PRODUCTION OF MICRO- AND NANOFIBRILLATED CELLULOSE THROUGH AN AQUEOUS COUNTER COLLISION SYSTEM FOLLOWED BY ULTRASOUND: EFFECT OF MECHANICAL PRETREATMENTS

Production of Micro- and Nanofibrillated Cellulose through an Aqueous Counter Collision System Followed by Ultrasound: Effect of Mechanical Pretreatments

The purpose of this work was the production of cellulose micro-nanofibrils from wood pulps through a combination of mechanical treatments, including a recently patented process, a so-called aqueous counter collision (ACC) method followed canadian white blenheim apricot by ultrasound treatment.Previously to ACC process, the raw pulp materials had to

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Strengthening Privacy and Data Security in Biomedical Microelectromechanical Systems by IoT Communication Security and Protection in Smart Healthcare

Biomedical Microelectromechanical Systems (BioMEMS) serve as a crucial catalyst in enhancing IoT communication security and safeguarding smart healthcare systems.Situated at the nexus of advanced technology and healthcare, BioMEMS are instrumental in pioneering personalized diagnostics, monitoring, and therapeutic applications.Nonetheless, this int

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