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Recent Advances in the Treatment of Industrial Wastewater from Different Celluloses in Continuous Systems

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POLYMERS
卷 15, 期 19, 页码 -

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MDPI
DOI: 10.3390/polym15193996

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crassipes; vegetable; biomass; adsorption; model

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This article presents the latest research progress on industrial wastewater treatment, focusing on the efficient installation of cellulose residue coupled with continuous systems. The study analyzes the adsorption capacities, design variables, and removal constants of cellulose using mathematical and mass balance models, and finds that cellulose waste treatment systems are feasible with low costs and high adsorption capacities. The article also mentions that companies can design their own systems for treating heavy metal-contaminated water with cellulose using design equations.
There are numerous studies on water care methods featured in various academic and research journals around the world. One research area is cellulose residue coupled with continuous systems to identify which are more efficient and easier to install. Investigations have included mathematical design models that provide methods for developing and commissioning industrial wastewater treatment plants, but nothing is provided on how to size and start these treatment systems. Therefore, the objective is to determine recent advances in the treatment of industrial wastewater from different celluloses in continuous systems. The dynamic behavior of the research results with cellulose biomasses was analyzed with the mass balance model and extra-particle and intraparticle dispersion, evaluating adsorption capacities, design variables, and removal constants, and making a size contribution for each cellulose analyzed using adsorption capacities. A mathematical model was also developed that feeds on cellulose reuse, determining new adsorption capacities and concluding that the implementation of cellulose waste treatment systems has a high feasibility due to low costs and high adsorption capacities. Furthermore, with the design equations, the companies themselves could design their systems for the treatment of water contaminated with heavy metals with cellulose.

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