Utilization of Agro-based Adsorbents in Binary Wastewater Treatment

Abhiram Siva Prasad Pamula, Yung-Tse Hung, Howard Hao-Che Paul
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引用次数: 1

Abstract

The application of agro-based adsorbents is growing in the tertiary stage of the wastewater treatment process during the presence of hazardous pollutants. Dye and coffee industries are among the major wastewater pollutant sources negatively affect aquatic ecosystems and human health. The current study attempts to treat a binary mixture of crystal violet (CV) and coffee wastewater using agro-based adsorbents such as peanut hull and onion peel. The performance and efficacy of low-cost adsorbents were evaluated using parameters, including transmittance and non-purgeable organic carbon (NPOC). Batch adsorption studies were conducted to optimize both the adsorbent size and dosage that affect the treatment process. The experimental data obtained from the experiment were analyzed to understand whether Langmuir or Freundlich best fits the treatment process's experimental data. It was observed that Langmuir isotherm seems to fit experimental data using peanut hull and Freundlich isotherm using onion peel. The kinetics of the adsorption process appears to follow the pseudo-first-order kinetic model. The regression coefficient value of onion peel was 0.91, and uptake was 58.14 mg/g. Similarly, using the peanut hull, the regression coefficient was 0.99, and uptake was 57.47 mg/g. It seems that peanut hull appears to perform better as a low-cost adsorbent compared to onion peel. The adsorption capacity increased with the increasing dosage of low-cost adsorbent (peanut hull) until the adsorbent size of 0.6-0.425 mm and steadily decreased after that.
农基吸附剂在二元废水处理中的应用
在存在有害污染物的废水处理过程的第三阶段,农基吸附剂的应用越来越广泛。染料和咖啡工业是影响水生生态系统和人类健康的主要废水污染源。目前的研究试图使用花生壳和洋葱皮等农基吸附剂处理结晶紫(CV)和咖啡废水的二元混合物。通过透光率和不可吹扫有机碳(NPOC)等参数对低成本吸附剂的性能和效果进行了评价。对影响处理过程的吸附剂粒径和投加量进行了批量吸附研究。对实验得到的实验数据进行分析,了解Langmuir和Freundlich哪个最适合处理过程的实验数据。观察到花生壳的Langmuir等温线和洋葱皮的Freundlich等温线符合实验数据。吸附过程的动力学符合准一级动力学模型。洋葱皮的回归系数为0.91,吸收量为58.14 mg/g。同样,花生壳的回归系数为0.99,吸收量为57.47 mg/g。花生壳作为一种低成本吸附剂,似乎比洋葱皮表现得更好。吸附量随低成本吸附剂(花生壳)用量的增加而增加,直至吸附剂粒径为0.6 ~ 0.425 mm,之后逐渐减小。
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