浓度显著增加,并呈现日益加剧的趋势;这些温室气体的浓度上升与全球温暖化密切相关,自本世纪70年代开始,北极地区的夏季温度显著上升.通过分析北极陆地生态系统的碳循环及其基本特征,发现北极陆地生态系统是一个巨大的土壤碳库,占全球土壤碳库总量的237%—323%;虽然该系统目前起着大气CO2汇的作用,但大气CO2浓度增加导致的气温上升将对北极土壤碳库和CO2的源汇功能产生深刻影响.  相似文献   

5.
为研究紫外(UV-B)辐射增强对拔节-孕穗期麦田植株呼吸和土壤呼吸的温度敏感性的影响,应用静态箱-气相色谱法,于2008年春进行田间试验,观测UV-B辐射增强20%处理以及对照(CK)的麦田生态系统呼吸和土壤呼吸的日变化规律,同时观测温度、湿度等环境因子.结果表明,UV-B辐射增强明显抑制了拔节-孕穗期间麦田生态系统呼吸和土壤呼吸作用,且对土壤呼吸的抑制作用大于对生态系统呼吸的抑制作用,在5次测定中,CK比UV-B处理的日平均生态系统呼吸速率高9%、 9%、 3%、 16%和30%, CK比UV-B处理的日平均土壤呼吸速率分别高99%、 93%、 106%、 38%和10%.CK和UV-B处理植株呼吸的温度敏感系数Q10分别为1.79和1.59,土壤呼吸的Q10分别为1.38和1.76,而生态系统呼吸的Q10则分别为1.65和1.63. UV-B辐射增强导致小麦植株呼吸的温度敏感性降低(Q10值减小),而土壤呼吸的温度敏感性增强(Q10值增大),但UV-B辐射增强对麦田生态系统呼吸的温度敏感性没有明显影响.  相似文献   

6.
土壤呼吸的温度敏感性和适应性研究进展   总被引:8,自引:0,他引:8  
杨毅  黄玫  刘洪升  刘华杰 《自然资源学报》2011,26(10):1811-1820
土壤呼吸的温度敏感性和适应性是影响生态系统碳、氮循环的两个关键指标。论文综述了土壤呼吸对温度变化响应的最新研究进展和存在的问题,指出土壤有机质的质量和水溶性碳含量、土壤微生物种群结构和酶活性等因素是影响土壤呼吸的温度敏感性和适应性的主要因素。这些因素对土壤呼吸温度敏感性和适应性影响的机理不同,土壤呼吸的温度敏感性主要受上述因素的状态影响,而土壤呼吸的温度适应性则主要取决于上述因素的变化过程。例如平均温度、微生物生物量、呼吸底物质量和酶活性是影响土壤呼吸温度敏感性的重要因素,而温度的变化幅度、微生物种群结构变化、呼吸底物有效性和酶的最适温度的改变则影响土壤呼吸对温度的适应性。鉴于土壤呼吸的温度敏感性和适应性是两个密切相关的生物学过程指标,建议在陆地生态系统碳循环的研究中综合考虑这两个过程的交互作用。  相似文献   

7.
对广西木论国家级自然保护区喀斯特常绿落叶阔叶混交林旱季生态系统CO2净交换(NEE)的变化特征及其与环境因子的关系进行初步分析,计算研究期间碳汇大小,与其他相似气候条件下的不同生态系统进行对比,以期为准确估算该生态系统的年碳汇量提供基础。利用涡度相关法对该地区旱季(2018年10月1日~2019年3月31日)CO2通量进行连续观测,同时开展降水量(P)、光合有效辐射(PAR)、空气温度(Tair)、土壤温度(Tsoil)以及土壤含水量(SWC)等环境因子监测。观测期内该生态系统CO2通量及浓度具有明显的"单谷"状日变化特征,白天表现为明显的碳汇,夜间则表现为明显的碳源,NEE在12:00最强,为-0.309±0.330 mg CO2/(m2·s),18:30最弱,为0.074±0.061 mg CO2/(m2·s);观测期内NEE、生态系统呼吸(Re)、生态系统总生产力(GEP)分别为-121.4、209.2、330.6 g C/m2,该生态系统在2019年2月的碳吸收能力最强,ReGEP在2018年10月达到最强;光合有效辐射是白天生态系统CO2净交换(NEEd)变化的主要控制因素(R2=0.40,p<0.01),空气温度与夜间生态系统CO2净交换(NEEn)存在指数关系(R2=0.1267,p<0.01);观测期内的降雨抑制了该生态系统的碳汇能力,即降水对NEE产生了抑制作用。旱季该生态系统整体表现出明显的碳汇,碳汇值为1.214 t C/ha,明显低于相似气候条件下的其他生态系统。  相似文献   

8.
城市化是影响区域生态系统碳循环的主要原因,也是评估生态系统碳循环的最大不确定因素。论文利用1990与2010年Landsat TM数据,基于V-I-S城市土地覆被模型和决策树分类法,获得乌鲁木齐土地变化时空格局;结合野外实测数据和文献检索得到研究区不同土地覆被类型的土壤与植被碳密度,估算了城市土地变化对生态系统碳库的影响。结果表明:1)1990—2010年间,乌鲁木齐城市不透水地表(impervious surface areas, ISA)以中部南部内部填充与北部扩张的形式约增加62%,主要占用农田(27%)与荒漠(62%)。2)乌鲁木齐市生态系统碳库主体(95%)分布在土壤中,城市土地覆被变化导致约25%的碳库损失,由农田、裸土/残存荒漠以及城市绿地转变为ISA解释了68%的土壤有机碳和63%的植被碳损失量,其空间分布与ISA的扩张相一致。城市植被及其土壤具有较高的碳密度,合理的城市规划可以抵消部分因土地变化而损失的生态系统碳。  相似文献   

9.
外源碳和氮输入对降水变化下土壤呼吸的短期影响   总被引:1,自引:1,他引:0  
利用野外原位小区控制试验,模拟研究了降水变化下草地生态系统土壤呼吸对外源碳和氮输入的响应.在2014年,以内蒙古锡林河流域温带典型草原为研究对象,测定了增加降水处理(CK)、增加降水配施氮肥处理[CN,2.5 g·(m2·a)-1]、增加降水配施碳源处理[CG,24 g·(m2·a)-1]和增加降水配施氮肥和碳源处理[CNG,2.5 g·(m2·a)-1+24 g·(m2·a)-1]下土壤呼吸的变化,并分析了土壤呼吸与土壤温度、土壤水分、土壤可溶性有机碳(DOC)、土壤微生物量碳(MBC)之间的关系.结果表明,在自然降水较多的第一次增加降水(FWE)阶段,CG处理和CNG处理168 h土壤CO2累积通量显著增加,而CN处理168 h土壤CO2累积通量无显著变化,并且CG处理和CNG处理土壤MBC含量显著高于CK处理和CN处理,同时,该阶段平均CO2释放速率与土壤MBC含量正相关(P<0.05).与FWE阶段相比,无自然降水的第二次增加降水(SWE)阶段各处理168 h土壤CO2累积释放量显著降低,并且各处理MBC含量也显著降低(P<0.05),仅有土壤DOC含量显著增加(P<0.05),CG处理和CN处理168 h土壤CO2累积通量显著降低(P<0.05).两个降水阶段土壤呼吸速率与土壤温度或土壤体积含水量均有显著的正相关性(P<0.05).因此,自然降水的分布对土壤水分的影响调控着外源氮和碳对半干旱草地生态系统土壤呼吸的作用效应.  相似文献   

10.
全球变暖下土壤有机碳储存的变化是土壤与全球变化研究的热点问题.本研究选择了3种太湖地区代表性水稻土的表层土壤,分别进行20℃和25℃的室内恒温培养,监测培养过程中总有机碳、溶解性有机碳和微生物量碳的变化动态,试图了解这些土壤的有机碳分解过程对全球变暖的响应特点.结果表明,这些土壤培养中总有机碳变化可以用一级衰变动力学方程或对数衰减方程描述,但动力学特征依培养温度的不同而异.升温大大促进了铁渗水耕人为土和潜育水耕人为土中有机碳的分解与呼吸损失,而铁聚水耕人为土没有显著变化.供试土壤总有机碳损失的Q10系数分别为:潜育水耕人为土(11.1~14.1)>铁渗水耕人为土(4.4~6.4)>铁聚水耕人为土(0.63~0.73).这一方面说明温度敏感性在同一地带的不同土壤间的差异超过文献上报道的不同气候带的差异,但另一方面揭示了水稻土可能是一类对全球升温敏感响应的人为土.溶解性有机碳和微生物量的碳的变化还提示不同温度培养下水稻土微生物群落结构可能改变,因而影响到土壤有机碳库的生物有效性在温度条件下的变化.可以认为,土壤升温下有机碳的变化不但与土壤有机碳的性质有关,而且与土壤性质控制下的生物条件的改变有关.故土壤升温下有机碳的损失不仅仅是温度对分解过程的反应速度的影响.当然,对于不同土壤间的这种差异还需从有机碳-土壤环境-土壤生物的相互关系上做进一步的工作.  相似文献   

11.
The potential harm of heavy metals is a primary concern in application of sludge to the agricultural land. A pot experiment was conducted to evaluate the effect of two sludges on fractionation of Zn and Cu in soil and their phytotoxicity to pakchoi. The loamy soil was mixed with 0%, 20%, 40%, 60% and 80% (by weight) of digested sewage sludge (SS) and composted sludge (SC). The additions of both sludges caused a significant raise in all fractions, resulting in that exchangeable (EXCH) and organic bound (OM) became predominance of Zn and organic bound Cu occupied the largest portion. There was more available amount of Zn and Cu in SS treatments than SC treatments. During the pot experiment, the concentration of Zn in EXCH, carbonate (CAR) and OM and Cu in EXCH and OM fractions decreased in all treatments, so their bioavailability reduced. Germination rate and plant biomass decreased when the addition rate was high and the best yield appeared in 20% mixtures at the harvest of pakchoi. The two sludges increased tissue contents of Zn and Cu especially in the SS treatments. Zn in pakchoi was not only in relationship to ΔEXCH and ΔCAR forms but also in ΔOM forms in the sludge-soil mixtures. Tissue content of Cu in pakchoi grown on SC-soils could not be predicted by ΔEXCH. These correlation rates between Zn and Cu accumulation in pakchoi and variation of different fractions increased with time, which might indicate that sludges represented stronger impacts on the plant in long-term land application.  相似文献   

12.
A hydroponic experiment was carried out to study intraspecific differences in the effects of different concentrations of cadmium (Cd)(0-10 mg/L) and arsenate (As(V)) (0-8 mg/L) on the growth parameters and accumulation of Cd and As in six wheat varieties Jing-9428, Duokang-1, Jingdong-11, Jing-411, Jingdong-8 and Zhongmai-8. The endpoints of wheat seedlings, including seed germination,biomass, root length and shoot height, decreased with increasing the Cd and As concentrations. Significant differences in seed germination, biomass, root length, shoot height and the accumulation of Cd and As were observed between the treatments and among the varieties (p < 0.05). The lethal dosage 50% were about 20, 80, 60, 60, 80 and 20 mg As/L for Jing-9428, Duokang-1, Jingdong-11,Jing-411, Jingdong-8 and Zhongmai-8, respectively, and the corresponding values for Cd were about 30, 80, 20, 40, 60 and 10 mg Cd/L, respectively. Among the six varieties, Duokang-1 was found to be the most resistant to Cd and As toxicity, and Zhongmai-8 was the most sensitive to Cd and As co-contamination. The resistance of the six varieties was found dependant on the seedling uptake of Cd and As. Duokang-1 was the most suitable for cultivation in Cd and As co-contaminated soils.  相似文献   

13.
Toxic effects of two agrochemicals on nifH gene in agricultural black soil were investigated using denaturing gradient gel electrophoresis (DGGE) and sequencing approaches in a microcosm experiment. Changes of soil nifH gene diversity and composition were examined following the application of acetochlor, methamidophos and their combination. Acetochlor reduced the nifH gene diversity (both in gene richness and diversity index values) and caused changes in the nifH gene composition. The effects of acetochlor on nifH gene were strengthened as the concentration of acetochlor increased. Cluster analysis of DGGE banding patterns showed that nifH gene composition which had been affected by low concentration of acetochlor (50 mg/kg) recovered firstly. Methamidophos reduced nifH gene richness that except at 4 weeks. The medium concentration of methamidophos (150 mg/kg) caused the most apparent changes in nifH gene diversity at the first week while the high concentration of methamidophos (250 mg/kg) produced prominent effects on nifH gene diversity in the following weeks. Cluster analysis showed that minimal changes of nifH gene composition were found at 1 week and maximal changes at 4 weeks. Toxic effects of acetochlor and methamidophos combination on nifH gene were also apparent. Different nifH genes (bands) responded differently to the impact of agrochemicals: four individual bands were eliminated by the application of the agrochemicals, five bands became predominant by the stimulation of the agrochemicals, and four bands showed strong resistance to the influence of the agrochemicals. Fifteen prominent bands were partially sequenced, yielding 15 different nifH sequences, which were used for phylogenetic reconstructions. All sequences were affiliated with the alpha- and beta-proteobacteria, showing higher similarity to eight different diazotrophic genera.  相似文献   

14.
Phytoremediation is a potential cleanup technology for the removal of heavy metals from contaminated soils.Bidens maximowicziana is a new Pb hyperaccumulator,which not only has remarkable tolerance to Pb but also extraordinary accumulation capacity for Pb.The maximum Pb concentration was 1509.3 mg/kg in roots and 2164.7 mg/kg in overground tissues.The Pb distribution order in the B. maximowicziana was:leaf>stem>root.The effect of amendments on phytoremediation was also studied.The mobility of soil Pb and the Pb concentrations in plants were both increased by EDTA application.Compared with CK(control check),EDTA application promoted translocation of Pb to overground parts of the plant.The Pb concentrations in overground parts of plants was increased from 24.23-680.56 mg/kg to 29.07-1905.57 mg/kg.This research demonstrated that B.maximowicziana appeared to be suitable for phytoremediation of Pb contaminated soil,especially,combination with EDTA.  相似文献   

15.
Laogang landfill near Shanghai is the largest landfill in China, and receives about 10000 t of daily garbage per day, Samples of topsoil and plants were analyzed to evaluate mercury pollution from the landfill. For topsoil samples, there were significant correlations among total mercury (HgT), combinative mercury (Hgc) and gaseous mercury (HgG), and content of total organic carbon (TOC), but, no significantly relationship was found between Hg content and filling time. Hg content changes in vertical profiles with time showed that the average Hgv of profiles 1992, 1996, and 2000 was similar, but their average HgG was quite different. HgT was significantly correlated with Hgc in profile 1992 and 2000, and Hgv was significantly correlated with Hg6 in profile 1996. HgG/Hgv ratio in profile samples decreased in the order of (HgG,/HgT)1992〉(HgG/HgT)1996〉〉(HgG/HgT)2000. A simple outline of Hg release in landfill could be drawn: with increasing of filling time, degradation undergoes different biodegradation, accordingly, gaseous mercury goes through small, more, and small proportion to total mercury. Distribution of Hg in plants was inhomogeneous, following the order of leaf〉root〉stem. The highest value of leaf may be associated with higher atmospheric Hg from landfill. Ligneous plants (e.g. Phyllostachys glanca, Prunus salicina and Ligustrum lucidum) are capable of enriching more Hg than herbaceous plants.  相似文献   

16.
The effects of arbuscular mycorrhizal (AM) fungus (Glomus mosseae) and phosphorus (P) addition (100 mg/kg soil) on arsenic (As) uptake by maize plants (Zea mays L.) from an As-contaminated soil were examined in a glasshouse experiment.Non-mycorrhizal and zero-P addition controls were included.Plant biomass and concentrations and uptake of As,P,and other nutrients,AM colonization,root lengths,and hyphal length densities were determined.The results indicated that addition of P significantly inhibited root colonization and development of extraradical mycelium.Root length and dry weight both increased markedly with mycorrhizal colonization under the zero-P treatments,but shoot and root biomass of AM plants was depressed by P application.AM fungal inoculation decreased shoot As concentrations when no P was added,and shoot and root As concentrations of AM plants increased 2.6 and 1.4 times with P addition,respectively.Shoot and root uptake of P,Mn,Cu,and Zn increased,but shoot Fe uptake decreased by 44.6%,with inoculation, when P was added.P addition reduced shoot P,Fe,Mn,Cu,and Zn uptake of AM plants,but increased root Fe and Mn uptake of the nonmycorrhizal ones.AM colonization therefore appeared to enhance plant tolerance to As in low P soil,and have some potential for the phytostabilization of As-contaminated soil,however,P application may introduce additional environmental risk by increasing soil As mobility.  相似文献   

17.
The influence of the nonionic surfactant Tween 80 on pentachlorophenol (PCP) oxidation catalyzed by horseradish peroxidase was studied. The surfactant was tested at concentrations below and above its critical micelle concentration (CMC). Enhancement of PCP removal was observed at sub-CMCs. The presence of Tween 80 in the reaction mixture reduced enzyme inactivation which occurred through a combination of free radical attack and sorption by precipitated products. A simple first-order model was able to simulate time profiles for enzyme inactivation in the presence or absence of Tween 80. At supra-CMCs, the surfactant caused noticeable reductions in PCP removal, presumably through micelle partitioning of PCP which precluded the hydrophobic PCP molecule from interacting with the enzyme.  相似文献   

18.
Decomposition of alachlor by ozonation and its mechanism   总被引:1,自引:0,他引:1  
Decomposition and corresponding mechanism of alachlor, an endocrine disruptor in water by ozonation were investigated. Results showed that alachlor could not be completely mineralized by ozone alone. Many intermediates and final products were formed during the process, including aromatic compounds, aliphatic carboxylic acids, and inorganic ions. In evoluting these products, some of them with weak polarity were qualitatively identified by GC-MS. The information of inorganic ions suggested that the dechlorination was the first and the fastest step in the ozonation of alachlor.  相似文献   

19.
Several main metabolites of benzo[a]pyrene (BaP) formed by Penicillium chrysogenum, Benzo[a]pyrene-1,6-quinone (BP 1,6- quinone), trans-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene (BP 7,8-diol), 3-hydroxybenzo[a]pyrene (3-OHBP), were identified by high-performance liquid chromatography (HPLC). The three metabolites were liable to be accumulated and were hardly further metabolized because of their toxicity to microorganisms. However, their further degradation was essential for the complete degradation of BaP. To enhance their degradation, two methods, degradation by coupling Penicillium chrysogenum with KMnO4 and degradation only by Penicillium chrysogenum, were compared; Meanwhile, the parameters of degradation in the superior method were optimized. The results showed that (1) the method of coupling Penicillium chrysogenum with KMnO4 was better and was the first method to be used in the degradation of BaP and its metabolites; (2) the metabolite, BP 1,6-quinone was the most liable to be accumulated in pure cultures; (3) the effect of degradation was the best when the concentration of KMnO4 in the cultures was 0.01% (w/v), concentration of the three compounds was 5 mg/L and pH was 6.2. Based on the experimental results, a novel concept with regard to the bioremediation of BaP-contaminated environment was discussed, considering the influence on environmental toxicity of the accumulated metabolites.  相似文献   

20.
Sorption of chlorotoluron in ammonium sulfate, urea and atrazine multi-solutes system was investigated by batch experiments. The results showed application of nitrogen fertilizers to the soil could affect the behavior of chlorotoluron. At the same concentration of N, sorption of chlorotoluron decreased as the concentration of atrazine increased on the day 0 and 6 in soil, respectively. The sorption of chlorotoluron increased from 0 to 6 d when soils were preincubated with deionized water, ammonium sulfate and urea solution for 6 d. That indicated incubation time was one of the most important factors for the sorption of chlorotoluron in nitrogen fertilizers treatments. The individual sorption isotherms of chlorotoluron in rubbery polymer and silica were strictly linear in single solute system, but there were competition sorption between pesticides or between pesticides and nitrogen fertilizers. That indicated the sorption taken place by concurrent solid-phase dissolution mechanism and sorption on the interface of water-organic matter or water-mineral matter.  相似文献   

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