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81.
82.
Dissolved organic sulfur (DOS) is an important fraction for sulfur mobilization in ecosystem. In this work stream waters were sampled in 25 forested sites in southern China to study the dissolved sulfur fractions. Dissolved sulfur was fractionated into dissolved organic sulfur (DOS) and inorganic sulfate (SO42-) for 95 stream water samples. The results showed that the concentration of DOS ranged from 0 to 13.1 mg/L (average 1.3 mg/L) in all the streams. High concentrations of DOS in stream waters were found in the sites with high concentrations of sulfate. DOS constituted less than 60.1% of dissolved sulfur (average 17.9%). Statistical analysis showed that DOS concentration was correlated with SO42- in streams waters and total sulfur in surface layer soils. The results also showed that DOS concentration in stream waters had a seasonal variation, but no trends were found with it. The implication was that the long term sulfur deposition had led the increase of the concentration and fraction of DOS in stream waters in acid rain prevailing regions  相似文献   
83.
黑麦草、丛枝菌根对番茄Cd吸收、土壤Cd形态的影响   总被引:3,自引:1,他引:2  
采用大田试验研究了在重金属Cd(5.943 mg·kg~(-1)污染下,黑麦草和丛枝菌根对2个品种番茄("德福mm-8"和"洛贝琪")生长、Cd含量以及对土壤微生物、酶活性、p H和Cd形态的影响.结果表明,黑麦草和丛枝菌根单一或复合处理显著提高了2个品种番茄果实、根、茎、叶和植株总干重,增幅分别为14.1%~38.4%和4.2%~18.3%、20.9%~31.5%和8.4%~10.3%、13.0%~16.8%和3.0%~9.5%、10.7%~16.8%和2.7%~7.6%、14.3%~36.6%和4.5%~16.8%.黑麦草和丛枝菌根单一或复合处理增加了土壤中细菌、真菌、放线菌数量及土壤脲酶、转化酶、磷酸酶、过氧化氢酶活性,且土壤微生物数量及土壤酶活性在不同品种和处理间的差异达到显著性水平(P0.05).与番茄套种黑麦草或接种丛枝菌根提高了土壤p H值,降低了土壤中可交换态(EXC-Cd)、碳酸盐态(CAB-Cd)和铁锰氧化态(Fe-Mn-Cd)和土壤中Cd总量,土壤中Cd总量降幅为16.9%~27.8%.2个番茄品种果实、叶、茎和根中的Cd含量分别显著下降了6.9%~40.9%、5.7%~40.1%、4.6%~34.7%和9.8%~42.4%.Cd主要积累在番茄的叶、根和茎中,果实积累较少.比较供试的2个番茄品种,果实Cd含量和积累量及植株Cd总积累量以"洛贝琪""德福mm-8".  相似文献   
84.
田琳琳  王正  胡磊  任光前  朱波 《环境科学》2019,40(4):1939-1949
随着农业非点源氮(N)污染的加剧,农田周边溪流成为重要的活性N汇和潜在的氧化亚氮(N2O)排放源.为查明长江上游农业源溪流中溶存N2O浓度的全年动态变化特征,于2014年12月~2015年10月开展紫色土丘陵区典型农田源头溪流N2O浓度的连续采样观测,采用水-气顶空平衡-气相色谱法测定顶空气体中N2O浓度,根据相关参数计算出本研究水体中的溶存N2O浓度,并同步测定溪流水体物理化学指标,分析水中溶存N2O浓度的主要影响因素.结果表明,长江上游紫色土丘陵区的典型农业源溪流的硝态氮(NO3--N)是最主要的活性N赋存形态(年均1.45 mg·L-1),溪流水体溶存N2O质量浓度(以N计)全年平均为0.57 μg·L-1(范围0.26~1.28 μg·L-1),冬、春、夏和秋季的均值分别为0.63、0.45、0.53和0.64 μg·L-1,但季节间无显著差异.溪流水体溶存N2O浓度全年都处于过度饱和状态(饱和度年平均为203.9%,范围109.7%~546.5%),可见,农业源溪流全年均为潜在的N2O释放源.溪流溶存N2O浓度的变化主要由水体NO3--N浓度决定,N2O的主要产生机制为反硝化作用;溪流季节平均N2O饱和度在夏、秋季显著高于冬、春季,水中溶存N2O饱和度的变化主要受水温和NO3--N浓度的共同影响.研究还发现农业源溪流中溶存N2O浓度在4~10月(湿润季节)间波动明显,较强降雨可促使其水中NO3--N浓度在雨后短期内升高,进而促进水体反硝化作用,导致雨后溪流中溶存N2O浓度的增加.  相似文献   
85.
外源硒对黄瓜抗性、镉积累及镉化学形态的影响   总被引:4,自引:1,他引:3  
采用盆栽试验,在土壤Cd(20 mg·kg-1)污染条件下,测定了不同浓度的Na2Se O3(Se水平为0、0.5和1.0 mg·L-1)处理对2个黄瓜(Cucumis satiuus L.)品种(低Cd富集植物品种津优1号和高Cd富集品种燕白)生物量、丙二醛(MDA)含量、抗氧化酶活性及黄瓜体内Cd形态和Cd积累量的影响.结果表明,叶面喷施硒(Na2Se O3)后,黄瓜叶、茎、根、果实、植株干重,以及Cd含量和积累量在两个品种间的差异达到了显著性水平.随硒浓度的增加,燕白叶的丙二醛(MDA)含量逐渐增加,津优1号叶的丙二醛含量则逐渐减少;燕白根的丙二醛含量先增后降,津优1号根的丙二醛含量先降后增.喷施Na2Se O3后,黄瓜叶和根的CAT、SOD和POD活性呈现不同变化趋势.喷施外源硒降低了2个品种果实中不同形态Cd含量.叶面喷施Na2Se O3使黄瓜叶、茎、根和果实中的Cd含量分别下降了3.2%~17.9%、14.6%~28.2%、5.1%~18.5%和60.6%~75.8%.比较2个供试黄瓜品种,无论喷施Na2Se O3与否,黄瓜植株中Cd积累量以津优1号燕白.  相似文献   
86.
张沐  任增谊  张曼  赵琼  尹洪斌 《环境科学》2023,44(7):3945-3956
外秦淮河是南京市一条重要的城市景观行洪河道,多年来受工业及生活污水影响,内源污染严重.为充分了解外秦淮河底泥污染特征,为疏浚提供决策依据,对河道上、中和下游典型断面底泥界面微环境以及营养物含量进行调查,采用有机指数法和污染指数法对底泥污染状况进行评估,同时根据污染物垂向分布特征模拟清淤对底泥内源释放削减的影响.结果表明,上中下游底泥界面以上DO均值分别为4.62、 3.25和3.41mg·L-1,且分别在4.4、 3.5和5.5 mm处消耗殆尽,是典型的城市河道污染特征体现.调查河段表层底泥的ω(TN)、ω(TP)和ω(OM)均值分别为1 734mg·kg-1、 1 337 mg·kg-1和4.82%,底泥TN和OM的有机污染指数均值为0.48,处于尚清洁水平,TP的单项污染指数均值为3.18,处于重度污染水平.模拟30 cm清淤深度结果表明,底泥SRP和Fe2+的释放速率较清淤前分别削减42%~82%和88%~96%,而NH+4-N的释放速率却较清淤前有...  相似文献   
87.
The agricultural production from the Lower South Platte Basin in Colorado represents a significant portion of the state economy. Until the early 1950's the production had developed almost exclusively by use of river water. Drought conditions combined with improved well technology resulted in an inordinate amount of well development in the valley during the period 1952-56. These wells were used for supplemental supply in many cases, but the application of sprinkler irrigation brought many acres of here-to-fore dry land into irrigated production. As a result of the vast amounts of groundwater withdrawal by the newly developed wells, senior surface appropriators found a decreasing amount of water available for use in the streams. The legislature, observing the doctrine of prior appropriation, ruled that all surface and ground water in a tributary would be treated and administered as one resource. This, of course, spelled doom for the well-oriented segment of the economy. Analysis of a segment of the river on an inflow-outflow basis was made with careful determination of all inflow-outflow in the study reach to include correlations required to determine ungaged side-channel in-flow and unmetered irrigation wells. Results indicate that wells have intercepted normal return flows to the river resulting in a decreased amount of surface water during the irrigation season. Stream depletion appears to equal the expected consumptive use of well water which ranged between 40% to 50% of the groundwater extraction.  相似文献   
88.
长三角和珠三角土壤中汞的化学形态、转化和吸附特性   总被引:8,自引:0,他引:8  
为了解长江三角洲和珠江三角洲农业土壤中汞的积累可能产生的环境影响,选择10个代表性农业土壤样品,研究了土壤中汞的化学形态、积累过程中形态的转化及吸附-解吸行为.研究表明,当无外源汞加入时,长江三角洲和珠江三角洲农业土壤中,汞主要以稳定的残余态形式存在.但随着汞加入量的增加,土壤中可交换态汞显著增加,增加程度与土壤性质有关.土壤pH是影响土壤汞有效性最重要的因素,其对土壤汞的吸附、解吸、形态转化和存在形态均有很大影响.土壤酸化可促进土壤汞的释放,加剧对环境的危害,防治土壤酸化也可有效降低土壤中汞对环境的危害.  相似文献   
89.
Remediation schemes for contaminated sites are often evaluated to assess their potential for source zone reduction of mass, or treatment of the contaminant between the source and a control plane (CP) to achieve regulatory limits. In this study, we utilize a stochastic stream tube model to explain the behavior of breakthrough curves (BTCs) across a CP. At the local scale, mass dissolution at the source is combined with an advection model with first-order decay for the dissolved plume. Field-scale averaging is then employed to account for spatial variation in mass within the source zone, and variation in the velocity field. Under the assumption of instantaneous mass transfer from the source to the moving liquid, semi-analytical expressions for the BTC and temporal moments are developed, followed by derivation of expressions for effective velocity, dispersion, and degradation coefficients using the method of moments. It is found that degradation strongly influences the behavior of moments and the effective parameters. While increased heterogeneity in the velocity field results in increased dispersion, degradation causes the center of mass of the plume to shift to earlier times, and reduces the dispersion of the BTC by lowering the concentrations in the tail. Modified definitions of effective parameters are presented for degrading solutes to account for the normalization constant (zeroth moment) that keeps changing with time or distance to the CP. It is shown that anomalous dispersion can result for high degradation rates combined with wide variation in velocity fluctuations. Implications of model results on estimating cleanup times and fulfillment of regulatory limits are discussed. Relating mass removal at the source to flux reductions past a control plane is confounded by many factors. Increased heterogeneity in velocity fields causes mass fluxes past a control plane to persist, however, aggressive remediation between the source and CP can reduce these fluxes.  相似文献   
90.
Although experiences with ecological restoration continue to accumulate, the effectiveness of restoration for biota remains debated. We complemented a traditional taxonomic analysis approach with information on 56 species traits to uncover the responses of 3 aquatic (fish, macroinvertebrates, macrophytes) and 2 terrestrial (carabid beetles, floodplain vegetation) biotic groups to 43 hydromorphological river restoration projects in Germany. All taxonomic groups responded positively to restoration, as shown by increased taxonomic richness (10–164%) and trait diversity (habitat, dispersal and mobility, size, form, life history, and feeding groups) (15–120%). Responses, however, were stronger for terrestrial than aquatic biota, and, contrary to our expectation, taxonomic responses were stronger than those of traits. Nevertheless, trait analysis provided mechanistic insights into the drivers of community change following restoration. Trait analysis for terrestrial biota indicated restoration success was likely enhanced by lateral connectivity and reestablishment of dynamic processes in the floodplain. The weaker response of aquatic biota suggests recovery was hindered by the persistence of stressors in the aquatic environment, such as degraded water quality, dispersal constraints, and insufficient hydromorphological change. Therefore, river restoration requires combined local- and regional-scale approaches to maximize the response of both aquatic and terrestrial organisms. Due to the contrasting responses of aquatic and terrestrial biota, the planning and assessment of river restoration outcomes should consider effects on both components of riverine landscapes.  相似文献   
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