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Influence of different treatment condition on biopolymer yield production for coagulation-flocculation process

机译:不同治疗条件对凝固 - 絮凝过程生物聚合物产量的影响

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Two different agro wastes (banana pseudostem and rice straw) were utilized in order to extract biopolymer (pectin) known as coagulant aid in water and wastewater treatment. Factors such as pH, temperature and time were chosen due to the critical role in hot acid extraction process. The yield of biopolymer extraction from banana pseudostem was found to be higher at 28 % meanwhile only 18 % from rice straw was manage to produce from the dry weight 10 g, respectively. It was found that extraction temperature and extraction time were the most important factors influencing the biopolymer yield which increased with temperature and time or decreasing pH. Based on two level factorial design, the same condition of pH 1.5, temperature 90 °C and 4 hours extraction time can produce high amount of extracted biopolymer. Fourier Transform Infrared Spectroscopy (FTIR) was used to detect the existence of functional group which helps in the coagulation-flocculation process. Result indicates a similar functional group of biopolymer were detected for both difference agro wastes.
机译:利用了两种不同的农业废物(香蕉Pseudostem和稻草)以提取被称为凝结剂助剂的生物聚合物(果胶)和废水处理。由于热酸提取过程中的关键作用,选择了pH,温度和时间等因素。发现Banana pseudostem的生物聚合物提取的产量在28%以28%较高,同时稻草的18%仅用于分别从干重10g生产。发现提取温度和提取时间是影响生物聚合物产量的最重要因素,这些因素随温度和时间或降低pH增加。基于两级阶乘设计,pH 1.5的相同条件,温度90°C和4小时的提取时间可以产生大量提取的生物聚合物。傅里叶变换红外光谱(FTIR)用于检测官能团的存在,有助于凝固 - 絮凝过程。结果表明对于两种差异Agro废物,检测到类似的生物聚合物官能团。

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