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1.
山东平原地区浅层地下水有机污染特征分析   总被引:4,自引:4,他引:0       下载免费PDF全文
山东平原地区浅层地下水普遍受到有机物污染并形成多个有机污染区,检出的有机污染物达29种之多,个别地区有机物含量超过地下水饮用限量标准,致使地下水质量恶化。该文以水文地质条件分析及地下水污染物组分测试为手段,对山东平原区浅层地下水中有机污染种类及污染程度进行了研究,目的在于评价地下水安全性,保护宝贵的地下水资源。  相似文献   

2.
本文在对胜利油田陆上采油区水文地质条件和污染源现状分析的基础上,对浅层地下水和包气带土壤进行了样品采集、污染物组分测试及污染程度研究,分析研究结果表明:胜利油田陆上采油区浅层地下水和土壤已普遍受有机物污染并形成多个有机污染区,检出的有机污染物达16种之多,个别有机物含量还很高.浅层地下水污染程度受到油田采油井数量、采油...  相似文献   

3.
淮河流域(山东段)南部平原区浅层地下水有机污染特征   总被引:2,自引:0,他引:2  
随着经济的发展,淮河流域山东段南部平原区地下水污染、环境问题日趋严重。就该区浅层地下水有机污染特征进行了总结,并就污染源、浅层地下水及表层土壤有机污染现状、河流对两侧浅层地下水的影响及污染途径等问题进行了研究。结果表明,该地区浅层地下水中有机组分检出率较低,有机组分中仅有个别指标水质超标,研究区浅层地下水有机污染程度整体较轻。平面分布特征上,有机物检出点及污染严重点主要集中在城镇所在地及周边地区、河道两侧及工矿企业密集区;在垂向分布特征上,浅层地下水的有机污染程度较深层地下水严重,随着深度的增加,污染程度逐渐减弱。  相似文献   

4.
本文针对长江三角洲某地区3个城市(C市、W市、S市)浅层地下水的单环芳烃进行了研究。根据研究区水样分析数据,总结出该地区单环芳烃的污染特点和分布特征,然后从研究区污染源分布、单环芳烃的挥发性、研究区降水以及包气带的防护性能等角度探讨了浅层地下水单环芳烃污染形成的原因。研究表明,该区浅层地下水单环芳烃污染呈点状分布,污染范围不大;浅层地下水单环芳烃污染相对较轻而地表水污染严重。浅层地下水单环芳烃污染特征与研究区工业企业分布、单环芳烃的挥发特性、降水以及研究区包气带防污性能密切相关。浅层地下水单环芳烃污染和工业企业分布具有很好的一致性,有机污染物高浓度的检出点均分布在污染工厂附近,无明显污染源的地段,其浅层地下水水样无有机污染物检出;各检测单环芳烃组分的亨利常数均大于1.01×102Pa·m3·mol-1,所以挥发作用是其主要迁移机理,苯的柱试验表明,苯溶液浓度从1079.0μg/L降低至6.9μg/L仅需26天;研究区包气带为河湖三角洲沉积相的淤泥质粘土,粘粒含量大,粘土矿物含量也很高,富含有机质,其含量大都在1.0%以上,此类土壤具有高的吸附能力,阻滞了污染物向浅层地下水迁移;降雨时浅层地下水中单环芳烃检出率和检出浓度都较高。4种因素综合,使得研究区浅层地下水单环芳烃呈现污染程度轻、分布零散、污染分布范围小的特点。  相似文献   

5.
曲万隆  杨丽芝 《山东地质》2014,(4):90-94,99
以大量的地下水测试数据为基础,从污染源分布及水文地质条件入手,对黄河下游平原地下水中有机污染物类型及污染程度进行了深入研究。黄河下游平原地下水普遍受到有机物污染并形成多个典型有机污染区,有机物总检出率为35.5%,检出的有机污染物种类达29种,单个样品检出的有机物种类最多达19种,部分有机物含量超过地下水饮用标准,致使地下水质量恶化。地下水污染区的分布及污染程度与污染源的种类和分布具有很好的相关性。  相似文献   

6.
对江苏某化工区及其周围地区(农业区)34个浅层地下水样点的水质测试结果进行了统计分析。结果表明:91项有机测试指标中检出16项,其中,检出率较高的有二氯甲烷、菲、荧蒽、芘、β-BHC和萘。在平面分布上,化工区内样点检出有机物的种类和项数均大于周围地区(农业区),说明该区有机污染程度与化工企业的分布密切相关;挥发性有机物二氯甲烷可通过大气干湿沉降作用污染浅层地下水。  相似文献   

7.
太湖流域某地区浅层地下水有机污染特征   总被引:1,自引:0,他引:1  
对太湖流域某地区浅层地下水有机污染特征进行了总结,并就污染来源、污染途径和典型污染源附近浅层地下水有机污染特征等问题进行了研究。研究结果表明,该地区浅层地下水中各组分的检出率较高,但检出浓度较低,除苯在个别采样点处超出美国环保局(EPA)饮用水标准外,其余卤代烃和单环芳烃组分均没有超标;平面分布上,卤代烃和单环芳烃各组分的浓度高值点大都集中于该地区东南部的工业区内,这种空间分布特征与工业区的分布具有明显的一致性;垂向上有浅部地下水的污染程度相对较重、深部地下水较轻的特点;典型污染源周边浅层地下水的污染程度较重,但随着采样点远离污染源,地下水中各有机污染组分的浓度迅速衰减。  相似文献   

8.
为查明哈尔滨地区浅层地下水水质现状及污染情况,利用松嫩平原(黑龙江)地下水污染调查评价项目的数据,对浅层地下水主要化学特征进行了描述.在此基础上采用模糊综合评价法进行了地下水质量评价,采用污染指数法进行了地下水污染现状评价.结果表明:研究区浅层地下水水化学类型以HCO3-Ca型为主;受原生环境下水化学条件控制的Fe、Mn指标含量对水质影响较大;地下水污染属于区域性污染,污染范围广、污染程度重,主要污染物为NH4+及NO3-、NO2-,来源于生活污水及农业生产所施用的化肥.根据分析数据,研究区地下水污染以无机污染为特征.  相似文献   

9.
淮南市区浅层地下水污染机制研究   总被引:1,自引:0,他引:1  
该文将重点阐述淮南市区浅层地下水的主要污染源及其分布形状、主要污染物及其性状特征,分析了不同来源的污染物对市区浅层地下水的污染途径.  相似文献   

10.
在对汶泗河冲洪积平原水文地质条件和污染源现状进行阐述的基础上,对不同含水岩组无机组分指标进行了分析,表明浅层孔隙水和部分地区岩溶裂隙水无机组分含量大幅增高,深层孔隙水无机物含量则变化不大。在有机污染方面,浅层孔隙水有机物检出率26.8%,但含量很低,远未达到饮用水标准限值;岩溶裂隙水有机物检出率46.7%,检出率相对较高,局部地段有机物超标;深层孔隙水有机物基本未检出。该区地下水污染评价结果表明,浅层孔隙水和岩溶裂隙水无机污染呈面状污染特征,且污染程度较重,而有机污染则呈现点状污染特征,且污染程度总体较轻。对研究区地下水污染现状,提出了地下水安全供水对策。  相似文献   

11.
赵岩 《地质与资源》2015,24(4):388-393
随着城市规模和城市化进程的扩大与加快,工业化程度的不断提高,区域地表水和地下水受到不同程度的污染,人类赖以生存的淡水资源面临威胁.20世纪90年代以来,我国开始关注农业污染和有机污染的研究工作.结合研究区研究情况,本次评价主要应用单因子污染指数法及综合污染指数法.综合分析了地下水评价的各种方法后,本次评价选择了单指标污染指数评价法和地下水污染综合评价法对该区进行评价.在研究区展开了野外调查,采集了浅层地下水样品110组(其中包括平行样、加标样和监控样合计20组),每个样品测试了35项指标.评价结果表明,研究区67.4%浅层地下水受到不同程度的污染.根据本次评价,基本上反映了研究区地下水污染状况,并为有针对性的治理提供依据.  相似文献   

12.
Evaluation of the shallow groundwater quality in Central and Southern Jiangsu Province (CSJ) in China is important not only to public health but also to sustainable development and utilization of groundwater resources. In this work, 968 groundwater samples were collected by field surveys during 2006 to 2010 to investigate spatial distribution and extent of pollution. The single factor pollution standard index method, considering the values of both the natural groundwater background and the standard of safe drinking water, was used to assess the groundwater quality in the study area. Results showed that the shallow groundwater was severely polluted with Grade V and VI (i.e., severe and extremely severe pollution) groundwater covered about 1/3 and 1/4 of the study area, respectively. The main groundwater contaminants that cause the severe and extremely severe pollutions were manganese, iron, arsenic, and nitrogen. Findings from this work showed that natural hydrogeochemical processes were the main causes of the iron and manganese pollution, however, human activities (e.g., industrial, agricultural, and domestic pollutions) mainly contributed to the nitrogen pollution in the study area.  相似文献   

13.
Daqing Oilfield is located in the northeast of Songnen Plain in Daqing City, Heilongjiang Province, which is a petrochemical industry gathering place based on petroleum refining, chemical industry, chemical fiber and fertilizer. In recent years, the quantity demand of petroleum and petrochemical production for groundwater in Daqing Oilfield is growing, and it’s of great significance to analyze and study the quality and pollution degree of groundwater for groundwater exploitation, utilization and protection. In this paper, groundwater quality of Daqing Oilfield evaluated by Nemerow Index is poor, and most points are Class IV groundwater; When evaluating groundwater pollution by hierarchical ladder method, the results show that the severe and extremely severe pollution points account for 34.48% in shallow phreatic water and 20% in deep confined water, showing that shallow groundwater is more seriously polluted than the deep. The main components influencing the quality of groundwater in the study area are total hardness, total dissolved solids, Cl-, SO42- and so on, which are affected by both the native environment and human activities; The main pollution components in groundwater are nitrite and nitrate nitrogen which are affected by human activities. Daqing Oilfield groundwater pollution is characterized by inorganic pollution, while organic components related to human activities contribute less to the groundwater pollution currently.  相似文献   

14.
High nitrate concentrations, above the WHO guideline of 50 mg l−1, were observed in samples of shallow wells reaching the Yeumbeul suburb (Senegal) area groundwater. This groundwater is exploited by 7000 houses and therefore there are health implications. Correlations between parameters such as nitrate content (NO3) in the groundwater and soil water, the distance between shallow wells and family latrines, and soil water chloride (Cl) and colon bacillus content led to two possible sources of groundwater pollution: first, contamination by non impervious and shallow latrines; and second, the leaching of soil NO3 from waste organic matter carried in groundwater.  相似文献   

15.
This study examined the natural and anthropogenic pollution of groundwater at a national groundwater monitoring station (NGMS) in a dyeing industry complex, Korea. The arsenic contamination of a shallow well at the NGMS was noticed, starting from 22 months after the well installation. Possibilities of several mechanisms for As pollution of the groundwater were examined. The arsenical pyrite oxidation as a source mechanism in the shallow aquifer may be disregarded because of deficiency of pyrite in the shallow sediments, concomitant with depleted dissolved oxygen and very low levels of redox potentials of the As-polluted groundwater. The effect of wastewater from the general industrial area through a covered sewer stream was also considered as a possible source. Even though occurrence patterns of phenol and volatile organic hydrocarbons were very similar to those of the polluted shallow groundwater, As was not detected in the wastewater. One of the most plausible sources of the arsenic pollution was believed to be the reductive dissolution of Fe hydroxide. The As-polluted shallow groundwater had also very high levels of pH, HCO3, COD and very low levels of DO and NO3, which support the possibility of As pollution by the reductive dissolution. Consequently, the shallow groundwater in and around the NGMS has been polluted with various contaminants including As, phenol, chlorinated solvents, and petroleum hydrocarbons through multiple sources of contamination, such as natural reductive dissolution, dyeing wastewater, industrial wastewater, and municipal sewage.  相似文献   

16.
蒋方媛  郭清海 《地质科技情报》2008,27(2):97-102,107
为开展山西太原盆地的地下水环境保护工作,在GIS平台上利用DRASTIC模型采用地下水位埋深、含水层净补给量、含水层介质、土壤介质、地形、包气带、水力传导系数7个指标评价了盆地浅层孔隙地下水的脆弱性.结果表明:太原市与介休市是盆地内地下水脆弱性最高的地区,同时也是山西省工农业最发达的地区.为解决工农业发展带来的高污染风险性与地下水环境脆弱性这一对明显的矛盾,应加强以上地区的地下水污染防治工作,在开展工作时应坚持"以预防为主,防、治结合"的原则.  相似文献   

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