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121.
Soil and water loss in the Lancang River-Mekong River watershed (in Yunnan section, China) and its control measures 总被引:1,自引:0,他引:1
MekongRiverisoriginatedinthenorthernrangeofTibetQinghaiPlateauofChina,flowingthroughsixcountries,theyareChina(YunnanProvince),M?.. 相似文献
122.
123.
运用A Tessier逐步化学连续提取法,研究了珠江口沉积物中各种生物有效性硅:Ⅰ-可交换离子态、Ⅱ-碳酸盐结合态、Ⅲ-铁锰氧化物结合态、Ⅳ-有机质和硫化物结合态.研究表明:表层沉积物中,Ⅲ为优势赋存态.在沉积柱C2中,Ⅲ>Ⅳ>Ⅱ>Ⅰ,Ⅰ、Ⅱ随深度变化无规律性,Ⅲ随深度先升高后下降,Ⅳ表层含量较高,到达一定深度(18 cm左右)后骤降.释放试验表明:振荡在一定时间内有利于硅释放;而盐度对硅释放的影响比较复杂,低盐度(5%以内),随盐度升高,释放量下降.当盐度继续升高时释放量又增加,但高盐度对硅释放影响不大;硅的释放在pH值=3~8范围内随着pH值升高而减少. 相似文献
124.
125.
黄河三角洲地区农业环境现状与污染防治措施 总被引:3,自引:0,他引:3
在黄河三角洲地区,近几年来,农业生产得到快速发展,农用薄膜、化肥和农药的使用量也逐年增加,由于人们环保意识薄弱,致使农业环境受到污染.农田连续覆膜十年以上,土壤中农膜残留量可达55~60kg/hm2;果园和蔬菜保护地栽培连续五年以上的地块,土壤中有机磷农药检出率高达80%以上;化肥用量连续五年达到每年1500~2000kg/hm2的农田,土壤有机质下降0.18~0.23%,团粒结构减少4.1~5.3%,总孔隙度减少11.4~13.8%,土壤的理化性能严重下降.通过对农业环境主要污染因素和污染现状分析,采取相应的防治措施,对保护农业环境,促进农业和农村经济的可持续发展有十分重要的意义. 相似文献
126.
珠江口沉积物重金属污染及其潜在生态危害评价 总被引:74,自引:3,他引:74
对珠江口表层沉积物中重金属的分布及富集状况进行了分析 ,并采用Hakanson潜在生态危害指数法对其生态危害程度进行了评价。结果表明 :珠江口表层沉积物中Zn、Cr、Cu、Cd等重金属含量呈现由西北渐向东南递减的变化特点 ,而Pb、As、Hg等重金属元素的含量分布无明显规律 ;这些重金属中 ,以Hg的富集程度最高 ,其余元素的富集均较低。生态危害评价显示 ,除Hg属中等危害程度外 ,其余的重金属元素均属轻微危害程度 ;珠江口表层沉积物中主要重金属污染程度的顺序为Hg >Cd >Pb >Cu >As>Cr>Zn。 相似文献
127.
Baxter E. Vieux Fekadu G. Moreda 《Journal of the American Water Resources Association》2003,39(4):757-769
ABSTRACT: A synthetic relationship is developed between nutrient concentrations and discharge rates at two river gauging sites in the Illinois River Basin. Analysis is performed on data collected by the U.S. Geological Survey (USGS) on nutrients in 1990 through 1997 and 1999 and on discharge rates in 1988 through 1997 and 1999. The Illinois River Basin is in western Arkansas and northeastern Oklahoma and is designated as an Oklahoma Scenic River. Consistently high nutrient concentrations in the river and receiving water bodies conflict with recreational water use, leading to intense stakeholder debate on how best to manage water quality. Results show that the majority of annual phosphorus (P) loading is transported by direct runoff, with high concentrations transported by high discharge rates and low concentrations by low discharge rates. A synthetic relationship is derived and used to generate daily phosphorus concentrations, laying the foundation for analysis of annual loading and evaluation of alternative management practices. Total nitrogen (N) concentration does not have as clear a relationship with discharge. Using a simple regression relationship, annual P loadings are estimated as having a root mean squared error (RMSE) of 39.8 t/yr and 31.9 t/yr and mean absolute percentage errors of 19 percent and 28 percent at Watts and Tahlequah, respectively. P is the limiting nutrient over the full range of discharges. Given that the majority of P is derived from Arkansas, management practices that control P would have the most benefit if applied on the Arkansas side of the border. 相似文献
128.
Keith E. Schilling Robert D. Libra 《Journal of the American Water Resources Association》2003,39(4):851-860
ABSTRACT: Historical trends in annual discharge characteristics were evaluated for 11 gauging stations located throughout Iowa. Discharge records from nine eight‐digit hydrologic unit code (HUC‐8) watersheds were examined for the period 1940 to 2000, whereas data for two larger river systems (Cedar and Des Moines Rivers) were examined for a longer period of record (1903 to 2000). In nearly all watersheds evaluated, annual base flow, annual minimum flow, and the annual base flow percentage significantly increased over time. Some rivers also exhibited increasing trends in total annual discharge, whereas only the Maquoketa River had significantly decreased annual maximum flows. Regression of stream discharge versus precipitation indicated that more precipitation is being routed into streams as base flow than as storm flow in the second half of the 20th Century. Reasons for the observed stream flow trends are hypothesized to include improved conservation practices, greater artificial drainage, increasing row crop production, and channel incision. Each of these reasons is consistent with the observed trends, and all are likely responsible to some degree in most watersheds. 相似文献
129.
Gerard McMahon Jerad D. Bales James F. Coles Elise M. P. Giddings Humbert Zappia 《Journal of the American Water Resources Association》2003,39(6):1529-1546
ABSTRACT: This paper presents the results of a study on the use of continuous stage data to describe the relation between urban development and three aspects of hydrologic condition that are thought to influence stream ecosystems—overall stage variability, stream flashiness, and the duration of extreme‐stage conditions. This relation is examined using data from more than 70 watersheds in three contrasting environmental settings—the humid Northeast (the metropolitan Boston, Massachusetts, area); the very humid Southeast (the metropolitan Birmingham, Alabama, area); and the semiarid West (the metropolitan Salt Lake City, Utah, area). Results from the Birmingham and Boston studies provide evidence linking increased urbanization with stream flashiness. Fragmentation of developed land cover patches appears to ameliorate the effects of urbanization on overall variability and flashiness. There was less success in relating urbanization and streamflow conditions in the Salt Lake City study. A related investigation of six North Carolina sites with long term discharge and stage data indicated that hydrologic condition metrics developed using continuous stage data are comparable to flow based metrics, particularly for stream flashiness measures. 相似文献
130.
James M. Omernik 《Journal of the American Water Resources Association》2003,39(3):563-573
ABSTRACT: The use of watersheds to conduct research on land/water relationships has expanded recently to include both extrapolation and reporting of water resource information and ecosystem management. More often than not, hydrologic units (HUs) are used for these purposes, with the implication that hydrologic units are synonymous with watersheds. Whereas true topographic watersheds are areas within which apparent surface water drains to a particular point, generally only 45 percent of all hydrologic units, regardless of their hierarchical level, meet this definition. Because the area contributing to the downstream point in many hydrologic units extends far beyond the unit boundaries, use of the hydrologic unit framework to show regional and national patterns of water quality and other environmental resources can result in incorrect and misleading illustrations. In this paper, the implications of this misuse are demonstrated using four adjacent HUs in central Texas. A more effective way of showing regional patterns in environmental resources is by using data from true watersheds representative of different ecological regions containing particular mosaics of geographical characteristics affecting differences in ecosystems and water quality. 相似文献