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71.
胶州湾及邻近海域表层海水中一氧化氮浓度分布及其影响因素探讨 总被引:1,自引:1,他引:0
2011年2~3月利用化学发光法对胶州湾及邻近海域表层海水中一氧化氮(NO)浓度进行了监测.结合水文、化学和生物等要素的同步观测资料,对该海域NO浓度分布及其影响因素进行了探讨.结果表明,胶州湾内表层海水中NO浓度为0.080~0.493 nmol.L-1,平均值为(0.292±0.146)nmol.L-1,胶州湾外NO浓度为未检出~0.435 nmol.L-1,平均值为(0.160±0.130)nmol.L-1.总体来说,胶州湾表层海水中NO浓度呈现出自湾内向湾外递降的分布趋势,陆地径流和人为活动可能对NO浓度的分布造成一定程度的影响.胶州湾及邻近海域表层海水中NO浓度比开阔大洋高1个数量级.周日变化研究表明,NO浓度具有一定的变化特征,最大值出现在15:00,这可能主要受光照的影响.影响NO浓度分布的因素比较复杂,可能主要受亚硝酸盐、光强和pH等因素的影响.结果表明,2011年春季胶州湾及邻近海域表层海水是大气NO的源,通量约为1.09×10-15 mol.(cm2.s)-1. 相似文献
72.
祁连山高山草甸土壤CO2通量的时空变化及其影响分析 总被引:1,自引:0,他引:1
采用Li-6400便携式光合作用测量系统连接Li-6400-09土壤呼吸室,在2004年生长季节对祁连山高山草甸土壤CO2通量沿海拔梯度进行了野外定位试验,统计分析了水热因子及根系生物量对高山草甸土壤CO2通量特征的可能影响.结果表明,土壤CO2通量存在明显的空间变化规律, 沿海拔梯度土壤CO2通量随着海拔梯度的增加而逐渐减小,其变异系数逐渐增加;就日变化而言,土壤CO2通量晚间维持在较低水平,02:00~06:00最低,在07:00~08:30开始升高,11:00~16:00达到峰值,16:00~18:30开始下降,整个过程呈单峰曲线.土壤CO2通量的日平均值介于(0.56±0.32) ~ (2.53±0.76) μmol·(m2·s)-1.从季节变化来看,土壤CO2通量均以夏秋季较高,春冬季排放量较低,7~8月份达到最大值[4.736 μmol·(m2·s)-1],6月与9月份次之,5月与10月份基本一致,整个生长过程总的变化趋势呈单峰曲线形式.高山草甸土壤CO2通量在植物生长季与10 cm土壤温度、土壤含水量、根系生物量都存在不同程度的正相关关系,表明高山草甸土壤CO2通量的空间变异主要受温度、水分和植物根系的综合影响. 相似文献
73.
第二松花江中下游沉积物汞的时空变化规律 总被引:3,自引:1,他引:2
将1973、1976、1983、1991年和本次的研究结果进行对比分析,得出了第二松花江中下游表层沉积物汞含量的时间变化规律.1976年以前汞含量处于增加趋势;1976~1982年汞含量有所下降;1982年汞污染源被切断,汞含量骤降;随后,汞污染浓度处于缓慢净化时期.将本次采集的沉积物样品分为3个粒度等级,最后以63 μm粒级的沉积物汞含量为代表分析了汞的水平变化规律,总体趋势是,排污口处汞含量最高;哨口至朝阳桥断面汞含量增加;朝阳桥至五家站断面,汞含量骤降,在五家站断面汞含量达到最小值;五家站至泔水缸断面汞含量又略有增加.并给出了本次研究中各断面沉积物汞的垂直变化规律. 相似文献
74.
Vertical and temporal distributions of N and P in soil solution in aquatic-terrestrial ecotone (ATE) of Taihu Lake were investigated, and the relations among N, P, ORP (oxidation reduction potential), TOC, root system biomass and microorganism were studied. As a whole, significant declines in TN, NO3^--N, DON (dissolved organic nitrogen) and TP concentration in soil solution have occurred with increase of the depth, and reached their minima at 60 cm depth, except for NH4^+-N, which increased with depth. The concentration of TP increased gradually from spring to winter in the topsoil, the maximum 0.08 mg/L presented in the winter while the minimum 0.03 mg/L in spring. In the deeper layer, the concentration value of TP fluctuated little. As for the NO3^--N, its seasonal variation was significant at 20 cm depth, its concentration increased gradually from spring to autumn, and decreased markedly in winter. Vertical and temporal distribution of DON is contrary to that of NO3^--N. The results also show that the variation of N and P in the percolate between adjacent layers is obviously different. The vertical variation ofTN, TP, NO3^--N, NH4^+-N and DON is significant, of which the variation coefficient of NO3^--N along the depth reaches 100.23%, the highest; while the variation coefficient of DON is 41.14%, the smallest. The results of correlation analysis show that the concentration of nitrogen and phosphorus correlate significantly with TOC, ORP, root biomass and counts of nitrifying bacteria. Most nutrients altered much from 20 to 40 cm along the depth. However, DON changed more between 60 and 80 cm. Results show that soil of 0-60 cm depth is active rhizoplane, with strong capability to remove the nitrogen and phosphorus in ATE. It may suggest that there exists the optimum ecological efficiency in the depth of above 60 cm in reed wetland. This will be very significant for ecological restoration and reestablishment. 相似文献
75.
All the regulations that define a maximum concentration of metals in the receiving soil are based on total soil metal concentration. However, the potential toxicity of a heavy metal in the soil depends on its speciation and availability. We studied the effects of heavy metal speciation and availability on soil microorganism activities along a Cu/Zn contamination gradient. Microbial biomass and enzyme activity of soil contaminated with both Cu and Zn were investigated. The results showed that microbial biomass was negatively affected by the elevated metal levels. The microbial biomass-C (Cmic)/organic C (Corg) ratio was closely correlated to heavy metal stress. There were negative correlations between soil microbial biomass, phosphatase activity and NH4NO3 extractable heavy metals. The soil microorganism activity could be predicted using empirical models with the availability of Cu and Zn. We observed that 72% of the variation in phosphatase activity could be explained by the NH4NO3-extractable and total heavy metal concentration. By considering different monitoring approaches and different viewpoints, this set of methods applied in this study seemed sensitive to site differences and contributed to a better understanding of the effects of heavy metals on the size and activity of microorganisms in soils. The data presented demonstrate the relationship between heavy metals availability and heavy metal toxicity to soil microorganism along a contamination gradient. 相似文献
76.
开发了一套监测批式废水生物处理系统质子变化的自动滴定测量装置.装置由批式反应器、数据自动采集与保存系统和药品自动投加系统组成.通过实际测量活性污泥氨氧化反应中氢离子产生量与氨消耗量的化学计量比值,考察自动滴定测量装置的测试精度.在1L的反应器中改变氨氮浓度(以N计)分别为1.67、3.33、8.33、16.66和30.00mg/L下实测比值与其理论值十分接近,相对误差在2.09%~6.34%之间;保持氨氮浓度16.66mg/L,在1、2、3和4L的反应器中实测比值相对误差在2.09%~-18.57%之间,随反应器体积增大而明显增大.反应器系统中的碳酸氢盐和氨盐缓冲体系,特别是在较大容积反应器中的滴定动态效应是导致测试误差的重要原因.研究成果为滴定测量方法在废水生物处理过程中监测质子变化提供了一种重要方法. 相似文献
77.
Seepage from Hg mine wastes and calcines contains high concentrations of mercury (Hg). Hg pollution is a major environmental
problem in areas with abandoned mercury mines and retorting units. This study evaluates factors, especially the hydrological and
sedimentary variables, governing temporal and spatial variation in levels and state of mercury in streams impacted by Hg contaminated
runo . Samples were taken during di erent flow regimes in theWanshan Hg mining area in Guizhou Province, China. In its headwaters
the sampled streams/rivers pass by several mine wastes and calcines with high concentration of Hg. Seepage causes serious Hg
contamination to the downstream area. Concentrations of Hg in water samples showed significant seasonal variations. Periods of
higher flow showed high concentrations of total Hg (THg) in water due to more particles being re-suspended and transported. The
concentrations of major anions (e.g., Cl??, F??, NO3?? and SO4
2??) were lower during higher flow due to dilution. Due to both sedimentation
of particles and dilution from tributaries the concentration of THg decreased from 2100 ng/L to background levels (< 50 ng/L) within
10 km distance downstream. Sedimentation is the main reason for the fast decrease of the concentration, it accounts for 69% and 60%
for higher flow and lower flow regimes respectively in the upper part of the stream. Speciation calculation of the dissolved Hg fraction
(DHg) (using Visual MINTEQ) showed that Hg(OH)2 associated with dissolved organic matter is the main form of Hg in dissolved
phase in surface waters in Wanshan (over 95%). 相似文献
78.
79.
80.
太原晋祠地区曾经是著名的稻米之乡,随着晋祠泉的断流,区内土地利用从之前的以水稻田为主转变为以玉米和果园为主.因此,研究土地利用变化后土壤呼吸对于准确估算区域碳循环具有一定意义.基于此目的,本研究以原来为稻田、现为果园利用方式的样地为对象,对其土壤呼吸进行了7 a(2006~2012年)、每月1~3次的定位观测,分析了土壤呼吸的年际、季节变化及其与环境因子年际、季节变化的关系.结果表明,土壤呼吸与土壤温度的季节变化与天数的关系可以用3参数高斯方程模型进行拟合.土壤呼吸的季节变化与土壤温度的季节变化关系为极显著的指数关系,但其与土壤水分季节变化的关系不显著.土壤呼吸速率年平均值为(5.32±3.31)μmol·(m~2·s)-1;碳通量年平均值为1 690.2 g·m-2,在1 294.0~2 006.0g·m~(-2)之间变化,年际均值差异不显著.土壤呼吸的温度敏感性指数(Q_(10))值的年际变化以5、10和15 cm温度测定深度计算分别在1.54~2.20、1.68~2.48和1.82~2.46之间;土壤温度10℃对应的土壤呼吸(R_(10))值的年际变化在2.37~2.81、2.43~3.13和2.59~3.47μmol·(m~2·s)-1之间;Q_(10)和R10值均随土壤温度测定深度增加而增加.Q_(10)的年际变化与10 cm深度的土壤温度(T_(10))的年际变化关系极显著(P=0.016),与其它因子的关系不显著;在拟合方程中增加土壤水分因子不能提高对Q_(10)年际变化的预测精度,说明在本样地水分对Q_(10)的影响较小.R10值的年际变化与环境因子的年际变化关系不显著.与土壤呼吸与土壤温度的单因素模型相比,土壤温度和土壤水分的双变量指数模型可以提高预测土壤呼吸季节变化的准确性.研究结果可以为本地区及同类地区的土壤呼吸估算提供一定参考. 相似文献