Adsorption Method for the Remediation of Brilliant Green Dye Using Halloysite Nanotube: Isotherm, Kinetic and Modeling Studies

Author:

Ukkund Shareefraza J.ORCID,Puthiyillam Prasad,Alshehri Hashim M.ORCID,Goodarzi MarjanORCID,Taqui Syed Noeman,Anqi Ali E.ORCID,Safaei Mohammad RezaORCID,Ali Masood AshrafORCID,Syed Usman Taqui,Mir Rayees Afzal,Elfasakhany Ashraf,Eed Emad M.,Siddiqui Md Irfanul HaqueORCID,Mokashi Imran,Soudagar Manzoore Elahi M.ORCID

Abstract

The first-ever use of halloysite nanotube (HNT), a relatively low-cost nanomaterial abundantly available with minor toxicity for removing brilliant green dye from aqueous media, is reported. The factors affecting adsorption were studied by assessing the adsorption capacity, kinetics, and equilibrium thermodynamic properties. All the experiments were designed at a pH level of around 7. The Redlich-Peterson isotherm model fits best amongst the nine isotherm models studied. The kinetic studies data confirmed a pseudo model of the second order. Robotic investigations propose a rate-controlling advance being overwhelmed by intraparticle dispersion. The adsorbent features were interpreted using infrared spectroscopy and electron microscopy. Process optimization was carried out using Response Surface Methodology (RSM) through a dual section Fractional Factorial Experimental Design to contemplate the impact of boundaries on the course of adsorption. The examination of fluctuation (ANOVA) was utilized to consider the joined impact of the boundaries. The possibilities of the use of dye adsorbing HNT (“sludge”) for the fabrication of the composites using plastic waste are suggested.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference61 articles.

1. Sustainable Fabrics Market Information: By Product Type (Organic, Regenerated, Recycled, Natural), Application (Clothing, Furnishing, Medical, Others), and Region—Global Forecast Till 2027https://www.marketresearchfuture.com/reports/sustainable-fabrics-market-7435

2. Decolourization of Industrial Effluents – Available Methods and Emerging Technologies – A Review

3. Decoupling Water Consumption and Environmental Impact on Textile Industry by Using Water Footprint Method: A Case Study in China

4. A critical review on textile wastewater treatments: Possible approaches

5. Eco-Friendly Textile Dyeing and Finishing;Chequer,2013

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