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Adsorption of Ammonia in Wastewater Using Hyacinth (Eichornia Crassipes) Powder with The Assistance of Bio Balls


 
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1. Title Title of document Adsorption of Ammonia in Wastewater Using Hyacinth (Eichornia Crassipes) Powder with The Assistance of Bio Balls
 
2. Creator Author's name, affiliation, country M. Ilham Nurdin; Department of Chemical Engineering, Ujung Pandang State Polytechnic, Makassar, Indonesia 90245; Indonesia
 
2. Creator Author's name, affiliation, country Arifah Sukasri; Department of Chemical Engineering, Ujung Pandang State Polytechnic, Makassar, Indonesia 90245; Indonesia
 
2. Creator Author's name, affiliation, country Jeanne Dewi Damayanti; Department of Chemical Engineering, Ujung Pandang State Polytechnic, Makassar, Indonesia 90245; Indonesia
 
3. Subject Discipline(s)
 
3. Subject Keyword(s)
 
4. Description Abstract

Abstract. Water pollution can be caused by the discharge of domestic wastewater containing contaminants. Ammonia is a water pollutant that has a bad impact because it can cause an unpleasant pungent odor and can inhibit or stop the growth of aquatic organisms because it interferes with oxygen binding, changes pH and affects enzymatic reactions and membrane stability in aquatic organisms. This research treats domestic wastewater contaminated with ammonia by means of adsorption using water hyacinth powder. In order to reduce ammonia contaminants in domestic wastewater. This study used a quantitative method which included the acclimatization stage, preliminary test, water hyacinth powder production, adsorption process, ammonia content analysis. The results showed that the use of water hyacinth powder in the most efficient adsorption process was 8 grams of water hyacinth powder and 60 bioballs in 10 liters of wastewater with a decrease in ammonia content of 93.47% for 24 hours. With the bioremediation process ratio, the ammonia content in wastewater can be reduced from 4.810 ppm to 0.314 ppm.

Keywords:

Adsorption, Domestic Wastewater, Ammonia, Water Hyacinth Powder


 
5. Publisher Organizing agency, location Program studi Teknik Kimia UNS
 
6. Contributor Sponsor(s)
 
7. Date (YYYY-MM-DD) 2023-08-17
 
8. Type Status & genre Peer-reviewed Article
 
8. Type Type
 
9. Format File format PDF
 
10. Identifier Uniform Resource Identifier https://jurnal.uns.ac.id/equilibrium/article/view/76073
 
10. Identifier Digital Object Identifier https://doi.org/10.20961/equilibrium.v7i2.76073
 
11. Source Title; vol., no. (year) Equilibrium Journal of Chemical Engineering; Vol 7, No 2 (2023): Volume 7, No 2 December 2023
 
12. Language English=en en
 
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15. Rights Copyright and permissions Copyright (c) 2023 Equilibrium Journal of Chemical Engineering
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