The Effect of Aeration and Chlorella vulgaris Initial Cell Density on Mercury Removal
Authors
R Mohammad Alghaf Dienullah
Department of Environmental Engineering, Faculty of Engineering and Science,
Universitas Pembangunan Nasional Veteran Jawa Timur, Surabaya, 60294,
Indonesia
Author
https://orcid.org/0009-0008-1435-2396 (unauthenticated)
Harmin Sulistiyaning Titah
Department of Environmental Engineering, Faculty of Civil Engineering,
Planning and Earth Sciences, Institut Teknologi Sepuluh Nopember, Keputih,
Sukolilo, 60111 Surabaya, Indonesia
Author
https://orcid.org/0000-0003-4791-8735 (unauthenticated)
Ipung Fitri Purwanti
Department of Ocean Engineering, Faculty of Marine Technology, Sepuluh
Nopember Institute of Technology, Keputih, Sukolilo, 60111 Surabaya,
Indonesia
Author
Widhowati Kesoema Wardhani
Department of Ocean Engineering, Faculty of Marine Technology, Sepuluh
Nopember Institute of Technology, Keputih, Sukolilo, 60111 Surabaya,
Indonesia
Author
Research on Chlorella vulgaris is vital due to its rapid growth and versatile habitat adaptability. C. vulgaris is a fast-growing green microalga used for phycoremediation of heavy metals such as mercury which is usually found in gold mining wastewater. This research aims to determine the best mercury removal efficiency with variations in aeration rate, medium concentration, and C. vulgaris inoculum concentration. This research was conducted by cultivating C. vulgaris and examining its response to various parameters in an artificial mercury (II) chloride (HgCl2) solution. Moreover, other parameters such as cell density, pH, temperature, bicarbonate, and dissolved oxygen were monitored over a seven-day experimental period. The highest removal efficiency (61.34%) at a mercury concentration of 0.3 mg/L was found in the variant with a walne medium dose of 1 mL/L, inoculum concentration of 10%, and aeration rate of 3 L/min. This study confirmed the potential of C. vulgaris as an effective agent for heavy metal removal, particularly mercury, and contributed to bioremediation.