Cavitation holds the promise of a new and exciting approach to fabricate both top down and bottom up nanostructures. Cavitation bubbles are created when a liquid boils under less than atmospheric pressure. The collapse process occurs supersonically and generates a host of physical and chemical effects. We have made an attempt to fabricate natural cellulose material using hydrodynamic as well as acoustic cavitation. The cellulose material having initial size of 63 micron was used for the experiments. 1% (w/v) slurry of cellulose sample was circulated through the hydrodynamic cavitation device or devices (orifice) for 6h. The average velocity of the fluid through the device was 10.81m/s while average pressure applied was 7.8 kg/cm(2). Cavitation number was found to be 2.61. The average particle size obtained after treatment was 1.36 micron. This hydrodynamically processed sample was sonicated for 1h 50 min. The average size of ultrasonically processed particles was found to be 301 nm. Further, the cellulose particles were characterized with X-ray diffraction (XRD) and differential scanning calorimetry (DSC) to see the effect of cavitation on crystallinity (X(c)) as well as on melting temperature (T(m)). Cellulose structures consist of amorphous as well as crystalline regions. The initial raw sample was 86.56% crystalline but due to the effect of cavitation, the crystallinity reduced to 37.76%. Also the melting temperature (T(m)) was found to be reduced from 101.78 degrees C of the original to 60.13 degrees C of the processed sample. SEM images for the cellulose (processed and unprocessed) shows the status and fiber-fiber alignment and its orientation with each other. Finally cavitation has proved to be very efficient tool for reduction in size from millimeter to nano scale for highly crystalline materials.
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http://dx.doi.org/10.1016/j.ultsonch.2010.03.005 | DOI Listing |
J Food Sci
December 2024
Department of Food and Agricultural Product Technology, Faculty of Agricultural Technology, Gadjah mada University, Yogyakarta, Indonesia.
Yellowfin tuna skin waste is a potential collagen source for gelatin through hydrolysis. Enzymatic hydrolysis is eco-friendly but expensive, necessitating efficiency improvements. Ultrasound pre-treatment enhances efficiency via cavitation effects.
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November 2024
Pediatrics, Unidade Local de Saúde São João, Porto, PRT.
Tuberculosis (TB) continues to pose a significant health challenge globally and in Portugal. Diagnostic challenges persist, especially in infants, where TB often presents with atypical symptoms. A previously healthy three-month-old male infant from Vila Nova de Famalicão, Portugal, was admitted with cough, rhinorrhea, respiratory distress, and high-grade fever.
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November 2024
Family Medicine, UCSP Paço de Arcos, Unidade Local de Saúde Lisboa Ocidental, Lisbon, PRT.
Hodgkin lymphoma (HL) is a monoclonal lymphoid neoplasm derived from B cells and is one of the most common lymphomas among young adults in developed countries. It typically presents insidiously, often as a painless cervical lymphadenopathy or an asymptomatic mediastinal mass. B symptoms (fever, night sweats, and weight loss), fatigue, pruritus, or alcohol-induced pain may be present along with respiratory symptoms in cases of mediastinal involvement.
View Article and Find Full Text PDFSci Rep
December 2024
Department of Radiology, Veterans Health Service Medical Center, Seoul, Republic of Korea.
This study aimed to compare computed tomography (CT) findings between basaloid lung squamous cell carcinoma (SCC) and non-basaloid SCC. From July 2003 to April 2021, 39 patients with surgically proven basaloid SCC were identified. For comparison, 161 patients with surgically proven non-basaloid SCC from June 2018 to January 2019 were selected consecutively.
View Article and Find Full Text PDFSci Rep
December 2024
State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin, 300072, China.
Microbubble-facilitated sonoporation is a rapid, versatile, and non-viral intracellular delivery technique with potential for clinical and ex vivo cell engineering applications. We developed a micropatterning-based approach to investigate the impact of cell shape on sonoporation efficacy. Cationic microbubbles were employed to enhance sonoporation by binding to the cell membrane electrostatically.
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