Nanocellulose
Nanocellulose is a term referring to nano-structured cellulose. This material is composed of nano-sized cellulose fibrils with a high aspect ratio (length to width ratio). Typical diameters of nanocellulose fibrils are 5–20 nanometers with lengths of several micrometers. Due to its unique properties such as high mechanical strength, biodegradability, and rheological behavior, nanocellulose is used in a wide range of applications including papermaking, composites, food packaging, and medical devices.
Types of Nanocellulose
There are primarily three types of nanocellulose, which are differentiated by their preparation methods and properties:
1. Cellulose nanocrystals (CNC): These are obtained by acid hydrolysis of cellulose, which removes the amorphous regions, leaving behind the crystalline parts. CNCs are highly stiff and have a rod-like shape.
2. Cellulose nanofibrils (CNF): CNFs are produced by mechanical disintegration of cellulose fibers, leading to a network of cellulose fibrils with both crystalline and amorphous regions. They have a high aspect ratio and are flexible.
3. Bacterial nanocellulose (BNC): BNC is synthesized by certain bacteria. It is characterized by high purity, high crystallinity, and a fine network structure. BNC has excellent water holding capacity and is used in medical applications.
Production
The production of nanocellulose involves several steps, including the pretreatment of cellulose sources, such as wood pulp or plant fibers, to remove non-cellulosic components. The cellulose is then subjected to mechanical, chemical, or enzymatic treatments to break it down into nanofibrils or nanocrystals.
Mechanical Methods
Mechanical methods, such as high-pressure homogenization, grinding, or ultrasonication, are commonly used to produce CNF. These processes require significant energy input but are effective in fibrillating cellulose to the nano-scale.
Chemical Methods
Chemical methods, particularly for the production of CNC, involve the acid hydrolysis of cellulose. This process selectively removes the amorphous regions of cellulose, resulting in crystalline nanoparticles.
Biological Methods
Bacterial synthesis is a biological method used to produce BNC. Certain bacteria, such as Komagataeibacter xylinus, secrete cellulose in the form of a highly pure and fine fibrous network, which can be harvested and purified.
Applications
Nanocellulose has a wide range of applications due to its unique properties. In the paper industry, it is used to enhance the strength and durability of paper products. In composites, nanocellulose acts as a reinforcement material, improving mechanical properties such as strength and stiffness. Its biocompatibility and biodegradability make it suitable for biomedical applications, including wound dressings, drug delivery systems, and tissue engineering scaffolds. Additionally, nanocellulose is used in food packaging to improve barrier properties against oxygen and moisture, extending the shelf life of food products.
Environmental Impact
Nanocellulose is considered an environmentally friendly material due to its renewable nature and biodegradability. It offers a sustainable alternative to synthetic polymers and materials in various applications. However, the energy-intensive production processes, particularly for CNF, raise concerns about the environmental footprint of nanocellulose. Ongoing research aims to develop more energy-efficient methods for nanocellulose production.
This article is a Materials science-related stub. You can help WikiMD by expanding it!
Nanocellulose
Transform your life with W8MD's budget GLP-1 injections from $125.
W8MD offers a medical weight loss program to lose weight in Philadelphia. Our physician-supervised medical weight loss provides:
- Most insurances accepted or discounted self-pay rates. We will obtain insurance prior authorizations if needed.
- Generic GLP1 weight loss injections from $125 for the starting dose.
- Also offer prescription weight loss medications including Phentermine, Qsymia, Diethylpropion, Contrave etc.
NYC weight loss doctor appointments
Start your NYC weight loss journey today at our NYC medical weight loss and Philadelphia medical weight loss clinics.
- Call 718-946-5500 to lose weight in NYC or for medical weight loss in Philadelphia 215-676-2334.
- Tags:NYC medical weight loss, Philadelphia lose weight Zepbound NYC, Budget GLP1 weight loss injections, Wegovy Philadelphia, Wegovy NYC, Philadelphia medical weight loss, Brookly weight loss and Wegovy NYC
|
WikiMD's Wellness Encyclopedia |
| Let Food Be Thy Medicine Medicine Thy Food - Hippocrates |
Medical Disclaimer: WikiMD is not a substitute for professional medical advice. The information on WikiMD is provided as an information resource only, may be incorrect, outdated or misleading, and is not to be used or relied on for any diagnostic or treatment purposes. Please consult your health care provider before making any healthcare decisions or for guidance about a specific medical condition. WikiMD expressly disclaims responsibility, and shall have no liability, for any damages, loss, injury, or liability whatsoever suffered as a result of your reliance on the information contained in this site. By visiting this site you agree to the foregoing terms and conditions, which may from time to time be changed or supplemented by WikiMD. If you do not agree to the foregoing terms and conditions, you should not enter or use this site. See full disclaimer.
Credits:Most images are courtesy of Wikimedia commons, and templates, categories Wikipedia, licensed under CC BY SA or similar.
Translate this page: - East Asian
中文,
日本,
한국어,
South Asian
हिन्दी,
தமிழ்,
తెలుగు,
Urdu,
ಕನ್ನಡ,
Southeast Asian
Indonesian,
Vietnamese,
Thai,
မြန်မာဘာသာ,
বাংলা
European
español,
Deutsch,
français,
Greek,
português do Brasil,
polski,
română,
русский,
Nederlands,
norsk,
svenska,
suomi,
Italian
Middle Eastern & African
عربى,
Turkish,
Persian,
Hebrew,
Afrikaans,
isiZulu,
Kiswahili,
Other
Bulgarian,
Hungarian,
Czech,
Swedish,
മലയാളം,
मराठी,
ਪੰਜਾਬੀ,
ગુજરાતી,
Portuguese,
Ukrainian
Contributors: Prab R. Tumpati, MD