
The Influence of Water Physical Chemical Quality on the Zooplankton Community Structure in the Upstream Citarum River of West Java Province
Author(s) -
Seldatia Syifani Alhafidzoh,
Zahidah Hasan,
. Sunarto,
Heti Herawati
Publication year - 2021
Publication title -
asian journal of fisheries and aquatic research
Language(s) - English
Resource type - Journals
ISSN - 2582-3760
DOI - 10.9734/ajfar/2021/v13i130258
Subject(s) - zooplankton , bioindicator , environmental science , dominance (genetics) , water quality , diversity index , abundance (ecology) , ecology , hydrology (agriculture) , oceanography , species richness , biology , biochemistry , geotechnical engineering , engineering , gene , geology
The Citarum River is the longest river in West Java Province which is used for various human activities to produce a load of waste input into water bodies which cause changes in the physical and chemical parameters of the waters that will affect the life of aquatic organisms that live in it, one of which is zooplankton. Zooplankton can be used as a water bioindicator because it has a high level of sensitivity to pollution, especially in freshwater. The purpose of this research is to determine the physical-chemical quality of the water in the Citarum River and its influence on the structure of the zooplankton community in this environment. The research was carried out from August 2020 until October 2020 with a purposive sampling method. Sampling was carried out at 5 stations with 6 repetitions every 1 week. The parameters observed were physical and chemical parameters of the waters, an abundance of zooplankton, diversity index, and dominance index. The results showed that the composition of zooplankton in the Upstream Citarum River was 15 genus consisting of 2 phyla. The abundance of zooplankton obtained ranged from 21 - 51 individuals/L. The Simpson diversity index (D) obtained a range between 0.59 - 0.73 for the high category. The dominance index obtained ranges from 0.27 to 0.41 for the low category. Dissolved oxygen and pH are the parameters that most influence the presence of most of the identified zooplankton orders.