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Penurunan Kadar COD (Chemical Oxygen Demand) Air Sungai Cisadane Menggunakan Metode Fenton Dina Adelina; Wiwik Indrawati; Aminudin Filosa; Rusnia Junisa Hakim; Agustina Dyah S; Rhahmasari Ismet; Nuke Yullia; Nurul Lita
Jurnal Teknologi Vol 26, No 1 (2026): April 2026
Publisher : Politeknik Negeri Lhokseumawe

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30811/teknologi.v26i1.8810

Abstract

The Cisadane River is one of the main water resources in Tangerang and surrounding areas. However, its water quality has declined due to domestic and industrial pollution, which increases the Chemical Oxygen Demand (COD) level. This study aimed to evaluate the effectiveness of the Fenton method in reducing COD levels in Cisadane River water and to determine the optimum reaction time for the treatment process. The experiment was conducted using 100 mL of river water sample treated with Fenton reagent consisting of FeSO₄ 0.3 M and H₂O₂ 0.8 M. The treatment was carried out at reaction times of 60, 120, 180, and 240 minutes, and COD levels were analyzed using a photometer. The results showed that the initial COD concentration of 495 mg/L decreased to 290 mg/L after 60 minutes, 195 mg/L after 120 minutes, 145 mg/L after 180 minutes, and 95 mg/L after 240 minutes. The highest COD removal efficiency was achieved at 240 minutes, with a reduction of 80.81%, and the final COD concentration met the domestic wastewater quality standard of 100 mg/L. In conclusion, the Fenton method was effective in reducing COD levels in Cisadane River water, with the optimum treatment time obtained at 240 minutes.
Effect of Solid-to-Solvent Ratio and Maceration Time on Extraction Yield and Physicochemical Properties of Turmeric (Curcuma longa L.) Extract: Curcuminoid Characterization by HPLC Irman Ansari Adlin; Rusnia Junita Hakim; Untung Nugroho Harwanto; Wiwik Indrawati; Annisa Mayesti; Mela Rosiana Ariesti
Jurnal Teknologi Vol 26, No 2 (2026): Agustus 2026
Publisher : Politeknik Negeri Lhokseumawe

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30811/teknologi.v26i2.9063

Abstract

Curcuma longa L. is a major source of curcuminoids, bioactive compounds known for their antioxidant, anti-inflammatory, and antimicrobial activities. The efficiency of curcuminoid extraction is governed by key process parameters, particularly the solid-to-solvent ratio and extraction time. This study evaluated the effects of these parameters on extraction yield and physicochemical properties of turmeric extract, followed by curcuminoid characterization using high-performance liquid chromatography (HPLC). A factorial experimental design was employed using 96% ethanol as the extraction solvent. Maceration was performed at solid-to-solvent ratios of 1:7, 2:7, and 3:7 (w/v) for 24, 48, and 72 h. Extraction yield, pH, viscosity, and density were determined, while curcuminoid content was analyzed in the selected extract using HPLC. Data were analyzed using two-way ANOVA at a 95% confidence level. Both solid-to-solvent ratio and maceration time significantly affected extraction yield, pH, viscosity, and density (p 0.05). Significant interaction effects were observed for pH and viscosity, whereas no significant interaction effects were found for extraction yield and density (p 0.05). The highest extraction performance was obtained at a solid-to-solvent ratio of 3:7 (w/v) and a maceration time of 72 h, resulting in an extraction yield of 16.37%, pH of 7.01, viscosity of 148.00 cP, and density of 1.0497 g/mL. HPLC analysis revealed a dominant curcumin peak at a retention time of 5.11 min and a curcuminoid content of 17,964.24 mg/kg (1.80% w/w). These findings demonstrate that increasing the solid-to-solvent ratio and extending maceration time improve extraction performance and influence the physicochemical characteristics of turmeric extract.