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571.
黄土高原纬度梯度上的植物与土壤碳、氮、磷化学计量学特征 总被引:8,自引:4,他引:4
选取陕西省延安市的富县、甘泉县、安塞县和榆林市的靖边县、横山县、榆阳区为研究区域,测定和分析研究区植物叶片和不同土层土壤碳(C)、氮(N)、磷(P)含量,阐明植物叶片和土壤化学计量学特征随纬度梯度的变化模式,为预测黄土高原植物营养元素的限制情况和生态系统的土壤养分状况提供依据.结果表明:1在35.95°~38.36°N的纬度范围内,植物叶片C、N、P含量的变化范围分别是336.95~477.38、18.09~33.17和1.07~1.73 mg·g-1,平均值分别为442.9、25.79和1.37 mg·g-1,变异系数分别为11.9%、17.4%和13.3%;植物叶片C、N、P含量与纬度之间存在显著的相关关系,但植物叶片C含量与叶片N、P含量随纬度的变化存在差异:随着纬度的升高,植物叶片C含量随之降低;而叶片N、P含量随之升高.植物叶片C∶N、C∶P均随着纬度的升高,呈现减小趋势;而植物叶片N∶P与纬度的相关关系并不显著.20~10、10~20和20~40 cm这3个土层土壤C和N的空间分布具有一致性,均随着纬度的升高呈指数减小的趋势,且含量随着土层的加深逐级递减;土壤P的空间分布与C、N不同,随着纬度的升高呈现先增加后减少的趋势.0~10 cm、10~20 cm土层土壤C∶N随纬度的升高变化不显著,20~40 cm土壤C∶N随纬度的升高明显下降;3个土层的土壤C∶P、N∶P均随纬度的升高呈指数减少.3植物C、C∶N和C∶P与不同土层的土壤C、N、P均呈现显著的相关关系,植物N、P与土壤C、N呈现显著的相关关系,而叶片N∶P与不同土层土壤的C、N、P相关关系均不显著.研究表明,植物C、N、P含量与纬度之间存在一定的相关性,而植物与土壤的C、N、P含量之间的相关性并不一致,且与全球尺度相比,黄土高原地区草本植物生长更易受磷限制. 相似文献
572.
目的研究2D12铝合金耐环境腐蚀性能。方法对不同规格的Al-Cu-Mg系2D12铝合金的耐环境腐蚀性能包括晶间腐蚀、剥蚀性能以及抗应力腐蚀性能,按照标准试验方法进行测试、分析、评定试验数据。结果得到了不同规格2D12铝合金晶间腐蚀深度、剥蚀等级、应力腐蚀断裂时间及KISCC等。自然时效状态2D12铝合金具有晶间腐蚀倾向,最大晶间腐蚀深度为0.18 mm。不同规格2D12铝合金抗剥落腐蚀性倾向不同,从P级到EC级。2D12铝合金材料的拉伸应力腐蚀断裂寿命随试验应力的增加而降低,两种薄板(δ=1.5 mm和δ=2.0 mm)和型材(EL2805)临界应力腐蚀门槛值分别为160,140,230 MPa。2D12铝合金在S-L和S-T方向的应力腐蚀开裂门槛应力强度因子分别为22.6 MPa·m1/2和27.1 MPa·m1/2。结论 2D12铝合金抗应力腐蚀测试结果表明,S-L方向比S-T方向的抗应力腐蚀的性能低,其应力腐蚀开裂门槛应力强度因子与C环应力腐蚀结果一致,断口呈现典型的沿晶断裂应力腐蚀脆性断裂特征。 相似文献
573.
以Suwannee River Fulvic Acid Standard II(SRFA)、Upper Mississippi River NOM(UMRN)、Elliott Soil Humic Acid Standard IV(ESHA)和Leonardite Humic Acid Standard(LHA) 4种溶解性有机物(Dissolved Organic Matter, DOM)为研究对象,利用125 W高压汞灯作为模拟光源进行室内模拟光解实验,考察了DOM对冰相中蒽和芘光降解的影响.其中,SRFA和UMRN是水源DOM,ESHA和LHA是陆源DOM.结果表明,蒽和芘在冰相中均可以发生直接光降解.4种DOM对冰相中蒽和芘光降解的影响行为并不相同,水源DOM对冰相中蒽和芘光降解的影响程度小于陆源DOM.DOM对冰相中蒽和芘光降解的抑制以光屏蔽效应为主.4种DOM对冰相中蒽和芘光降解均产生淬灭效应,但淬灭程度相异,DOM对蒽激发态的淬灭程度高于其对芘激发态的淬灭程度.与DOM共存条件下,冰相中芘的表观光解速率常数与DOM的SUVA值具有显著正相关性(p0.01). 相似文献
574.
快速的城镇化进程带来城市碳排放的快速增长,准确的城市水平碳排放数据对于制定科学合理的碳减排政策极为关键,明确碳排放源的关键类别可以做到有的放矢和精准管控.但是目前中国碳排放数据的研究主要集中在国家、地区和省级层面,城市水平由于所需基础数据的不透明和不准确,长久以来缺乏完整的碳排放清单.为解决该问题,在以前相关研究的基础上,通过省级能源平衡表,尝试利用合理的分配指标从省级碳排放数据估算出下属城市的碳排放,构建了一套自上而下的城市能源消耗碳排放估算方法.通过与现有可获得的城市水平数据进行对比,发现估算差距均在10%以内,证明了该方法的可行性和准确性,并尝试在时间尺度进行了扩展.为获取在时间和空间上均连续的中国城市能源消耗碳排放数据提供了科学的方法和合理的思路,也能为各城市分配减排任务和城市间进行减排协商提供可靠的数据支撑. 相似文献
575.
区别于传统的稀释或加缓冲剂调节pH值的方法,本文提出采用微生物电解池(MEC)电调控暗发酵尾液pH值,并进一步采用微生物电合成系统(MES)降解废液产甲烷.结果表明,在MEC处理产氢暗发酵尾液过程中,伴随着阴极侧氢气的产生,暗发酵尾液中大量H+被消耗,溶液pH值从4.5升高到8.7;随后在MES中,产氢发酵尾液中有机物被进一步降解产生甲烷,其平均产甲烷速率达到4.5mmol/(L·d),且在21d内化学需氧量(COD)去除率达到89%,远优于没有经过pH调控的产氢发酵尾液MES中的产甲烷性能. 相似文献
576.
Juexiu Li Xiaoping He Bing Pei Xianwei Li Diwen Ying Yalin Wang Jinping Jia 《环境科学学报(英文版)》2019,31(3):282-290
Iron ore sintering is a major source of gaseous and particulate pollutants emission in iron smelt plant. The aim of present study is to characterize the volatile organic compounds(VOCs) emission profiles from iron ore sintering process. Both sinter pot test and sinter simulation experiment were conducted and compared. Out results showed that sinter process produced large quantity of VOCs together with NOxand SO_2. VOCs and NO were produced simultaneously in sinter pot test from 3 to 24 min after ignition, flowed by SO_2 production from 15 min to the end of sintering. Total VOCs(TVOC) concentration in sinter flue gas was affected by the coal and coke ratio in sinter raw material. The maximum TVOC concentration was 34.5 ppm when using 100% coal as fuel. Sinter simulation experiments found that the number of VOCs species and their concentrations were found by sinter temperature. The largest VOCs species varieties were obtained at 500 °C. Benzene, toluene,xylene and ethylbenzene were major VOCs in sinter flue gas based on the results from both simulation test and sinter pot. It thus demonstrated that in addition to NO_x, SO_2 and metal oxide particles, sinter flue gas also contained significant amount of VOCs whose environmental impact cannot be ignored. Based on our work, it is timely needed to establish a new VOC emission standard for sinter flue gas and develop advanced techniques to simultaneously eliminate multi-pollutants in iron ore sinter process. 相似文献
577.
578.
High nitrate(NO_3~-)loading in water bodies is a crucial factor inducing the eutrophication of lakes.We tried to enhance NO_3~-reduction in overlying water by coupling sediment microbial fuel cells(SMFCs)with submerged aquatic plant Ceratophyllum demersum.A comparative study was conducted by setting four treatments:open-circuit SMFC(Control),closed-circuit SMFC(SMFC-c),open-circuit SMFC with C.demersum(Plant),and closed-circuit SMFC with C.demersum(P-SMFC-c).The electrochemical parameters were documented to illustrate the bio-electrochemical characteristics of SMFC-c and P-SMFC-c.Removal pathways of NO_3~- in different treatments were studied by adding quantitative~(15)NO_3~- to water column.The results showed that the cathodic reaction in SMFC-c was mainly catalyzed by aerobic organisms attached on the cathode,including algae,Pseudomonas,Bacillus,and Albidiferax.The oxygen secreted by plants significantly improved the power generation of SMFC-c.Both electrogenesis and plants enhanced the complete removal of NO_3~- from the sediment–water system.The complete removal rates of added~(15)N increased by 17.6% and 10.2% for SMFC-c and plant,respectively,when compared with control at the end of experiment.The electrochemical/heterotrophic and aerobic denitrification on cathodes mainly drove the higher reduction of NO_3~- in SMFC-c and plant,respectively.The coexistence of electrogenesis and plants further increased the complete removal of NO_3~- with a rate of 23.1%.The heterotrophic and aerobic denitrifications were simultaneously promoted with a highest abundance of Flavobacterium,Bacillus,Geobacter,Pseudomonas,Rhodobacter,and Arenimonas on the cathode. 相似文献
579.
Jingjing Zhang Lei Tong Chenghui Peng Huiling Zhang Zhongwen Huang Jun He Hang Xiao 《环境科学学报(英文版)》2019,31(3):372-382
Simultaneous and continuous measurements of visibility, meteorological parameters and air pollutants were carried out at a suburban site in Ningbo from June 1, 2013 to May 31,2015. The characteristics of visibility and their relationships with air pollutants and meteorological factors were investigated using multiple statistical methods. Daily visibility ranged from 0.6 to 34.1 km, with a mean value of 11.8 km. During the 2-year experiment,43.4% of daily visibility was found to be less than 10.0 km and only 9.2% was greater than 20.0 km. Visibility was lower in winter with a frequency of 53.4% in the range of 0.0–5.0 km.Annual visibility had an obvious diurnal variation, with the lowest and highest visibility being 7.5 km at approximately 06:00 local time and 15.6 km at approximately 14:00 local time, respectively. Multiple correspondence analysis(MCA) indicated that the different ranges of visibility were significantly affected by different levels of pollutants and meteorological conditions. Based on the analyses, visibility was found to be an exponential function of PM_(2.5) concentrations within a certain range of relative humidity. Thus, nonlinear models combining multiple linear regressions with exponential regression were subsequently developed using the data collected from June 2014 to May 2015, and the data from June 2013 to May 2014 was used to evaluate the performance of the model. It was demonstrated that the derived models can quantitatively describe the relationships between visibility, air quality and meteorological parameters in Ningbo. 相似文献
580.
Tao M Fengkui Duan Kebin He Yu Qin Dan Tong Guannan Geng Xuyan Liu Hui Li Shuo Yang Siqi Ye Beiyao Xu Qiang Zhang Yongliang Ma 《环境科学学报(英文版)》2019,31(9):8-20
With rapid economic growth and urbanization, the Yangtze River Delta(YRD) region in China has experienced serious air pollution challenges. In this study, we analyzed the air pollution characteristics and their relationship with emissions and meteorology in the YRD region during 2014–2016. In recent years, the concentrations of all air pollutants, except O_3,decreased. Spatially, the PM_(2.5), PM_(10), SO_2, and CO concentrations were higher in the northern YRD region, and NO_2 and O_3 were higher in the central YRD region. Based on the number of non-attainment days(i.e., days with air quality index greater than 100), PM_(2.5) was the largest contributor to air pollution in the YRD region, followed by O_3, PM_(10), and NO_2.However, particulate matter pollution has declined gradually, while O_3 pollution worsened.Meteorological conditions mainly influenced day-to-day variations in pollutant concentrations. PM_(2.5) concentration was inversely related to wind speed, while O_3 concentration was positively correlated with temperature and negatively correlated with relative humidity.The air quality improvement in recent years was mainly attributed to emission reductions.During 2014–2016, PM_(2.5), PM_(10), SO_2, NO_x, CO, NH_3, and volatile organic compound(VOC)emissions in the YRD region were reduced by 26.3%, 29.2%, 32.4%, 8.1%, 15.9%, 4.5%, and0.3%, respectively. Regional transport also contributed to the air pollution. During regional haze periods, pollutants from North China and East China aggravated the pollution in the YRD region. Our findings suggest that emission reduction and regional joint prevention and control helped to improve the air quality in the YRD region. 相似文献