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Direct dye biosorption by immobilized barley husk

机译:固定化大麦壳直接吸附染料

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The potential of low-cost adsorbent-barley husk to remove direct dye, namely Actarus Red BWS through biosorption process has been investigated in both continuous and batch modes. A series of experiments have been performed to evaluate the optimum biosorption conditions such as pH (2-5), biosorbent dosage (0.2-0.8g), initial dye concentration (50-200ppm), equilibrium time, and temperature (303-333K). The adsorption efficiency decreased with increase in pH and increased with increase in biomass dose. Equilibrium isotherms have been developed by applying data to Langmuir, Freundlich, and Flory-Huggins models. The highest correlation coefficient (R-2 = 0.99) related to Langmuir isotherm indicated good fitness of this model, explaining the sorption as monolayer process. The process followed pseudo-second-order kinetic model. The negative increment G degrees and positive increment H degrees values indicated the spontaneous and endothermic nature of process. The continuous mode of biosorption has been tested as the function of flow rate and bed height too.
机译:在连续和分批模式下,已经研究了低成本吸附剂-大麦壳通过生物吸附过程去除直接染料即Actarus Red BWS的潜力。已经进行了一系列实验以评估最佳生物吸附条件,例如pH(2-5),生物吸附剂量(0.2-0.8g),初始染料浓度(50-200ppm),平衡时间和温度(303-333K) 。吸附效率随pH值的增加而降低,随生物质剂量的增加而增加。通过将数据应用于Langmuir,Freundlich和Flory-Huggins模型,已经开发了平衡等温线。与Langmuir等温线相关的最高相关系数(R-2 = 0.99)表明该模型具有良好的适应性,说明了吸附为单层过程。该过程遵循伪二级动力学模型。负增量G度和正增量H度值指示过程的自发性和吸热性。生物吸附的连续模式也已经作为流速和床高的函数进行了测试。

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