Manufacturing of Fluff Pulp Using Different Pulp Sources and Bentonite on an Industrial Scale for Absorbent Hygienic Products
暂无分享,去创建一个
M. Jonoobi | B. Azimi | S. Danti | S. Maleki | S. Ismaeilimoghadam | Mehdi Sheikh | Pouya Taheri | H. Resalati
[1] D. Afzali,et al. Design of acrylic acid/nanoclay grafted polysaccharide hydrogels as superabsorbent for controlled release of chlorpyrifos , 2021 .
[2] E. Bosco,et al. Influence of morphology on the effective hygro-elastic properties of softwood (spruce) and hardwood (balsa) , 2021, Archive of Applied Mechanics.
[3] A. Andrade,et al. Effect of the chemical and structural characteristics of pulps of Eucalyptus and Pinus on the deconstruction of the cell wall during the production of cellulose nanofibrils , 2021, Cellulose.
[4] S. Siddiqua,et al. Calcium bentonite vs sodium bentonite: The potential of calcium bentonite for soil foundation , 2021 .
[5] D. Evtuguin,et al. Effect of cooking and bleaching conditions on the properties of eucalyptus kraft fluff pulps , 2021, Cellulose.
[6] S. Östlund,et al. Differences and similarities between kraft and oxygen delignification of softwood fibers: effects on chemical and physical properties , 2021, Cellulose.
[7] H. Jameel,et al. Micro- and nanofibrillated cellulose from virgin and recycled fibers: A comparative study of its effects on the properties of hygiene tissue paper. , 2021, Carbohydrate polymers.
[8] J. E. Kasmani,et al. Effects of montmorillonite nanoclay on the properties of chemimechanical pulping paper , 2021 .
[9] P. Gohil,et al. Chemical Composition and Mechanical Properties of Natural Fibers , 2020, Journal of Natural Fibers.
[10] S. Danti,et al. Biobased Materials for Skin-Contact Products Promoted by POLYBIOSKIN Project , 2020, Journal of functional biomaterials.
[11] B. Azimi,et al. Bio-Based Electrospun Fibers for Wound Healing , 2020, Journal of functional biomaterials.
[12] D. Evtuguin,et al. Relationship between Surface Properties and Fiber Network Parameters of Eucalyptus Kraft Pulps and Their Absorption Capacity , 2020 .
[13] Sinar Arzuria Adnan,et al. Influence of Hybrid Cellulose/Bentonite Fillers on Structure, Ambient, and Low Temperature Tensile Properties of Thermoplastic Starch Composites , 2020 .
[14] Chao Huang,et al. Bacterial cellulose based superabsorbent production: A promising example for high value-added utilization of clay and biology resources. , 2019, Carbohydrate polymers.
[15] S. Giulitti,et al. Polysaccharide hydrogels for multiscale 3D printing of pullulan scaffolds , 2019, Materials & Design.
[16] B. Sithole,et al. Review on the manufacturing and properties of nonwoven superabsorbent core fabrics used in disposable diapers , 2019 .
[17] N. Stevulova,et al. Characterization of Cellulosic Fibers by FTIR Spectroscopy for Their Further Implementation to Building Materials , 2018 .
[18] Anahita Rouhani Shirvan,et al. Cellulose-based hydrogels for personal care products , 2018, Polymers for Advanced Technologies.
[19] M. Hubbe,et al. The performance of chitosan with bentonite microparticles as wet-end additive system for paper reinforcement. , 2018, Carbohydrate polymers.
[20] K. Ariffin,et al. Synthesis of precipitated calcium carbonate: a review , 2018, Carbonates and Evaporites.
[21] Chao Duan,et al. In-situ Preparation of Nano-calcium Carbonate/Cellulose Fiber Composite and Its Application in Fluff Pulp , 2017 .
[22] F. Domingues,et al. Development of carboxymethyl xylan films with functional properties , 2017, Journal of Food Science and Technology.
[23] Mukesh Singh,et al. DEVELOPMENT OF SANITARY NAPKIN BY FLAX CARDING WASTE AS ABSORBENT CORE WITH HERBAL AND ANTIMICROBIAL EFFICIENCY , 2016 .
[24] M. Hubbe,et al. Enhanced Absorbent Products Incorporating Cellulose and Its Derivatives: A Review , 2013 .
[25] Harald Brelid,et al. Alkali Extraction of Kraft Pulp Fibers: Influence on Fiber and Fluff Pulp Properties , 2012 .
[26] K. Ruel,et al. Interaction between microfibrillar cellulose fines and fibers: influence on pulp qualities and paper sheet properties , 2012, Cellulose.
[27] Gary Chinga-Carrasco,et al. Quantitative Electron Microscopy of Cellulose Nanofibril Structures from Eucalyptus and Pinus radiata Kraft Pulp Fibers , 2011, Microscopy and Microanalysis.
[28] M. Poletto,et al. Crystalline properties and decomposition kinetics of cellulose fibers in wood pulp obtained by two pulping processes , 2011 .
[29] A. Khakifirooz,et al. Study of Morphological and Chemical Composition of Fibers from Iranian Sugarcane Bagasse , 2011 .
[30] K. Oksman,et al. Nanofibers from bagasse and rice straw: process optimization and properties , 2010, Wood Science and Technology.
[31] R. Gowda,et al. Development and characterization of bamboo and organic cotton fibre blended baby diapers , 2010 .
[32] Morsyleide de Freitas Rosa,et al. Cellulose nanowhiskers from coconut husk fibers: Effect of preparation conditions on their thermal and morphological behavior , 2010 .
[33] Gholamhassan Najafi,et al. Potential of bioethanol production from agricultural wastes in Iran , 2009 .
[34] M. Misra,et al. Chemical composition, crystallinity, and thermal degradation of bleached and unbleached kenaf bast (Hibiscus cannabinus) pulp and nanofibers , 2009, BioResources.
[35] G. Erasala,et al. Safety evaluation of superabsorbent baby diapers. , 2009, Regulatory toxicology and pharmacology : RTP.
[36] J. Turrado,et al. Morphological and Chemical Composition of Pith and Fibers from Mexican Sugarcane Bagasse , 2001, Holz als Roh- und Werkstoff.