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eISSN: 2581-9615 || CODEN: WJARAI || Impact Factor 8.2 ||  CrossRef DOI

Research and review articles are invited for publication in March 2026 (Volume 29, Issue 3) Submit manuscript

The modeling tank for the adsorption wastewater treatment by different charcoal

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  • The modeling tank for the adsorption wastewater treatment by different charcoal

Soulinphone Xaysingharn, Vongpasith Chanthakhoun *, Anousith Vannaphon and Khone Nackavong

Faculty of Agriculture and Forest Resource, Souphanouvong University, Laos.
 
Research Article
World Journal of Advanced Research and Reviews, 2024, 23(01), 715-719
Article DOI: 10.30574/wjarr.2024.23.1.2069
DOI url: https://doi.org/10.30574/wjarr.2024.23.1.2069
 
Received on 26 May 2024; revised on 07 July 2024; accepted on 09 July 2024
 
The study of the modeling tank for the adsorption wastewater treatment by use of Teak, Pterocarpus macrocarpus, and Cratoxylum Formosum charcoal, the objectives were to study the quality of wastewater from the dormitory at Souphanouvong University and to study the modeling treatment by Use of Teak, Pterocarpus macrocarpus, and Cratoxylum Formosum Charcoal for sewage. The experiment followed a completely randomized design with three replications, utilizing a Completely Randomized Design (CRD). The three treatments included T1 = teak charcoal, T2 = Pterocarpus macrocarpus charcoal, and T3 = Cratoxylum Formosum charcoal. The data collecting the samples by 0 hr, 1hr, 2 hr, and 4 hr about 500 ml were brought to the Laboratory directly to analyze pH, Dissolved oxygen (DO), Electrical Conductivity (EC), Turbidity, and Free Chlorine. The statistical analysis was displayed using the statistical software Sirichai Statistical 6.07.
The results of the wastewater pH at 0 hr, 1 hr, 2 hr, and 4 hr showed a higher significant difference P < 0.05 at T3 than T1, and T2, except T2 at 0 hr. The wastewater Dissolved oxygen (OD) at 0 hr, 1 hr, 2 hr, and 4 hr showed a higher significant difference P < 0.05 at T3 than at T1, and T2 except T2 at 0 hr. The wastewater Electrical Conductivity (EC) at 0 hr, 1 hr, 2 hr, and 4 hr showed a higher significant difference P < 0.05 at T2 than at T3, and T1 except T3 at 2 hr. The wastewater Turbidity at 0 hr, 1 hr, 2 hr, and 4 hr showed a higher significant difference P < 0.05 at T3 than at T1, and T2. The wastewater-free chlorine at 0 hr, 1 hr, 2 hr, and 4 hr showed a significant difference of P < 0.05 at T2 than at T1, and T3 but after 2 hr was not significant difference of P > 0.05.
Future research could assess the impact of the wastewater treatment process at T2= Pterocarpus macrocarpus charcoal on parameters, such as BOD, COD, TSS, nitrogen, and phosphorus. Future research could also assess the impact of the wastewater treatment process at Pterocarpus macrocarpus charcoal on the overall ecological health of the receiving water body.
 
Wastewater Treated; Charcoal (Teak; Pterocarpus macrocarpus; and Cratoxylum Formosum); pH; Turbidity; DO; EC; Free Chlorine
 
https://wjarr.com/sites/default/files/fulltext_pdf/WJARR-2024-2069.pdf

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Soulinphone Xaysingharn, Vongpasith Chanthakhoun, Anousith Vannaphon and Khone Nackavong. The modeling tank for the adsorption wastewater treatment by different charcoal. World Journal of Advanced Research and Reviews, 2024, 23(1), 715-719. Article DOI: https://doi.org/10.30574/wjarr.2024.23.1.2069

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