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41.
刈割对牧草地下部根区土壤养分及土壤酶活性的影响   总被引:12,自引:1,他引:12  
对不同刈割强度对牧草地下部根区土壤养分状况及土壤酶活性进行了研究,结果表明,牧草刈割对根区土壤养分、土壤酶活性和土壤微生物数量存在一定影响。不同刈割强度对牧草根区土壤有机质、全磷和全钾含量无明显影响。土壤全氮、碱解氮、速效磷、速效钾含量均因刈割强度的增加而显著下降。土壤蔗糖酶、脲酶活性因刈割处理强度的增加而下降;土壤过氧化氢酶活性则表现为相反的变化趋势。刈割对土壤微生物总数量的影响较大,表现为轻刈割>不刈割>重刈割。  相似文献   
42.
ABSTRACT: Effects of the 1993 flood on river water and sediment quality were investigated using historical data and data collected from the Illinois River and Upper Mississippi River in a post‐flood period. Overall the post‐flood results showed systematic reductions and individual changes in the water and sediment constituents. The reductions in sediment metals and nutrients were most obvious at the Keokuk and Lock and Dam 26 stations. By analyzing and comparing the physical changes to the changes in water and sediment constituents at each station, it was found that physical processes such as sediment entrainment and, more importantly, the removal of fine sediment to be the main causes for the reduced concentrations in sediment constituents. On the other hand, sediment redistribution and associated secondary contamination could have caused the emergence of several water and sediment constituents that were undetected before the flood.  相似文献   
43.
云贵高原湖区湖泊营养物生态分区技术方法研究   总被引:1,自引:1,他引:1  
提出一种基于主成分分析、聚类分析、判别分析和空间自相关的分区模型,用于对云贵高原湖区湖泊营养物生态分区的研究.首先运用主成分分析方法对众多指标进行了降维综合处理,产生彼此互补相关又能综合反映湖区情况的4个新指标,累计贡献率达到93.69%,具有充分的代表性,构建了云贵高原湖区湖泊营养物生态分区指标体系.在此基础上,根据各区域新指标值,结合聚类模型初步将湖泊流域分为5类,再利用判别分析完成非湖泊流域的类别判别,最后运用空间自相关分析方法,按聚类结果进行全局自相关分析,Moran’sI为0.320,且检验值Z值为68.2,远大于临界值(显著水平1%所对应的临界值2.58),表明聚类结果与空间位置具有显著相关性,之后运用局部自相关对区域各因素的主成分综合得分的空间分布格局进行了量化分析,揭示了零散分类区块在空间地域分布上的关联和差异,根据关联结果完成最终的分区.结果表明,利用此分区模型可以尽量避免人为因素,得到更为客观的分区结果,具有良好的适应性和可行性,可为探索适合我国湖泊营养物生态分区的指标体系和分区技术方法,完成全国湖泊营养物生态分区和科学地制定我国湖泊营养物基准和富营养化控制标准提供技术支持.  相似文献   
44.
Abstract: Excessive loads of nutrients transported by tributary rivers have been linked to hypoxia in the Gulf of Mexico. Management efforts to reduce the hypoxic zone in the Gulf of Mexico and improve the water quality of rivers and streams could benefit from targeting nutrient reductions toward watersheds with the highest nutrient yields delivered to sensitive downstream waters. One challenge is that most conventional watershed modeling approaches (e.g., mechanistic models) used in these management decisions do not consider uncertainties in the predictions of nutrient yields and their downstream delivery. The increasing use of parameter estimation procedures to statistically estimate model coefficients, however, allows uncertainties in these predictions to be reliably estimated. Here, we use a robust bootstrapping procedure applied to the results of a previous application of the hybrid statistical/mechanistic watershed model SPARROW (Spatially Referenced Regression On Watershed attributes) to develop a statistically reliable method for identifying “high priority” areas for management, based on a probabilistic ranking of delivered nutrient yields from watersheds throughout a basin. The method is designed to be used by managers to prioritize watersheds where additional stream monitoring and evaluations of nutrient‐reduction strategies could be undertaken. Our ranking procedure incorporates information on the confidence intervals of model predictions and the corresponding watershed rankings of the delivered nutrient yields. From this quantified uncertainty, we estimate the probability that individual watersheds are among a collection of watersheds that have the highest delivered nutrient yields. We illustrate the application of the procedure to 818 eight‐digit Hydrologic Unit Code watersheds in the Mississippi/Atchafalaya River basin by identifying 150 watersheds having the highest delivered nutrient yields to the Gulf of Mexico. Highest delivered yields were from watersheds in the Central Mississippi, Ohio, and Lower Mississippi River basins. With 90% confidence, only a few watersheds can be reliably placed into the highest 150 category; however, many more watersheds can be removed from consideration as not belonging to the highest 150 category. Results from this ranking procedure provide robust information on watershed nutrient yields that can benefit management efforts to reduce nutrient loadings to downstream coastal waters, such as the Gulf of Mexico, or to local receiving streams and reservoirs.  相似文献   
45.
为揭示邛海流域设施葡萄园土壤养分的累积状况与地下水的污染特征,选取邛海北岸典型设施葡萄种植区为研究区域,采集不同种植年限的设施葡萄园和普通农田表层土壤以及相应区域地下水进行分析,并采用相关性分析方法探讨葡萄园表层土壤中氮、磷浓度,土壤理化性质与种植年限之间的关系。结果表明:设施葡萄园表层土壤中速效氮浓度平均为0.702 g/kg,速效磷浓度平均为0.135 g/kg,分别是背景(未耕作)土壤的8.2倍和6.5倍;土壤中总氮和总磷浓度与种植年限呈显著正相关,氮、磷养分会随着种植年限的增加在土壤中累积,且由于种植过程中磷肥的长期大量施用,土壤中磷素累积显著;设施葡萄园土壤pH与其养分浓度呈显著负相关,土壤电导率与其养分浓度呈显著正相关,氮、磷肥料的大量施用会加重土壤的酸化和盐渍化程度;设施葡萄园土壤养分淋失主要以硝态氮为主,地下水中硝酸盐浓度随着种植年限的增加而升高,对邛海水质存在潜在污染风险。  相似文献   
46.
潘晓雪  马迎群  秦延文  邹华 《环境科学》2015,36(8):2800-2808
为了解"引江济太"调水过程中长江、望虞河对贡湖营养盐输入特征,于2013年8月和2013年12月引水期间对20个采样点各形态N、P质量浓度的沿程和时间变化以及百分含量占比进行研究.结果表明,两个不同的引水期,长江-望虞河-贡湖段水体各形态N、P沿程和时间变化均表现不一:长江引水经望虞河入贡湖后,水体NO-2-N、NO-3-N、NH+4-N和TN质量浓度均较长江和望虞河段有不同程度的降低,而贡湖段DON质量浓度显著高于长江和望虞河段,但长江-望虞河段水体各形态N中NO-3-N质量浓度最高.长江和望虞河TP质量浓度总体表现平稳,而各形态P质量浓度在两个引水时期内有所变化.从时间变化来看,2013年8月水体的DON和TP质量浓度总体上高于12月;而NO-3-N和DOP质量浓度总体上低于12月.总体来说,两个引水时期内,NO-3-N和TPP是望虞河经长江引水的主要N、P形态;而贡湖经望虞河水体输入的N、P主要形态分别为NO-3-N、PO3-4-P和TPP.  相似文献   
47.
Speiran, Gary K., 2010. Effects of Groundwater-Flow Paths on Nitrate Concentrations Across Two Riparian Forest Corridors. Journal of the American Water Resources Association (JAWRA) 46(2):246-260. DOI: 10.1111/j.1752-1688.2010.00427.x Abstract: Groundwater levels, apparent age, and chemistry from field sites and groundwater-flow modeling of hypothetical aquifers collectively indicate that groundwater-flow paths contribute to differences in nitrate concentrations across riparian corridors. At sites in Virginia (one coastal and one Piedmont), lowland forested wetlands separate upland fields from nearby surface waters (an estuary and a stream). At the coastal site, nitrate concentrations near the water table decreased from more than 10 mg/l beneath fields to 2 mg/l beneath a riparian forest buffer because recharge through the buffer forced water with concentrations greater than 5 mg/l to flow deeper beneath the buffer. Diurnal changes in groundwater levels up to 0.25 meters at the coastal site reflect flow from the water table into unsaturated soil where roots remove water and nitrate dissolved in it. Decreases in aquifer thickness caused by declines in the water table and decreases in horizontal hydraulic gradients from the uplands to the wetlands indicate that more than 95% of the groundwater discharged to the wetlands. Such discharge through organic soil can reduce nitrate concentrations by denitrification. Model simulations are consistent with field results, showing downward flow approaching toe slopes and surface waters to which groundwater discharges. These effects show the importance of buffer placement over use of fixed-width, streamside buffers to control nitrate concentrations.  相似文献   
48.
The effects of an arbuscular mycorrhizal fungi (AMF) association on the growth, survival capabilities, nutrients and lead (Pb) uptake of Miscanthus sacchariflorus under different Pb concentrations were studied in the form of pot cultures. The treatments comprised inoculation or non-inoculation of the AMF, Gigaspora margarita, and the addition of three Pb concentrations to the soil (0, 100 and 1000?mg?kg?1). The addition of Pb significantly decreased mycorrhizal colonisation. The inoculation of AMF with Pb increased chlorophyll content, Fv/Fm, total dry mass, indole-3-acetic acid (IAA), total nitrogen, and total phosphorus, whereas H2O2 level, indole-3-acetic acid oxidase (IAAO) activity, and peroxidase (POD) activity were low compared to those in the non-inoculated treatments. Moreover, the application of AMF together with Pb doses induces concentrations of Pb in the plant, where the higher dose of Pb (1000?mg?kg?1) induces a lower content of Pb in the aerial part of the plant but a higher content in the root. G. margarita enhanced the tolerance of M. sacchariflorus against Pb toxicity, and facilitated the accumulation of Pb in the plant roots, whereas translocation to the shoots was inhibited at the highest dose Pb (1000?mg?kg?1). However, in contaminated soil, the Pb removal capability of M. sacchariflorus with AMF was remarkable.  相似文献   
49.
入侵种喜旱莲子草对土壤养分的表型可塑性反应   总被引:9,自引:1,他引:9  
对外来入侵种喜旱莲子草(Alternanthera philoxeroides(Mart.)Griseb.)在不同土壤氮养分处理中的表型可塑性反应进行了研究。结果表明:土壤中氮养分水平对喜旱莲子草克隆生长有显著影响,如分枝强度、苇节长度随氮含量升高均有不同程度的增加;氮养分最高的处理中根系生物量投资最小,而茎、叶生物量投资最大,对照处理中则表现山根冠比最大。研究结果表明,在不同土壤养分条件下,喜旱莲子草不同表型结构有可能同时对环境选择作出反应,在种群生存与维持、生长、繁殖等功能方面实现种群个体各器官生物量投资的优化配置来适应多样化的环境,以增强其入侵能力,  相似文献   
50.
本文研究了大黑汀水库表层沉积物碳氮磷污染负荷及分布特征,利用Peeper (pore water equilibriums)技术获取沉积物-水界面氮磷剖面特征,分析大黑汀水库间隙水氮磷分布的空间差异;采集沉积物无扰动柱样用静态培养法对其水土界面氮磷交换速率进行估算.结果表明:沉积物中TN、TP和TOC的含量分别在729~5894mg/kg、1312~2439mg/kg和0.5%~5.6%之间,沉积物中氨氮(NH4+-N)、硝酸盐氮(NO3--N)、亚硝酸盐氮(NO2--N)和活性磷(PO43--P)含量分别在0.6~202.9、34.4~168.3、0.1~0.3和16.1~75.2mg/kg之间,主要表现为下游含量高于上游,空间分布特征明显;沉积物C/N表明该水库有机质主要来源于水体内部,与人类网箱养殖活动有关.间隙水中NH4+-N和PO43--P浓度远高于上覆水,表明大黑汀水库间隙水具有向上覆水体扩散营养盐的潜力.在垂直方向上间隙水中NH4+-N浓度随深度的增加而变大,PO43--P浓度具有在0~4cm快速增加,之后表现出逐渐降低的趋势.静态释放结果表明,沉积物-水界面NH4+-N和PO43--P的交换通量分别为3.5~110.5mg/(m2·d)和0.1~1.6mg/(m2·d),NO3--N和NO2--N交换通量在-112.5~157.2mg/(m2·d)和0.04~0.94mg/(m2·d)之间.NH4+-N、NO3--N和PO43--P在下游表现出较高的释放速率.较高的沉积物内源负荷使得大黑汀水库沉积物具有较大的向上覆水释放营养盐的潜力,改善水库沉积物污染状况是治理大黑汀水库水体环境的必要之举.  相似文献   
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