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Biosorption of chromium in aqueous solutions using Bivalve Mollusk Shells through central composite design (CCD) model

机译:使用双壳软体动物壳通过中心复合设计(CCD)模型对水溶液中的铬进行生物吸附

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Pollution of water resources caused by heavy metals has been among the greatest concerns of environmentalists in recent years. Industrial wastewater contains chromium. Therefore, removing or reducing chromium from the industrial wastewater seems to be essential. In the present research, bivalve mollusk shells acted as the adsorbent. The statistical model in this research was central composite design, which analyzed the experiments. The optimal pH range for an adsorbent was about 3-5. An increase in the adsorbent dosage led to an increased efficiency. The optimal exposure time for the ion absorption mechanism of the solution was about 35min. The absorption mechanism followed the Freundlich adsorption isotherm model. The most significant factor was found to be the independent effect of chromium initial concentration (p=0.0007). Compared with other adsorbents such as fruit peels and the like whose availability depends on their consumption, the use of this adsorbent was economically beneficial due to its low cost and high availability.
机译:近年来,由重金属引起的水资源污染一直是环保主义者最关注的问题。工业废水中含有铬。因此,从工业废水中去除或还原铬似乎是必不可少的。在本研究中,双壳软体动物壳充当吸附剂。本研究的统计模型是中央组合设计,它对实验进行了分析。吸附剂的最佳pH范围约为3-5。吸附剂剂量的增加导致效率的提高。溶液中离子吸收机理的最佳暴露时间约为35min。吸收机理遵循Freundlich吸附等温线模型。发现最重要的因素是铬初始浓度的独立影响(p = 0.0007)。与其他吸附剂(例如果皮等)的可用性取决于其消耗量相比,由于该吸附剂的低成本和高可用性,因此在经济上是有益的。

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