Assessment of Physico-Chemical Properties and Plankton Composition of Ajiwa Reservior in Katsina State, Nigeria

None Ibrahim A, None Thliza I. A.
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Abstract

Plankton composition and physicochemical properties of Ajiwa water reservoir were assessed over a twelve (12) month period. The physicochemical and biological parameters were determined using conventional methods and procedures at three sampling points. The outcome was revealed. The phytoplankton composition was Chlorophyta (57.66%), Bacillariophyta (25.70%), Cyanophyta (14.73%), and Dinophyta (1.91%), with Rotifera (30.55%), Copepoda (29.33%), Protozoa (22.27%), and Cladocera (17.85%) being the least. The temperature fluctuated with a mean SE value of (23.08 0.8OC); the pH fluctuated with a mean SE value of 6.8 0.1; and the turbidity fluctuated with a mean SE value of 99.3 3.6NTU. DO readings range from 3.8mgL-1 to 7.9mgL-1, with a mean SE of 6.6 0.3mgL-1. BOD showed monthly fluctuation, with a mean SE value of 3.2 0.4mgL-1. The electrical conductivity ranged from 102.4 µS/cmto 105.1S/cm, with a mean SE of 129.9 4.1µS/cm. The higher chlorophyta and rotifer composition in the reservoir indicated that the water quality is good, but increased human activities such as runoffs of inorganic fertilisers and pesticides may influence change in water quality over time. The reservoir water is suitable for irrigational and domestic purposes in terms of most of the physicochemical and biological parameters analysed. As a result, an effective anthropogenic inputs control strategy in the reservoir is required.
尼日利亚卡齐纳州Ajiwa水库理化性质及浮游生物组成评价
对阿吉瓦水库浮游生物组成和理化性质进行了为期12个月的评价。在三个采样点采用常规方法和程序测定理化和生物学参数。结果揭晓了。浮游植物组成以绿藻门(57.66%)、硅藻门(25.70%)、蓝藻门(14.73%)、甲藻门(1.91%)为主,轮虫门(30.55%)、桡足门(29.33%)、原生动物(22.27%)、枝虫门(17.85%)最少。温度波动较大,平均SE值为(23.08 ~ 0.8OC);pH波动较大,SE均值为6.8 0.1;浊度波动,平均SE值为99.3 ~ 3.6NTU。DO读数范围为3.8mg -1至7.9mg -1,平均SE为6.6 0.3mg -1。BOD呈逐月波动,SE均值为3.2 0.4mg -1。电导率范围为102.4µS/cm ~ 105.1µS/cm,平均SE为129.9µS/cm。水库中较高的绿藻和轮虫组成表明水质良好,但无机肥料和农药径流等人类活动的增加可能会影响水质随时间的变化。水库水的大部分理化和生物参数分析表明,水库水适合灌溉和生活用水。因此,需要一种有效的水库人为输入控制策略。
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