Gharibrezal Mohammadreza, Ashraf Muhammed Aqeel
J Environ Biol. 2016 Sep;37(5 Spec No):1097-1104.
Bera Lake is the largest natural fresh water reservoir in Malaysia. It has vital environmental and ecological importance for human and wild life. Nevertheless, water quality of this lake has been degraded during the last few decades due to land development projects at catchment area. Therefore, a comprehensive water quality assessment of Bera Lake was implemented in order to compare current water quality with the implementation of land development projects. In situ water quality surveying was implemented using calibrated full option Hydrolab DS 5. Eleven parameters viz., temperature, depth of sampling, salinity, Turbidity, total dried solid, pH, NH4(+), N03(-), Cl(-), saturation percentage of dissolved oxygen, specific conductivity were recorded in fifty one stations at 0.2h, 0.5h, and 0.8h depth. National Water Quality Standards for Malaysia (NWQS) and Water Quality were used to evaluate Bera Lake quality based on previous and resultant data. Vertical water quality analysis revealed a clear stratification in Bera Lake water profile in terms of temperature, dissolved oxygen, chloride (Cl(-)), nitrate (NO(3)), pH and specific conductivity (EC) parameters. Results clearly demonstrate the important role of land use changes since 1972 in the physico-chemical condition of water quality at Bera Lake. Classifications of water quality before and after land development project were calculated as class II and class V, respectively. A long-term and comprehensive monitoring of water quality assessment is recommended in order to reach plan of sustainable water resources use with conservation approach.
贝拉湖是马来西亚最大的天然淡水水库。它对人类和野生动物具有至关重要的环境和生态意义。然而,由于集水区的土地开发项目,该湖的水质在过去几十年中已经恶化。因此,为了将当前水质与土地开发项目实施前的水质进行比较,对贝拉湖进行了全面的水质评估。使用校准后的全功能Hydrolab DS 5进行现场水质测量。在51个站点,于0.2h、0.5h和0.8h深度记录了11个参数,即温度、采样深度、盐度、浊度、总干固体、pH值、铵离子(NH4(+))、硝酸根离子(N03(-))、氯离子(Cl(-))、溶解氧饱和度百分比、电导率。根据之前和所得数据,采用马来西亚国家水质标准(NWQS)和水质来评估贝拉湖的水质。垂直水质分析显示,贝拉湖的水温、溶解氧、氯化物(Cl(-))、硝酸盐(NO(3))、pH值和电导率(EC)参数在水剖面中呈现出明显的分层现象。结果清楚地表明,自1972年以来土地利用变化对贝拉湖水质的物理化学状况起到了重要作用。土地开发项目前后的水质分类分别计算为II类和V类。建议对水质评估进行长期和全面的监测,以便通过保护方法实现可持续水资源利用计划。