S S L Jain PG College, Vidisha, District:- Vidisha, Madhya Pradesh, India.
Environ Monit Assess. 2012 Nov;184(11):7065-77. doi: 10.1007/s10661-011-2480-1. Epub 2011 Dec 29.
In limnetic ecosystem, water quality depends upon physical, chemical, and biological factors. Effects of temperature, light scattering, and absorption by suspended and dissolved matter, transport, and mixing of nutrients within the lake are the significant factors as far as water quality is concerned. Nutrient loading into the lake and internal cycling of nutrients is always a matter of concern and critical to number of processes. During the winter season, heat and momentum transfer at the lake surface and the temperature-density relation of water destabilize the water column and drive vertical mixing and transport processes. The deepening of the surface layer produces nutrient transfer from the hypolimnion into the euphotic zone of epilimnion. It may also resuspend sediments that would have settled under stratified conditions, or redistribute particles that may still be in suspension. Thus, there exists a complex connection between the hydrodynamics and water quality issues. Present study is an effort to understand how seasonal changes in the limnetic ecosystem regulate the limnochemistry and movement of nutrient. The study revealed that significant variations of nutrients and organic load were observed between epilimnion and hypolimnion during summer season, and the lake was found in hyper-eutrophic condition throughout the study period.
在淡水生态系统中,水质取决于物理、化学和生物因素。就水质而言,温度、光散射和悬浮及溶解物质的吸收、运输以及湖泊内营养物质的混合等因素的影响是重要的因素。营养物质向湖泊的输入和内部循环一直是人们关注的问题,对许多过程都至关重要。在冬季,湖泊表面的热量和动量传递以及水的温度-密度关系使水柱不稳定,并驱动垂直混合和输运过程。表层的加深导致营养物质从下湖层转移到上湖层的透光带。它还可能使在分层条件下沉降的沉积物重新悬浮,或者重新分布可能仍处于悬浮状态的颗粒。因此,水动力和水质问题之间存在着复杂的联系。本研究旨在了解淡水生态系统的季节性变化如何调节湖化学和营养物质的迁移。研究表明,夏季上湖层和下湖层之间的营养物质和有机负荷存在显著差异,整个研究期间湖泊一直处于富营养化状态。