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乌鲁木齐河作为乌鲁木齐市的主要水源地,在生态保护和城市供水中均具有重要的战略意义。为了研究乌鲁木齐河水化学特征及水环境质量,于2016年4—10月逐月对乌鲁木齐河6个采样断面进行地表水样采集,获取水样41个,对主要离子(K~+、Na~+、Ca~(2+)、Mg~(2+)、Cl~-、HCO_3~-、SO_4~(2-))浓度及pH、DO、TDS、CODMn、TN、TP、NH3-N进行监测分析,探讨了水化学组成的时空差异及影响因素,研究了乌鲁木齐河的水环境质量状况。结果显示,乌鲁木齐河水域年离子总量平均值为213.27 mg/L,属弱矿化度水,年离子总量在空间上表现出沿主河道由南向北逐步增加的趋势。主要阴离子为HCO_3~-和SO_4~(2-),主要阳离子为Ca~(2+),水质类型为Ca~(2+)-HCO_3~--SO_4~(2-)型。2016年河水年内不同时期TDS平均浓度排序为:9月10月4月5月6月8月7月。对水化学离子含量基于时间序列分析,结果显示除Ca~(2+)、HCO_3~-外,其他离子含量在各月份间均存在显著差异。SO_4~(2-)浓度在年内变化最为明显,呈现先减少后增加的趋势。对主要离子含量基于空间序列进行分析,结果显示,仅Na+含量存在显著差异。现阶段乌鲁木齐河的水环境质量为轻度污染。 相似文献
173.
Seasonal variations of monocarbonyl and dicarbonyl in urban and sub-urban sites of Xi’an,China 总被引:1,自引:0,他引:1
K. F. Ho Steven Sai Hang Ho W. T. Dai J. J. Cao Ru-Jin Huang Linwei Tian W. J. Deng 《Environmental monitoring and assessment》2014,186(5):2835-2849
Seventeen airborne carbonyls including monocarbonyls and dicarbonyls were determined in urban and sub-urban sites of Xi’an, China in three seasons in 2010. In winter, acetone was the most abundant carbonyl in the urban site due to usage of organic solvents in constructions and laboratories and its slower atmospheric removal mechanisms by photolysis and reaction with hydroxyl radical than those of formaldehyde and acetaldehyde. In the sub-urban site, acetaldehyde was the most abundant carbonyl, followed by formaldehyde and acetone. During summer, however, formaldehyde was the most dominant carbonyl in both sites. The photooxidations of a wide range of volatile organic compounds (VOCs) yielded much more formaldehyde than other carbonyls under high solar radiation and temperature. In the urban site, the average concentrations of dicarbonyls (i.e., glyoxal and methyglyoxal) in spring and summer were higher than that in winter. Transformation of aromatic VOCs emitted from fuel evaporation leads to the formation of 1,2-dicarbonyls. A reverse trend was observed in sub-urban sites, as explained by the relatively low abundances and accumulations of VOC precursors in the rural atmosphere during warm seasons. Moreover, cumulative cancer risk based on measured outdoor carbonyls (formaldehyde and acetaldehyde) in Xi’an Jiaotong University and Heihe was estimated (8.82?×?10?5 and 4.96?×?10?5, respectively). This study provides a clear map on the abundances of carbonyls and their source interpretation in the largest and the most economic city in Northwestern China. 相似文献
174.
Tao Miaomiao Xu Ying Liu Qingyang Liu Yanju Tian Shili Schauer James J. 《Environmental Chemistry Letters》2023,21(3):1281-1286
Environmental Chemistry Letters - Plants remove efficiently atmospheric pollution by soot particles, yet the mechanisms used by leaves to capture soot particles are unclear. Here, we studied the... 相似文献
175.
介绍水射流技术在放顶煤综采中的应用。通过具体的技术经济指标说明在一定的条件下水系与放顶煤综采相结合是提高采煤效益的新途径。还说明,水射流技术在采矿工业中有着广阔的应用前景。 相似文献
176.
本文通过对芦笋的高产栽培技术与开发利用研究,提出黑龙江省可扩大芦笋的种植面积,形成开发利用规模,为发展乡镇企业开创一条致富门路,并满足黑龙江市场需求。 相似文献
177.
田静敏 《中国环境管理干部学院学报》2002,12(1):77-78
实施教师资格制度使教师的任用走上了科学化、规范化、法制化的轨道,推动了教育人事的改革,逐步形成了开放式的教师培养体系。 相似文献
178.
This paper introduces an integrated spatial and temporal modeling system developed mathematically for assessing microbial contaminants on animal-grazed farmlands. The model uses fecal coliform, specifically Escherichia coli, as an indicator of fecal contamination and describes the sources, sinks, transport processes, and fate of E. coli contaminants in catchments and associated streams. Spatial features include grazing location, land topography, distance to a nearby stream, and distance through the stream network to the outlet. Temporal features are population dynamics on the land surface, in flow, and on streambeds. The model applies the principles of conservation of mass balance on two different types of pools: grid cells on land surfaces and networked stream segments. The model aims to improve the prediction of the effects of different land management strategies on the fecal contamination of waterways. This is achieved by characterizing the movement of fecal contaminants from land to streams and in-stream mobilization. Processes of attenuation, diffusion, and transport govern the movement. Our study site is a hill land catchment with an area of 140 ha and is used exclusively for animal grazing. The model was calibrated with previous research results, and then tested using the data collected at the outlet of the catchment. The sensitivity of the model predictions was analyzed for different scenarios: effect of stock rate, attenuation rate, and flow volumes. The similar pattern between monitored and predicted E. coli concentration proved that the model captures the key features that control the population dynamics of fecal contaminants. Further experiments are required to expand the model's functionality for covering more mitigation options. 相似文献
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