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    Volume 50, Issue 1 (July 2021)

    Adaptive Neuro-Fuzzy Inference System to Predict the Release of Microplastic Fibers during Domestic Washing

    (Received 16 March 2021; accepted 17 May 2021)

    Published Online: 21 July 2021

    CODEN: JTEVAB

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    Abstract

    Microplastic particles are a burgeoning population crisis in marine environments. This work is to predict the release of microplastic fibers from jeans made from polyester during domestic washing by using of adaptive neuro-fuzzy inference system (ANFIS) model. The advantage of the ANFIS model is to predict the variations between the randomly chosen parameters. This prediction model can be cost-effective and slowed down to study behavior more closely. The consequence of washing duration, temperature, spin speed, detergent types, and conditioner usage was investigated against the microplastic fiber release. The washing temperature, washing duration, spin speed, detergent types, and addition of conditioner are the main factors for this research work. The forecast presentations have been exposed by having a considerably lowered root mean square error value of 3.23 compared with the variant of the experiment as exposed by its standard deviation for the ANFIS version. This ANFIS model will be able to provide a theoretical understanding to enhance and inhibit microplastic fiber release from jeans.

    Author Information:

    Muthusamy, Lekha Priya
    Department of Mathematics, Government Arts College, Coimbatore, Tamil Nadu

    Periyasamy, Aravin Prince
    Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, Espoo,

    Militky, Jiri
    DMI, Technical University of Liberec, Liberec,

    Thangasamy, Palani Rajan
    Department of Fashion Technology, VIT Fashion Institute of Technology (VFIT), Chennai, Tamil Nadu


    Stock #: JTE20210175

    ISSN:0090-3973

    DOI: 10.1520/JTE20210175

    Author
    Title Adaptive Neuro-Fuzzy Inference System to Predict the Release of Microplastic Fibers during Domestic Washing
    Symposium ,
    Committee D13