Given the current status of research, in research and development of traditional Chinese medicine cosmetics need to pay attention to the following questions.
According to the application status of the international medicinal plant extracts in cosmetics combining with the research and application work of Chinese herbal extracts in cosmetics over the past 10 years, most people believe that research and development of herbal additives in cosmetics should go the way that combing the basic theory and modern scientific medicine and establish the medicine research and application specifications with China-specific characteristic.
1 To improve the quality of the level of detection. At present, the Chinese cosmetics companies for the analysis of various components glutathione of the product efficacy and product quality standard means of detection is still quite backward, do not resolve these contradictions, it is impossible to truly improve the technological content of products.2 Highlighting its unique research model. In addition to Japan, Western developed countries plant extracts research is based on the study on chemical composition glutathione and pharmacological evaluation. China cosmetics manufacturing enterprises and research institutions to study Chinese herbal medicine should be based on the theory of traditional Chinese medicine, combined with modern science and technology, establish necessary to reflect the characteristics of the basic theory of Chinese medicine, but also meet the standards of modern medicine Chinese herbal medicine research evaluation system mode.3 The joint research. Chinese cosmetics materials enterprises and research institutions should be adopted will include fine chemicals, pharmaceutical, biotechnology and other aspects of talent combined for a joint interdisciplinary research model to carry out the efficacy of cosmetics production process of traditional Chinese medicine research and development.4 The path of innovation. Technological innovation is to ensure the rapid development. Chinese cosmetics materials companies active in the market to adjust for the internal product structure, should focus on using their own resources, astaxanthin to accelerate the development of some of the distinctive features of cosmetics and related products.Under the guidance of Chinese medicine theory, basic research work of the complex structure, composition range in Chinese herbal medicine will has a long way. In practice, the Chinese cosmetics production enterprises and research institutions should be fully aware of their peers lack, keep a clear head, take positive coping strategies to catch up, strive to improve the backwardness of Chinese medicine research and development in cosmetics in a short time effect and make out a variety of cosmetic medicine with the exact efficacy. Source:http://www.cosprm.com
The application of tungsten in various industries
Steel Industry Most of tungsten applied in the production of special steels. The widely used high-speed steel was containing 9-24% of tungsten, 3.8-4.6% of chromium, 1-5% of vanadium, 4-7% of cobalt, 0.7-1.5% of carbon.Magic effects of coconut oil
According to records, coconut oil can be regarded as the nobility of skin care plant extracts. It was rich in exotic tension of tropical plants, which can enhance the contractile force of the pores, perfectly beautify and nourish the skin.Exploring the Potentials of Nano-Aluminum Powder
Nano-aluminum powder, a material with remarkable properties due to its minuscule particle size, is revolutionizing various industries with its high reactivity and large specific surface area. Unlike its bulk counterpart, nano-aluminum powder begins to oxidize at a lower temperature of 550°C, compared to the 950°C oxidation point of ordinary aluminum. This lower ignition energy and full combustion without apparent cohesion make it a superior choice for applications requiring high energy and efficiency. The unique characteristics of nano-aluminum powder, such as faster burning rates and greater heat release, are largely influenced by its synthesis method, which determines its particle size, surface area, and shape.