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Two‑stage optimization of Allura direct red dye removal by treated peanut hull waste

机译:经过处理的花生壳废料对Allura直接红色染料的两步优化

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In this work, a series of experimental studies on the adsorption of Allura direct red dye (R40) on an as-prepared adsorbent has been carried out. The adsorbent has been produced from the activation of peanut hulls with steam at approximately 850 ℃. The current study has gone beyond isotherm modeling; for example, optimization has been carried out to minimize the mass of adsorbent used in order to achieve the most economically feasible setup for industrial applications. Additionally, aside from kinetic modeling, contact time optimization has also been conducted for an adsorption process consisting of a setup using batches of adsorbent with filtration between each stage known as a multistage process such a process can increase efficiency, decrease the amount of adsorbent used, and improve the economic feasibility of the process. It is shown that, with an adsorbent loading rate of 1 g/L, it is possible to achieve 99% removal of the dye if adequate contact time is provided. Depending on the removal percent required, it is possible to reduce the residence time by more than 75% via the optimized multistage batch adsorption process. Thus, the prepared adsorbent is very effective at removing the Allura dye, and as such, can be an environmentally friendly and low-cost adsorbent for wastewater treatment.
机译:在这项工作中,已进行了一系列有关制备的吸附剂对Allura直接红染料(R40)的吸附的实验研究。吸附剂是通过在约850℃下用蒸汽活化花生壳制成的。当前的研究已经超出了等温线模型。例如,已经进行了优化以使所用吸附剂的质量最小化,以实现工业应用中最经济可行的设置。此外,除了动力学建模外,还对吸附过程进行了接触时间优化,该过程由使用一批吸附剂的装置组成,并在每个阶段之间进行过滤,这称为多阶段过程,因此该过程可以提高效率,减少所用吸附剂的量,并提高了该工艺的经济可行性。结果表明,在吸附剂负载率为1 g / L的情况下,如果提供足够的接触时间,则有可能实现99%的染料去除率。根据所需的去除率,可以通过优化的多级间歇吸附工艺将停留时间减少75%以上。因此,所制备的吸附剂在去除Allura染料方面非常有效,因此,可以是用于废水处理的环保且低成本的吸附剂。

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