Aziz Tariq, Farid Arshad, Haq Fazal, Kiran Mehwish, Ullah Asmat, Zhang Kechun, Li Cheng, Ghazanfar Shakira, Sun Hongyue, Ullah Roh, Ali Amjad, Muzammal Muhammad, Shah Muddaser, Akhtar Nosheen, Selim Samy, Hagagy Nashwa, Samy Mennatalla, Al Jaouni Soad K
School of Engineering, Westlake University, Hangzhou 310024, China.
Gomal Center of Biochemistry and Biotechnology, Gomal University, Dera Ismail Khan 29050, Pakistan.
Polymers (Basel). 2022 Aug 5;14(15):3206. doi: 10.3390/polym14153206.
The latest advancements in cellulose and its derivatives are the subject of this study. We summarize the characteristics, modifications, applications, and properties of cellulose. Here, we discuss new breakthroughs in modified cellulose that allow for enhanced control. In addition to standard approaches, improvements in different techniques employed for cellulose and its derivatives are the subject of this review. The various strategies for synthetic polymers are also discussed. The recent advancements in polymer production allow for more precise control, and make it possible to make functional celluloses with better physical qualities. For sustainability and environmental preservation, the development of cellulose green processing is the most abundant renewable substance in nature. The discovery of cellulose disintegration opens up new possibilities for sustainable techniques. Based on the review of recent scientific literature, we believe that additional chemical units of cellulose solubility should be used. This evaluation will evaluate the sustainability of biomass and processing the greenness for the long term. It appears not only crucial to dissolution, but also to the greenness of any process.
本研究的主题是纤维素及其衍生物的最新进展。我们总结了纤维素的特性、改性、应用和性质。在此,我们讨论了改性纤维素的新突破,这些突破实现了更强的控制。除了标准方法外,用于纤维素及其衍生物的不同技术的改进也是本综述的主题。还讨论了合成聚合物的各种策略。聚合物生产的最新进展实现了更精确的控制,并使得制造具有更好物理性质的功能性纤维素成为可能。出于可持续性和环境保护的考虑,纤维素绿色加工的发展是自然界中最丰富的可再生物质。纤维素分解的发现为可持续技术开辟了新的可能性。基于对近期科学文献的综述,我们认为应使用更多纤维素溶解性的化学单元。该评估将评估生物质的可持续性以及长期加工的绿色程度。这似乎不仅对溶解至关重要,而且对任何过程的绿色程度也至关重要。