博尔戈达北湖水质研究

Wmp Gunatilaka, S. Wijeyaratne
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引用次数: 4

摘要

2000年1月至2000年6月,对Bolgoda湖的细菌种群与环境参数的关系进行了调查。每个月从Bolgoda湖的六个采样站采集地表水样本。以总活菌菌落形成单位(假设等于细菌种群密度)、总大肠菌群和粪便大肠菌群作为生物指标进行研究。理化环境参数包括温度、pH、电导率、盐度、塞奇盘深度、溶解氧(DO)、生化需氧量(BOD)、化学需氧量(COD)、正磷酸盐和硝酸盐含量。这些都是用标准方法测量的。研究了细菌密度与选定水质参数之间的相关性。在排放家庭和工业污水的排水口附近的几个采样点记录了高密度的细菌种群。在北湖上游和下游采集的样本中记录了低密度的细菌种群。结果还表明,一些化学参数可能对细菌种群密度有影响。细菌种群密度与生化需氧量(BOD)和磷酸盐浓度呈显著负相关。而细菌种群密度与湖底水体硝酸盐含量的相关性不显著。此外,DO、BOD值和po4 -3含量也反映了Bolgoda湖地表水的有机和无机营养物污染情况。但从下游采集的样本中,上述参数值均较低,表明该湖泊在一定程度上发生了自净化。然而,结果表明,目前博尔戈达湖受到工业和生活污水的严重污染。为避免灾难发生,应采取措施减少污染,减少附近工厂的污水排放,并在排放到本湖之前对其进行处理。关键词:水质;Bolgoda湖;水环境科学,Vol.14(2): 113-133
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study of water quality of Bolgoda North Lake
Bacterial populations were investigated in relation to the environmental parameters in Bolgoda Lake for a period of six months from January 2000 to June 2000. Surface water samples were collected from six sampling stations in the Bolgoda Lake at monthly intervals. Total viable bacterial colony forming units (assumed to be equal to the density of bacterial population), total coliforms and faecal coliforms were studied as biological indicators. Physico-chemical environment parameters included, temperature, pH, electrical conductivity, salinity, Secchi disk depth, dissolved oxygen (DO), biochemical oxygen demand (BOD), chemical oxygen demand (COD),  orthophosphate and nitrate contents. These were measured using standard methods. Correlations among bacterial densities and selected water quality parameters were investigated. High densities of bacterial populations were recorded at several sampling points in the vicinity of outlet drains which bring domestic and industrial effluents. Low densities of bacterial populations were recorded in samples taken at upstream and downstream of the North Lake. Results also revealed that some chemical parameters may have an effect in the density of bacterial populations. Density of bacterial populations showed a significant negative correlation with Biochemical oxygen demand (BOD) and with phosphate concentration. However, the density of bacterial population did not show a significant correlation with the nitrate content of the surface waters of the Lake. Further the DO, BOD values and PO 4 -3 content indicated organic and inorganic nutrient pollution of surface waters of Bolgoda Lake. However, samples collected from downstream had lower values for above parameters indicating  that self- purification is taking place to a certain extent in the Lake. However, results revealed that at present Bolgoda Lake is heavily exposed to pollution from industrial and residential effluents. To avoid catastrophe, measures should be taken to reduce pollution by curtailing sewage disposal and treatment of effluents of nearby factories before being discharged into this Lake. Key words: water quality; Bolgoda Lake; evaluation of water quality Vidyodaya Journal of Science Vol.14(2) 113-133
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