Recent Trends of Advanced Technologies for High Performance Shape Control Mill

1993 ◽  
Vol 79 (3) ◽  
pp. 312-317
Author(s):  
Tsuneo NAKANO
2021 ◽  
Author(s):  
Rongrong Si ◽  
Daiqi Wang ◽  
Yehong Chen ◽  
Dongmei Yu ◽  
Qijun Ding ◽  
...  

Abstract Heavy metal ion pollutions are of serious threat for our human health, and advanced technologies on removal of heavy metal ions in water or soil are in the focus of intensive research worldwide. Nanocellulose based adsorbents are emerging as an environmentally friendly appealing materials platform for heavy metal ions removal as nanocellulose has higher specific surface area, excellent mechanical properties and good biocompatibility. In this review, we briefly compare the differences of three kinds of nanocellulose and their preparation method. Then we cover the most recent work on nanocellulose based adsorbents for heavy metal ions removal, and present an in-depth discussion of the modification technologies for nanocellulose in assembling high performance heavy ions adsorbent process. By introducing functional groups, such as amino, carboxyl, phenolic hydroxyl, and thiol, the nanocellulose based adsorbents not only remove single heavy metal ions through ion exchange, chelation/complexation/coordination, electrostatic attraction, hydrophobic actions, binding affinity and redox reactions, but also can selectively adsorb multiple heavy ions in water. Finally, some challenges of nanocellulose based adsorbents for heavy metal ions are also prospected. We anticipate that the review supplies some guides for nanocellulose based adsorbents applied in heavy metal ions removal field.


2018 ◽  
Vol 1 (1) ◽  
pp. 48-64 ◽  
Author(s):  
Arslan Shamim ◽  
Sajjad Ahmad ◽  
Anwar Khitab ◽  
Waqas Anwar ◽  
Rao Arsalan Khushnood ◽  
...  

This article presents the recent trends in the field of civil engineering with an emphasis on the applications of nano materials and their beneficial effects at nano scale. The role and utilization of nanoparticles such as nano silica, carbon nano tubes, graphene, nano clays, nano CaCO3, nano TiO2, etc., is sharply increasing with the passage of time for achieving high performance composites. These nano materials not only enhance the mechanical properties of the resulting composites but also produce multifunctional characteristics. In this review, the authors have highlighted the various types of nanomaterials being used in the field of civil engineering and the performance improvements achieved by their utilization. Besides the potential benefits of Nano materials, they may pose some health and environmental concerns. A brief discussion is also provided on this issue.


2009 ◽  
pp. 93-107
Author(s):  
Jack J. Dongarra ◽  
Hans W. Meuer ◽  
Horst D. Simon ◽  
Erich Strohmaier

2020 ◽  
Vol 16 (5) ◽  
pp. 456-473
Author(s):  
Prachi Raikar ◽  
Gurupadayya Bannimath

Chiral separation plays a very important role in the modern pharmaceutical analysis and will continue in upcoming years. Separation and identification of chiral impurities are indispensable. According to ICH guidelines, only the active enantiomer of the drug has to be marketed, so there is a focus on separation of the inactive enantiomer which acts as a chiral impurity. The impurities present in the enantiomers also pose various toxic adverse effects on bioavailability and efficacy, hence the need to separate these impurities will forever be trending. This review primarily focuses on the separation techniques like Capillary Electrophoresis (CE), High-Performance Liquid Chromatography (HPLC), Gas Chromatography (GC), and Supercritical Fluid Chromatography (SFC) followed by the year-wise trend in the separation of selected chiral impurities. In the coming years, researchers should work on using ultra-fast, selective, and sensitive methods for the effective separation of chiral impurities.


2017 ◽  
Vol 35 (6) ◽  
pp. 383-396 ◽  
Author(s):  
Stephan V. Kozhukharov ◽  
Vassil I. Samichkov ◽  
Christian A. Girginov ◽  
Maria S. Machkova

AbstractOne of the pillars of developed economics is modern transport, where there is always a high demand for the elaboration of lightweight efficient vehicles and transport facilities. Aluminum and magnesium alloys encounter continuously increasing applications in high-performance aircraft, automobile, and marine vehicles. Various advanced multilayered corrosion protective coating systems have recently been proposed to provide a reliable long-term corrosion protection combined with a number of supplemental beneficial properties. The present brief review is an attempt to summarize the basic trends and concepts regarding the elaboration of environmentally friendly multilayered and multifunctional corrosion protective coating systems. Our work summarizes these recent trends, including recently accepted environmental requirements. We have also distinguished the concepts for active and passive corrosion protection capabilities. The basic approach for the achievement of efficient active corrosion protection properties are outlined with suitable examples, such as inhibitor incorporation into ceramic or carbon nanoparticles, encapsulation of active self-healing compounds, reinforcing phase involvement and coating, finished by ultraviolet absorbers and hydrophobic compounds. As a main result, an entire conceptual model has been proposed based on the state-of-the-art analysis.


2013 ◽  
Vol 687 ◽  
pp. 26-34 ◽  
Author(s):  
Yoshihiko Ohama ◽  
Ota Masahiro

The present paper reviews the recent trends in research and development activities of polymer-modified paste, mortar and concrete in the Japanese construction industry. In Japan, the active research and development of the polymer-modified paste, mortar and concrete have been carried out for the past about 50 years, and they are nowadays used as dominant construction materials in various applications because of their high performance, multifunctionality and sustainability compared to conventional cement paste, mortar and concrete. The recent research and development activities of the polymer-modified paste, mortar and concrete are concerned with repair, strengthening or retrofitting systems for deteriorated reinforced concrete structures, liquid-applied membrane waterproofing systems, high-grade redispersible polymer powders, intelligent repair materials, and reaction to fire as repair materials in building construction. Standardization work for the polymer-modified paste, mortar and concrete has been in progress in recent years, and useful national and institutional standards have been published till now.


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