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1.
神农架大九湖泥炭沼泽是中纬度亚热带地区的高山泥炭沼泽,其连续沉积的泥炭剖面蕴含了丰富的气候变化信息,对揭示我国中纬度地区不同时间尺度的气候环境变化有着重要意义。使用碱提取溶液吸光度法对大九湖泥炭吸光度进行测定,以E4/E6比值表征腐殖化度,同时测定了泥炭的磁化率,通过AMS14C测年技术建立了神农架大九湖泥炭地的年代序列,结合区域的其他气候代用指标,分析大九湖泥炭磁化率与腐殖化度E4/E6的古气候意义:大九湖泥炭频率磁化率值高指示气候冷干,降水量小;磁化率值偏低指示气候暖湿,降水量大。E4/E6值高,腐殖化度低,指示气候冷干;值低,腐殖化度高,指示气候暖湿。探讨大九湖地区末次冰消期以来的气候变化,重建该区18.7 Ka BP 的气候演化过程:末次冰期结束期(18.7~11.7 Ka BP)气候比较冷干,期间存在气候冷暖干湿交替波动;全新世(11.7~0 Ka BP)以来,气温开始回升,气候比较暖湿,期间也存在突发性降温事件,其中,全新世早期(11.7~9.3 Ka BP)气候冷暖干湿交替波动,总体冷湿;全新世中期(9.3~3.5 Ka BP)气候暖湿;全新世晚期(3.5~0 Ka BP)气候温干。 关键词: 泥炭;磁化率;E4/E6;大九湖;气候变化  相似文献   

2.
在2007年8月研究的基础上,于2008年7月在神农架大九湖泥炭藓沼泽湿地采用自制简易模拟装置进行现场模拟实验,深入研究了泥炭藓沼泽湿地对不同浓度的金属污染物镉(Ⅱ)、铜(Ⅱ)、铅(Ⅱ)、锌(Ⅱ)的净化作用。研究表明:泥炭藓沼泽湿地对各种金属污染物都有很强的去除能力,2小时后的去除效果强弱顺序为Pb>Cu>Cd>Zn;4种金属任一时刻的去除速率都随初始浓度的增加而增大,低初始浓度先于高初始浓度达到平衡;泥炭藓沼泽湿地的稀释功能在污染物去除中起着重要作用。通过双常数速率模型得到了去除速率与实验时间的关系;拟二级动力学模型和修改后的拟一级动力学模型能够很好地描述泥炭藓沼泽湿地去除金属污染物的动态过程,拟二级动力学模型的拟合效果更佳,通过修改后的拟一级动力学模型可以计算出稀释作用对湿地净化的贡献率。为评估泥炭藓沼泽湿地净水价值、保护和合理利用泥炭藓沼泽湿地提供科学依据。  相似文献   

3.
为了研究九龙江流域河流中溶解碳变化规律,分别于2017年7月与2018年1月对九龙江河水溶解无机碳(DIC)与溶解有机碳(DOC)进行了分析。丰水季河水DIC浓度为7.50~49.04 mg/L,平均值为22.12 mg/L,枯水季DIC浓度为8.84~84.91 mg/L,平均浓度41.17 mg/L,丰水季河水中的DOC浓度为0.54~2.89 mg/L,平均值为1.04 mg/L,枯水季河水中DOC浓度变化在1.34~3.56 mg/L之间,平均值为2.34 mg/L,据此计算了九龙江河水DOC、DIC的入海通量。研究结果表明九龙江河水中溶解碳具有显著的时空变化特征,通过与中国其他河流溶解碳数据对比,解释了碳酸盐岩的风化、气候变化、河流中浮游植物以及人类活动对九龙江河流溶解碳浓度的影响。  相似文献   

4.
大九湖泥炭藓湿地对磷、铜污染物净化作用的模拟研究   总被引:1,自引:1,他引:0  
在大九湖泥炭藓沼泽湿地采用野外实地模拟方法,就泥炭藓湿地对铜、磷两种污染物的净化能力进行了研究。结果表明,磷污染物浓度分别为10,100,1 000 mg/L时,两小时后泥炭藓湿地对该污染物的净化率分别为939%,695%,663%;同样的浓度梯度下,对铜污染物的净化率分别为1000%,976%,880%。泥炭藓湿地对污染物具有很强的净化能力,其泥炭层部分在湿地净化污染物中起到重要作用。利用拟一级动力学模型、修改上限的拟一级动力学模型、拟二级动力学模型、Elovich模型、双常数速率模型、抛物线扩散模型等6个模型对泥炭藓湿地的净化进行动态研究,其中后4个模型均可模拟湿地净化的动态过程。长期预测以拟二级动力学模型为最佳。  相似文献   

5.
盐沼枯落物的短期淋溶过程对东滩沿岸的水质有重要影响.采用东滩3种典型盐沼植物的茎和叶的枯落物为材料进行为期48h的室内浸泡模拟实验.利用有机碳探测分析仪测定不同时间的可溶性有机碳(DOC)和总可溶性氮(TDN)浓度然后转换为累积释放量,通过紫外可见光光谱参数表征有色溶解有机物(CDOM)浓度,结合三维荧光光谱(EEMs)和平行因子(PARAFAC)分析推断CDOM的荧光组分的变化特征.结果 表明在淋溶释放的最初48 h,DOC、TDN、CDOM、两个类腐殖质荧光组分和两个类蛋白荧光组分的释放过程呈对数曲线状,最初8h增长迅速,8~48 h则增幅减缓或出现小幅下降趋势.不同种类的植物以及同种植物的不同部位的初始基质对枯落物的DOC和TDN释放量有显著影响.TDN最大累积释放量与初始基质有机碳和氮含量呈显著的正相关.枯物体中的氮比有机碳更容易淋失.各个荧光组分的贡献率变化不大,但不同植物种类之间存在显著差异,由此可以推断枯落物的初期淋溶以物理性过程为主.我们的研究结果表明,盐沼枯落物的淋溶对潮滩水水质有着显著的影响.  相似文献   

6.
杭州西湖水体光学状况及影响因子分析   总被引:11,自引:0,他引:11  
2004年10月8日在杭州西湖6个不同湖区共布设10个采样点进行水下光场的测定,并采集水样分析悬浮物、叶绿素a、有色可溶性有机物(CDOM)浓度。结果表明,3类主要光衰减物质总悬浮物、叶绿素a和DOC的浓度分别为3.68~42.76 mg/L、4.64~85.95 μg/L、5.19~9.22 mg/L;CDOM在440 nm波长处吸收系数为0.30~1.46 m-1;PAR衰减系数在1.13~6.04 m-1间变化,均值为4.00±1.69 m-1;对应的真光层深度为0.76~4.08 m,均值为1.54±1.11 m;仅南湖和茅家埠两个湖区真光层深度大于水深,其他湖区由于水深远大于真光层深度,在现有的光照条件和水位下要恢复沉水植物困难较大。对PAR衰减系数、真光层深度、透明度等表观光学参数与主要水色因子进行相关分析发现,水体中浮游藻类和有机颗粒物对西湖水体光学性质影响最大。  相似文献   

7.
三峡水库小江回水区溶解有机物的三维荧光光谱特征   总被引:4,自引:0,他引:4  
为了解三峡水库水体中溶解有机物(DOM)的特征及来源,以小江回水区为研究对象,对其DOM的三维荧光光谱进行了测定与分析,探讨了荧光强度与DOC、CODMn和叶绿素a的关系。结果显示:小江回水区DOM的三维荧光光谱主要表现出3个峰,类腐殖质荧光峰A、类蛋白荧光峰B和C;DOM荧光强度与DOC、CODMn相关性较好,表明荧光溶解有机物质的含量可以较好反映水体中有机碳和可被氧化有机物的含量;在8月份非水华暴发时期荧光强度和叶绿素a相关性较差,表明DOM荧光物质主要不是由浮游植物产生。综合分析可以推断小江回水区DOM的来源既有外源输入,也有内源输入,且外源输入对DOM荧光物质的贡献大于内源输入.  相似文献   

8.
溶解性有机碳(DOC)在生态系统中起着重要作用,但河流DOC输移动态及其对气候变化和多年冻土退化的响应还不清楚。对青藏高原三江源地区高寒草甸下8条小流域河流于2016年8月至2017年7月进行逐月采集水样,同步测定流量,在室内对DOC浓度进行分析,研究河流DOC浓度和输移通量的逐月变化规律以及对降雨和温度逐月变化的响应。结果表明:(1)DOC的年平均浓度介于4.05±1.20~6.55±2.86 mg·L-1之间,均值为5.30 mg·L-1;DOC平均浓度与流域内高寒沼泽草甸(ASM)覆盖面积比例呈显著线性负相关,而与高寒草甸(AM)呈显著线性正相关;此外,有多年冻土发育的流域内河流平均DOC浓度明显高于无多年冻土发育的流域。(2)DOC浓度随季节性气温的变化呈现较大的变异性,在-8~2℃气温回升的过程中,DOC平均浓度随气温的升高呈急剧上升的趋势,在随后2~13℃气温继续升高到最高的过程中,DOC平均浓度又急速降低,而在之后13~-8℃气温下降的过程中,DOC平均浓度呈一个缓慢降低的趋势,并在12月达到最低。(3)DOC平均输移通量也显示出较大的季节差异,其范围为0.006±0.000 5~3.01±0.74 kg·km-2·d-1,均值为1.12±0.81 kg·km-2·d-1;DOC输移通量与流域内平均径流量显著线性正相关,DOC的输移主要集中在春季融雪期和夏季丰雨期。气候变暖会导致多年冻土活动层厚度增加,因此,温度增加导致DOC输移增加的结果提示,气候变暖可能会增加青藏高原高寒草甸区河流对有机碳输移和释放。  相似文献   

9.
基于2002年4、7、11月及2003年2月长江口滨岸潮滩采集的4个点位的柱状沉积物样品,对典型剖面孔隙水中氨态氮和磷酸盐含量的分析测定表明,孔隙水中氨态氮的浓度范围为0.04~16.87mg/L,最高浓度基本都出现在春季;而总可溶磷的浓度为0.01~0.37mg/L,其中大部分的浓度随深度的增加而逐渐升高。通过对长江口滨岸潮滩典型剖面孔隙水中氨态氮和磷酸盐含量变化的综合分析,探讨了研究区域内沉积物的早期成岩作用,并建立早期成岩作用下沉积物孔隙水中氨态氮和磷酸盐的“扩散-平流-反应”模型。研究发现孔隙水中氨态氮地球化学过程主要受有机质分解和粘土矿物的吸附反应控制,而磷酸盐的转移反应主要受有机磷分解、磷酸盐吸附和沉淀的控制。二者反应均遵循一级动力学。  相似文献   

10.
鄂西亚高山泥炭藓沼泽湿地高等植物多样性研究   总被引:1,自引:0,他引:1  
为探讨鄂西亚高山泥炭藓沼泽湿地高等植物及群丛类型特征,揭示该类型湿地资源特点,采用遥感影像分析与实地调查相结合的方法研究了鄂西亚高山泥炭藓沼泽湿地的分布、面积和高等植物资源状况。结果表明鄂西亚高山泥炭藓沼泽湿地主要分布在七姊妹山、大九湖、二仙岩和后河等4个区域内,主要有8个斑块,总面积为1 27869 hm2,共有高等植物65科、128属、194种,有大理薹草-泥炭藓群丛(Ass.Carex rubro-brunnea var.taliensis-Sphagnum palustre)、川东薹草-泥炭藓群丛(Ass.Carex fargesii-Sphagnum palustre)、野灯心草-泥炭藓群丛(Ass.Juncus setchuensis-Sphagnum palustre)、水竹-泥炭藓群丛(Ass.Phyllostachys heteroclada-Sphagnum palustre)、紫羊茅-泥炭藓群丛(Ass.Festuca rubra-Sphagnum palustre)、小叶南烛-川东薹草-泥炭藓群丛(Ass.Vaccinium bracteatum var.chinense-Carex fargesii-Sphagnum palustre)等20个群丛。研究结果可为我国亚高山泥炭藓沼泽湿地资源可持续利用、湿地资源保护、湿地生态系统恢复与重建提供有益参考,为泥炭藓沼泽湿地高等植物研究提供资料  相似文献   

11.
An integrated assessment of the ecological state and stability of permafrost peat plateaus in northeastern European Russia has been performed with regard to current climate changes. Analytical studies have revealed heterogeneity in the composition and properties of peat organic matter in active and permafrost layers. Permafrost organic matter in peatlands is relatively undecomposed, and, theoretically, its rapid mineralization can begin upon peat thawing. Organic carbon in peatlands has not been frozen or conserved during about 64–78% of their total lifetime; therefore, it is the existence of anaerobic conditions (rather than of permafrost) that has been the most important factor for peat accumulation. Current degradation of permafrost peat plateaus is caused mainly by wind and thermal erosion but practically does not lead to the development of thermokarst. Regardless of current climate warming, peat plateaus under natural conditions (not altered by human activities) are stable ecological systems.  相似文献   

12.
Anthropogenic biomass burning in insular Southeast Asia facilitates conversion and degradation of ecosystems and emits high amounts of carbon into the atmosphere. We analyzed the influence of peat soil and land cover distribution on the occurrence and characteristics of vegetation fires. Two years of satellite-based active fire detections over Peninsular Malaysia, Sumatra, Borneo and Java were examined together with land cover and peatland maps. Our results showed that fire occurrence nearly tripled (23,000 → 68,000) from a wet La Niña year (2008) to a drier El Niño year (2009). In both years, fires were concentrated in peatlands (in 2009 41% of fires vs. 10% of land area), and the majority of large-scale burning took place in peatlands. Variation in peatland land cover within the study area was noticed to create remarkable different fire regimes. Biomass burning in the intensely managed Sumatran peatlands was characterized by large-scale land clearance fires that took place annually to varying extent. The largely unmanaged degraded peatland ecosystems of Borneo, on the other hand, experienced very little fire activity in a wet year but were ravaged by large-scale wildfires when El Niño conditions arose. We conclude that fire regime characteristics in insular Southeast Asia are strongly connected to occurrence of peat soil and land management status. This leads to high variation of fire activity within this region both annually (depending on weather patters) and over longer time range (depending on land cover/management issues) and greatly complicates estimation of the effects of fires.  相似文献   

13.
Chemical analyses and radioecological methods were combined in order to estimate the sediment accumulation rate in the upper 20 cm depth of the Palmones River estuary. Organic matter, total carbon, C:N and (137)Cs vertical profiles showed changes at 13 cm depth. These changes could be associated with the decrease in river input since 1987 when a dam situated in the upper part of the estuary started to store water. Using 1987 as reference to date the sediment, accumulation rate was 1.2 cm yr(-1). As alternative method, two layer model of (210)Pb(xs) vertical distribution showed a sedimentation rate of 0.7 cm yr(-1) with a surface mixing layer of 7 cm thickness. The high ammonium, potassium and sodium content in pore water and the strong correlation between (137)Cs activities and organic matter in dry sediment suggests that (137)Cs (the only anthropogenic product detected) is mainly accumulated in the estuary associated with the particulate organic material from the catchment area.  相似文献   

14.
The Humic Lake Acidification Experiment (HUMEX) was launched in 1988 to study the role of humic substances in the acidification of surface waters and the impacts of acidic deposition on the chemical and biological properties of humic substances. This subproject was designed to determine the contribution of organic acids to the acidity of Lake Skjervatjern (the HUMEX Lake) and the impacts of the acidification on the characteristics of organic carbon. In order to get an empirical measure for organic acidity, dissolved organic carbon (DOC) was fractionated, isolated, and base-titrated from each half of Lake Skjervatjern. Hydrophobic acids were the dominant organic carbon fraction; the total organic acid content was generally greater than 80% of the DOC. The reliability of the fractionation procedure was tested with synthetic acids and the Nordic Fulvic acid. The DOC fractions did not show high variation over the 1.5-y acidification period. Hydrophilic acids had consistently greater exchange acidities compared to hydrophobic acids, averaging 12.9 μeq/mg DOC vs. 10.9 μeq/mg DOC, respectively. The dissociation of organic acids during acid-base titrations clearly increased with increasing pH. The high organic anion contribution to the ion balances indicates that humic matter is an important acidity source in Lake Skjervatjern. There are slight signs that the contribution of organic acids to overall lake acidity has decreased since acidification was initiated.  相似文献   

15.
河流不仅是陆地碳循环的通道,也是碳交换的重要场所,而小流域更被认为是陆地碳循环的热点。为探究人类活动影响下喀斯特小流域溶解性有机碳(DOC)输出特征,于2017年6月~2018年5月对阿哈湖3条主要入湖小流域游鱼河、白岩河、金钟河河水主要理化特征和DOC含量进行分析,并计算流域DOC输出通量。研究期间游鱼河、白岩河、金钟河DOC含量分别为4.78±2.11、5.61±2.27、7.40±2.51 mg/L,输出通量分别为2.71、2.91、3.82 t/(km~2. a)。结果表明:(1)阿哈湖小流域河水DOC含量时空变化特征明显,与降雨、流域土地利用类型密切相关,人类外源输入对DOC有显著影响;(2)对比不同河流DOC输出特征发现,小流域通常具有更高的DOC输出通量,特别是受城市输出影响的中小流域,其河流碳过程在碳循环中的贡献可能被低估。  相似文献   

16.
《Environment international》1999,25(2-3):161-180
NOM (natural organic matter) samples, isolated by reverse osmosis (RO), and nine NOM samples, concentrated by low-pressure, low-temperature evaporation (EVA) from various origin in Norway, were characterized by different methods. The methods included elemental content of the freeze-dried samples (C, H, N, and O), elemental content of the redissolved samples (DOC, Na, Ca, Cu, Fe, and Mn), specific spectral absorbance at λ = 254 nm (A(254 nm)/DOC) and at λ = 436 nm (A(436 nm)/DOC), UV/Vis-spectra, specific fluorescence (excitation and emission spectra), proton capacity, Cu-complexation capacity, and content of hydrolysable amino acids and carbohydrates. In addition, chromatographic characterization by gel chromatography and reversed-phase chromatography was done. Studies on adsorption and flocculation abilities and the formation of trihalomethanes (THM) and organic halogens adsorbable on activated carbon (AOX) upon chlorination were also investigated. Comparison of the results showed that the samples were different according to the origin of the sample, isolation procedure, and time of sampling. The differences are not the same for all parameters used. Standardized procedures have to be applied to redissolve the organic material in water in order to compare data. For the samples investigated, it was shown that parameters like elemental analysis (H/C ratio), the specific spectral absorption in the UV range, proton capacity, complexation capacity and anionic particle charge, amount of hydrolysable amino acids and carbohydrates, adsorption behaviour on activated carbon, and the THM-FP are sensitive parameters to show differences concerning origin and isolation procedure.  相似文献   

17.
Changes to natural organic compounds by acid deposition and subsequent effects on Al mobilization are not well understood. The HUMEX catchment-scale acidification experiment in western Norway offers a unique possibility for an integrated assessment of these interactions. In this report, the soil and soil water chemical data from the HUMEX site, from before and after the onset of experimental acidification, are used to characterize the catchment. Changes in soil water chemistry are discussed and controls on dissolved organic carbon are addressed in relation to Al mobilization. Decreases in the concentration of dissolved organic carbon (DOC) and organic Al fractions were found in soil water after the treatment started. These changes were related to an increase in soil water sulphate concentrations. The sulphate levels showed a significant increase (on a 95% level) in four of ten soil horizons while nitrate remained nearly unchanged. In organic soils, where the dissolved organic carbon content was high, the major control for monomeric aluminum concentration appeared to be the amount of exchangeable aluminum in the soil. In mineral soils, the gibbsite dissolution may govern inorganic Al concentrations in soil water, though substantial undersaturation was found when DOC was high.  相似文献   

18.
Removal of NOM in the different stages of the water treatment process   总被引:5,自引:0,他引:5  
Natural organic matter (NOM) is abundant in natural waters in Finland and in many ways affects the unit operations in water purification. In this study, the organic matter content in water in different stages of a full-scale treatment process over 1 year was measured. The full-scale treatment sequence, studied at the Rusko water treatment plant in Tampere, Finland, consisted of coagulation, flocculation, clarification by sedimentation or flotation, activated carbon (AC) filtration, and disinfection. High-performance size exclusion chromatography (HPSEC) was used for separation to determine changes in the humic substances content during the purification process. In addition, total organic carbon (TOC), KMnO4-number, and UV-absorbance at wavelength 254 nm (UV254) were measured. High molecular weight (HMW) matter was clearly easier to remove in coagulation and clarification than low molecular weight (LMW) matter. Furthermore, depending on the regeneration of the activated carbon filters, activated carbon filtration was effective to a degree but did not remove most of the lowest molecular weight compounds. Significant correlation was established among HPSEC, KMnO4, UV254 absorbance, and TOC. HPSEC proved to be a fast and relatively easy method to estimate NOM content in water and, in fact, gave more information than traditional methods on the type of NOM in a water sample. It also helped the process performance follow-up.  相似文献   

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