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Prickly pear cactus cladodes powder of Opuntia ficus indica as a cost effective biosorbent for dyes removal from aqueous solutions

机译:仙人掌仙人掌仙人掌花粉为一种经济有效的生物吸附剂用于从水溶液中去除染料

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摘要

The textiles manufacturing is one of the core industries that release a huge amount of dyes during the dyeing process. As a result, the growing demand of an efficient and low-cost treatment has given rise to alternative adsorbents. In the present study, prickly pear cactus cladodes powder (PPCP) of Opuntia ficus indica was investigated as an ecofriendly and low-cost biosorbent of Acid orange 51 (AO51) and Reactive Red 75 (RR75) dyes commonly used in dyeing. The FTIR spectroscopic characterization of PPCP showed the heterogeneity in surface structure and functional groups which confers to the biosorbent its capability to interact with acidic (AO51) and reactive (RR75) dyes molecules. Effects of pH, temperature, initial dye concentration and adsorbent dose on adsorption yield were investigated. The dyes uptake process was closely fitted to the pseudo-second order kinetic for both dyes. Experimental data were analyzed by applying the Langmuir, Freundlich, Dubinin–Raduskevich, Temkin, Redlich–Peterson, and BET isotherms equations. The models of BET and Langmuir were considered as the best isotherms models fitting experimental data, respectively, of RR75 and AO51. The maximum Langmuir monolayer biosorption capacities were of 198.9 and 45 mg g−1, respectively for RR75 and AO51.
机译:纺织制造业是在染色过程中释放出大量染料的核心产业之一。结果,对有效和低成本处理的不断增长的需求引起了替代吸附剂的出现。在本研究中,仙人掌Op仙人掌粉(PPCP)被研究为一种环保且低成本的生物吸附剂,酸性橙51(AO51)和活性红75(RR75)染料通常用于染色。 PPCP的FTIR光谱表征显示表面结构和官能团的异质性,赋予生物吸附剂与酸性(AO51)和反应性(RR75)染料分子相互作用的能力。研究了pH,温度,初始染料浓度和吸附剂量对吸附量的影响。两种染料的染料吸收过程都非常接近拟二级动力学。通过应用Langmuir,Freundlich,Dubinin-Raduskevich,Temkin,Redlich-Peterson和BET等温线方程来分析实验数据。 BET模型和Langmuir模型被认为是分别拟合RR75和AO51实验数据的最佳等温线模型。 RR75和AO51的最大Langmuir单层生物吸附容量分别为198.9和45 mg g -1

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