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Equilibrium and Isotherm Studies on the Removal of Basic Textile Dye from Aqueous Solutions Using Kigelia africana Biosorbent

机译:利用Kigelia Africana生物吸附剂从水溶液中除去基础纺织染料的平衡和等温度研究

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Removal of a basic textile dye Methylene Blue from an aqueous solution was evaluated using biosorbent derived from Kigelia africana in a batch system. The influence of adsorption parameters such as adsorbent dosage (0.10-0.50g), P~H (2-12) and initial dye concentration (0.3 to 0.11 g/L) on the adsorption process was studied. It was noticed that with increase in adsorbent dosage, the uptake capacity was decreased. Dye uptake was increased by changing the P~H up to 8, further increase in P~H caused reduced uptake. It was observed that, dye uptake by the adsorbent increased linearly with that of initial dye concentration. Equilibrium isotherm for the adsorption of methylene blue on to adsorbent was studied through Langmuir and Freundlich isotherm models. The data best fit with Freundlich model. Maximum adsorption capacity (Q) was found to be 119.05mg/g. SEM and FTIR analyses of the adsorbent was performed before and after the adsorption, suggest that adsorption of the dye was through chemical interaction of the functional groups on the surface of the adsorbent. From the experimental results, it was inferred that biosorbent derived from Kigelia africana can be a potential alternate to activated carbon for textile dyes removal.
机译:使用衍生自批量生产的生物吸附剂评价来自水溶液的基本纺织染料亚甲基蓝色。研究吸附参数如吸附剂剂量(0.10-0.50g),p〜h(2-12)和初始染料浓度(0.3〜0.11g / L)的吸附参数对吸附过程进行了影响。注意到,随着吸附剂剂量的增加,摄取能力下降。通过改变P〜H至8来增加染料摄取,进一步增加P〜H导致降低摄取。观察到,吸附剂的染料吸收随着初始染料浓度的线性增加而增加。通过Langmuir和Freundlich等温线研究了用于吸附到吸附剂上的亚甲基蓝的平衡等温线。数据最适合Freundlich模型。发现最大吸附容量(Q)为119.05mg / g。吸附剂的SEM和FTIR分析在吸附之前和之后进行,表明染料的吸附是通过吸附剂表面上官能团的化学相互作用。从实验结果中,推断出来自Kigelia Africana的生物吸附剂可以是对纺织染料去除的活性炭的潜在交替。

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