Effect of different water temperatures on growth of aquatic plants Salvinia natans and Ceratophyllum demersum

K. K. Hreeb
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引用次数: 2

Abstract

Water temperature affects plants in many ways. A change of temperature alters metabolic activity and even affects aquatic ecosystems. From house plants to aquatic plants, water temperature plays a part in growth and development. Water temperature affects the metabolic activity of plants, slowing activity under cool conditions[1]. All plant growth and development is influenced by temperature and plants vary regarding the temperature range in which they can grow[2,3]. It is well known that diurnal temperature fluctuations in water can be much less than on dry land but this is dependent on the volume of water[3]. The use of aquatic plants for remediation of aquatic ecosystems has received increasing attention. Many investigations have been conducted to proved the effectiveness of aquatic plants in remediation such as to remove heavy metal[4], arsenic[5], copper, nickle and zinc[6]. To achieve more effective function in managing such polluted aquatic ecosystem, choosing the most suitable aquatic plant species is significantly important. Several aquatic plant characters are used to test their effectiveness for remediation including oxygen production and consumption, growth or photosynthesis rate and salinity tolerance. The purpose of this research is to investigate the effects of temperature on two aquatic plants in order to determine the effectiveness of using this plant species for water managements, such as in producing oxygen, and pollution removal in aquatic ecosystem which has led to be used in aquacultures management.
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不同水温对水生植物沙棘和角藻生长的影响
水温在很多方面影响植物。温度的变化会改变代谢活动,甚至影响水生生态系统。从室内植物到水生植物,水温对其生长发育起着重要作用。水温影响植物的代谢活动,在凉爽的条件下减慢活动。所有植物的生长发育都受温度的影响,植物生长的温度范围不同[2,3]。众所周知,水中的日温度波动可能比陆地上小得多,但这取决于水的体积。利用水生植物修复水生生态系统已受到越来越多的关注。水生植物对重金属[4]、砷[5]、铜、镍、锌[6]等污染物的修复效果已得到证实。选择最合适的水生植物品种对实现对受污染水生生态系统的更有效的管理具有重要意义。利用水生植物的几个特性,包括产氧量和耗氧量、生长或光合速率和耐盐性,来测试它们的修复效果。本研究的目的是研究温度对两种水生植物的影响,以确定利用该植物进行水管理的有效性,例如在水生生态系统中产生氧气和去除污染,从而导致在水产养殖管理中使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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