Prof. Colin Schieman: link to the novel technology and technique is important

2016 ◽  
Vol 1 ◽  
pp. 3-3
Author(s):  
Skylar Gao
Keyword(s):  
2016 ◽  
Vol 32 ◽  
pp. 113
Author(s):  
C. Scabbio ◽  
O. Zoccarato ◽  
C. Marcassa ◽  
D. Lizio ◽  
L. Leva ◽  
...  

2007 ◽  
Vol 330-332 ◽  
pp. 695-698 ◽  
Author(s):  
Dong Hua Guan ◽  
Chun Peng Huang ◽  
Ji Liu ◽  
Kun Tian ◽  
Lin Niu ◽  
...  

Poly 3-hydroxybutyrate (PHB) as a kind of polysaccharides has been proved promising for tissue engineering because of its biocompatibility and biodegradability. But its poor mechanical properties and hydrophilicity limit its application. In order to explore a new useful porch to improve the performance of PHB-based GTR membrane, membrane composed of nano-HA / PHB composite was manufactured through the air/jet electrospinning process which can potentially generate nanometer scale diameter fibers and enlarge surface area of materials while maintaining high porosity. Successively, the biomineralization behavior of the membrane in supersaturated calcification solution (SCS) was studied. The Results of this investigation show that the successfully manufactured porous nano-HA/PHB membrane has high activity in SCS and its ability of inducing the formation of mineral crystal in vitro than that of the unfilled PHB membrane. It can be concluded that the addition of nano-HA and the novel technology could improve the performance of the PHB-based GTR membrane.


2019 ◽  
Vol 25 (S2) ◽  
pp. 430-431 ◽  
Author(s):  
Jan Neuman ◽  
Zdenek Novacek ◽  
Michal Pavera ◽  
Veronika Novotna

Author(s):  
Russ Currie

The paper discusses the development of sealing technology within the organisation with particular emphasis on the novel gasket (NG) referred to as Change. The paper will introduce the concept and product; it will discuss the series of tests including comparison with four other gasket styles commonly used in the sealing industry. A brief summary of product development is under taken and sealing industry gasket constants and calculations are used to highlight the benefits of novel technology.


2020 ◽  
Vol 4 (1) ◽  

Microsphere is one the novel technology that is used to deliver the drug to it targeted site. Microsphere they are micro particle in size. They are of natural and synthetic one. There are various approaches in delivering a therapeutic substance to the target site in a sustained controlled release fashion. For preparation of microsphere protein physiochemical property to be optimized this include optimal pH, protein stochiometry and protein concentration. Some of the important microsphere technology includes Ceformin microsphere technology Ceformin EI, Ceformin TI, Ceformin EA/CR, Silk microsphere and gelatin microsphere. Microsphere drug delivery system has gained enormous attention due to its wide range of application as it covers targeting the drug to particular site to imaging and helping the diagnostic features. Microsphere is excellent polymer used for buccal delivery. It is also used to deliver pacilitaxel at the tumor site. In the present study valuable and selective information on microsphere is enlightened with its important applications which will be beneficial for further newer drug development.


2021 ◽  
Vol 03 (03) ◽  
pp. 1-1
Author(s):  
Hong Yong Sohn ◽  
◽  
Mohamed Elzohiery ◽  
De-Qiu Fan ◽  
◽  
...  

<span>This article describes the development of a novel ironmaking technology based on flash reduction. The development started with the proof of the kinetic feasibility, considering that a typical flash reactor provides only a few seconds of residence time. This was followed by tests in a laboratory flash reactor and finally a pilot plant operation. The rate equations formulated in this work were developed considering the optimum combination of temperature, residence time, and reducing gas partial pressure to achieve > 95% reduction degree. Experiments in the intermediate-scale laboratory flash reactor indicated that more than 90% reduction degree could be obtained in a few second residence time at temperature as low as 1175 °C. A pilot reactor operating at 1200–1550 °C was installed and run to collect data necessary for scaling up the process. The tests in this large reactor validated the design concept in terms of heat supply and residence time, and identified technical hurdles. This investigation proved the technical feasibility of the flash ironmaking technology. The results of this work will facilitate the design for the industrial flash ironmaking reactor. The novel technology is expected to decrease the energy consumption in ironmaking by up to 44% compared with the average blast furnace process, and will reduce CO<sub>2</sub> emissions by up to 51%. When hydrogen is used, the proposed process would use up to 60% less energy with little carbon dioxide emissions. However, it is noted that the energy requirements and CO<sub>2</sub> emissions during the production of natural gas, hydrogen or coal must be added for a comprehensive comparison.</span>


Kidney failure is a condition where the function of kidney gets disabled. In order to sustain in life, dialysis is predominantly adopted. The dialysis is a technical replacement of function of kidney and it is of two types. In considering the long term blood filtering process, the hemodialysis will be an efficient device in replacing the renal functioning but it was currently performed in the stationary mode. In order to fulfill the life supporting requirement, the “Miniaturized portable hemodialysis” device has been introduced which will be portable than the conventional ones. In order to enhance their features, the chambered dialysate technology and the specialized filtering mechanism has been fabricated to this project device. In the process of rectifying the technical errors, sensor indications are implemented for safety measures. In focusing towards the portable mechanism, the battery backup has been applied in this device which can perform patient dialysis in transferable mode.


2021 ◽  
Author(s):  
Eustace Fernando ◽  
Godfrey Kyazze ◽  
Ahmed Ahsan ◽  
Pavithra Fernando

Biodegradation of xenobiotics is often considered to be a slow process. This is especially true if the xenobiotic in question is polymeric in nature, contains many chemical substituent groups or generally exhibits high level of toxicity to environmental microbiota. Due to this observed slow kinetics of degradation, removal of many xenobiotics from contaminated environments using conventional bioremediation technologies is a difficult problem. To alleviate this, alternative technologies showing improved kinetics of biodegradation are sought by the scientific community. One such promising approach is the usage of the novel technology of bio-electrochemical systems for improved degradation of xenobiotics. Due to the newness of this technology and affiliated methods, not much information about its usage for biodegradation of xenobiotics is available in literature. Therefore, this chapter aims to address that gap and bring about a comprehensive analysis on the usage of bio-electrochemical systems for rapid removal of xenobiotic contaminants from the environment.


2021 ◽  
Author(s):  
Mangal Singh Sisodiya ◽  
Shashank Shukla ◽  
Vivek Bajpai

Abstract The Micro EDM is the most suitable machining process in the miniaturization of products at present era. The attainment of close precision is the primary obligation in miniaturization or micromachining. Especially in machining of hard-to-cut materials like titanium alloy. Such alloys are applied in several cutting-edge high-quit applications due to extraordinary properties. Current work presents an exploratory analysis of novel Maglev EDM while machining of commercially used pure titanium alloy (CP-TI). The work outlook is to establish the viability of novel Maglev EDM by comparing the with similar range of micro EDM. The pure DC power is employed with the conjunction of Maglev lucidity to refine the shortcomings of the conventional micro EDM. The novel technology deals with prime concerns of conventional micro EDM and cracked deficiencies like delay response of mechanical actuator and a servo mechanism. The Novel technology uses the logical arrangement of permanent and electromagnet to dealt with inadequacies like short-circuiting and arcing. The results of state of art novel technology proclaimed the improved Material removal rate (MRR), which are lying in the average range of 76.6 µgm/min, whereas the specific energy and surface roughness are observed 33.4 Joule/ microgram and 4.3 µm respectively.


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