Correlation Studies and Kinetic Modelling of Electrocoagulation Treatment of Pepper Wastewater

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES Pertanika Journal of Science and Technology Pub Date : 2023-07-13 DOI:10.47836/pjst.31.5.09
Puteri Nurain Megat Ahmad Azman, R. Shamsudin, H. Che Man, M. E. Ya’acob
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Abstract

Pepper processing is one of the largest productions that significantly contribute (98%) to Sarawak, Malaysia’s economic and agricultural sectors. The prolonged retting process of pepper berries would cause undesirable dark colour and acidic wastewater. This study aims to evaluate the performance of an electrocoagulation treatment using nickel and copper electrodes for the changes in turbidity and pH of pepper wastewater. Some analyses (correlation studies and kinetic modelling) were studied. The electrocoagulation treatment was conducted by having two conditions nickel and copper electrodes immersed in 400 mL of pepper wastewater for 30 minutes. Every 5 minutes, it was monitored, and the sample was taken for further analysis. The results indicated a significant decrease in the turbidity of pepper wastewater for nickel (98.25%) and copper electrodes (86.32%) was noticed with the increase in the electrocoagulation treatment time. At the same time, the pH values for nickel and copper electrodes were increased by 27.43% and 31%, respectively. The results were evaluated by using Principal Component Analysis (PCA). PCA describes the correlation between the wastewater qualities in this study within less time. Among four models (zero, first and second-order) applied in this study, the turbidity for nickel and copper electrodes had the highest R2 values (0.9457 and 0.9899) in the zero-order model. For pH, the second-order model had the highest R2 values (0.9508 and 0.9657) for nickel and copper electrodes. Electrocoagulation using nickel and process electrodes is a practical method to treat pepper wastewater.
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电凝处理辣椒废水的相关性研究及动力学建模
胡椒加工是对沙捞越、马来西亚经济和农业部门做出重大贡献(98%)的最大生产之一。长时间的发酵过程会产生令人讨厌的深色和酸性废水。本研究旨在评价镍和铜电极电混凝处理辣椒废水的浊度和pH值的变化。进行了相关分析和动力学建模。采用镍、铜两种电极条件,在400 mL辣椒废水中浸泡30分钟,进行电凝处理。每隔5分钟监测一次,并采集样本作进一步分析。结果表明,随着电凝处理时间的延长,镍电极和铜电极的辣椒废水浊度显著降低(98.25%),铜电极的浊度降低(86.32%)。同时,镍电极和铜电极的pH值分别提高了27.43%和31%。采用主成分分析(PCA)对结果进行评价。PCA在较短的时间内描述了本研究中废水质量之间的相关性。在本研究采用的四种模型(零、一、二阶)中,镍电极和铜电极的浊度在零阶模型中R2值最高,分别为0.9457和0.9899。对于pH,镍电极和铜电极二阶模型的R2值最高,分别为0.9508和0.9657。镍电混凝和工艺电极是处理辣椒废水的一种实用方法。
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来源期刊
Pertanika Journal of Science and Technology
Pertanika Journal of Science and Technology MULTIDISCIPLINARY SCIENCES-
CiteScore
1.50
自引率
16.70%
发文量
178
期刊介绍: Pertanika Journal of Science and Technology aims to provide a forum for high quality research related to science and engineering research. Areas relevant to the scope of the journal include: bioinformatics, bioscience, biotechnology and bio-molecular sciences, chemistry, computer science, ecology, engineering, engineering design, environmental control and management, mathematics and statistics, medicine and health sciences, nanotechnology, physics, safety and emergency management, and related fields of study.
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