OALib 期刊
  OALib Journal (ISSN Print: 2333-9705, ISSN Online: 2333-9721)是一本多合一的开源期刊,以同行评审的方式出版发行文章,其所涵盖的研究领域多达311种领域。本刊发表的全部文章均可在期刊网站上免费阅读、下载、引用和传播。单篇文章出版费用为99美元。详情请咨询service@oalib.com 或 QQ: 3279437679 WhatsApp +8615387084133 WeChat 1538708413。现在就去投稿!
               文章    |    目标与领域    |    读者指南    |    编委    |    文章版面费    |    检索             


Go

Mar 01, 2024Open    Access

Innovative Inorganic Insulation Material (Mineral Slag Based Geopolymers) in Situ Production as Thermal Insulating Screed with Fire Resistant Properties

Konstantinos M. Sakkas,Christos Georgopoulos,Lazaros Krimatoglou,Nektarios Krimatoglou
In a previous study, we developed a low density inorganic polymer based on industrial minerals and waste designed for in situ applications in the construction sector. In this paper, further testing and development of this new screed with thermal insulation and fire resistance properties is presented. The large scale tests of in situ production and fire-resistant properties are also discussed. The newly developed material succeeded at large scale fire test under the RABT-ZTV (ca...
Open Access Library J.   Vol.11, 2024
Doi:10.4236/oalib.1111134


Jan 31, 2024Open    Access

Bauxite Residue Valorisation through Reductive Smelting: Production of Inorganic Polymer Fire Resistant Building Materials

Konstantinos M. Sakkas, Christos Georgopoulos, Efthymios Balomenos, Panagiotis Davris, Ioannis Makrigiannis
In this study thermal treated bauxite residue is used to produce inorganic polymer building material with fire resistant properties. The calcined bauxite residue from the EAF furnace of Mytilineos was mixed with alkaline solution and casted to cure. The inorganic polymer material was tested for its fire resistant properties and pass all criteria of ISO 834 fire temperature curve.
Open Access Library J.   Vol.11, 2024
Doi:10.4236/oalib.1111030


Jan 31, 2024Open    Access

Bauxite Residue Valorisation through Reductive Smelting: Coproduction of Pig Iron and Precursor for Inorganic Polymer Fire Resistant Building Materials

Efthymios Balomenos, Panagiotis Davris, Konstantinos M. Sakkas, Christos Georgopoulos, Ioannis Makrigiannis
In this study thermal treatment of bauxite residue is studied to produce two economic viable products: pig iron and inorganic polymer building material with fire resistant properties. The first campaign was successfully completed in the EAF 1 MW in Mytilineos plant, Ag. Nikolaos. The pyrometallurgical BR slag produced, was then used for the production of geopolymer fire resistant products.
Open Access Library J.   Vol.11, 2024
Doi:10.4236/oalib.1111029


Nov 24, 2023Open    Access

Valorisation of Industrial Waste for the Development of Fire Resistant Material to Be Used as Filler in Paints and Varnishes

Konstantinos Miltiadis Sakkas, Christos Georgopoulos, Athanasios Kaforos, Themis Parousis
The development of a Feslag based geopolymer and its use is further examined. The developed geopolymer is used as a filler in paints, varnishes and plasters. The physical and thermal properties of those products are measured. It is shown that the materials present adequate mechanical strength, physical and thermal properties. All developed materials were subjected to thermal loading with the modification of a standardized passive fire protection test. The plaster succeeded to the test without f...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1110773


Oct 31, 2023Open    Access

Valorization of Industrial Waste for the Development of Fire-Resistant Materials

Konstantinos Miltiadis Sakkas, Chirstos Georgopoulos, Athanasios Kaforos, Themis Parousis
The development of a Fe-based geopolymer and its performance under thermal loading is examined. The geopolymer is developed by mixing industrial waste with a highly alkaline activator, KOH, in the aqueous phase. The mechanical, physical and thermal properties and their respective variation with time are measured. It is shown that the material presents adequate mechanical strength and excellent physical and thermal properties. Then, the geopolymer material is subjected to thermal loading with the...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1110772


Jul 31, 2023Open    Access

Innovative Inorganic Insulation Materials (Mineral Slag Based Geopolymers)

Konstantinos M. Sakkas, Christos Georgopoulos, Lazaros Krimatoglou, Nektarios Krimatoglou
With the increase of energy price, the retrofitting of existing buildings with innovative insulation materials remains a key issue. Although a variety of insulation materials there is always a need for the development of new materials with improved thermophysical properties and low cost. Inorganic polymer materials are promising from this point of view. They are incombustible combining excellent physical and thermal properties with low production cost and significant environmental benefits. In t...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1109259


Apr 28, 2023Open    Access

Ultraviolet Light (UV)-Induced Photocatalytic Degradation of Diclofenac Using Naturally Derived TiO2@rGO Composite

Lorenz E. Borromeo, Lea P. Bongat, John Patrick S. Nunez, Kirby F. Mendioro, Jocelyn R. Balisnomo
Diclofenac (DCF) is a non-steroidal anti-inflammatory drug (NSAID) used to relieve pain in joint-related diseases. It is not completely metabolized after consumption and cannot be easily removed using conventional wastewater treatment. DCF has been detected in water bodies and may pose chronic effects on the endocrines of living organisms even at low-level exposure. Heterogeneous photocatalysis provides an alternative and efficient method of degrading DCF. In this study, the photocatalytic remov...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1109990


Mar 31, 2023Open    Access

HAP/f-MWCNTs/Cobalt Ferrites Nano Composites Synthesis and Electrical and Magnetic Performance Investigation

Mohammad Mostafa Raja, Rabiul Awal, Jahirul Islam Khandaker, Mohammad Al-Mamun, Mohammad Mahbubul Haque, Nilufer Yesmin Tanisa, Mohammad Sheikh Farid, Sayed Muhammad Shahid Hasan, Shamima Meherin
In the current study, pristine multiwalled carbon nanotubes (p-MWCNTs) were functionalized by HNO3 for introducing carboxyl functional group on the MWCNTs surface by which hydroxyapatite (HAP) molecules were grafted onto the surface of functionalized multiwalled carbon nanotubes (f-MWCNTs) with strong interfacial bonding. HAP-fMWCNTs-Cobalt ferrite composites were synthesized successfully by the homogenous mixture method. XRD analysis revealed that crystalline peaks of the HAP-f-MWCNT...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1109875


Feb 22, 2023Open    Access

Recovery of High-Added Value Materials from Vinasse Using Laser-Based Combustion

Hassan Nabeel Hassan Mustafa, Ahmed Mansor Taha Alzain, Mohammed U. Orsod, Ali A. S. Marouf
Vinasseisa liquid is produced during the process of fermentation and distillation of molasses for the production of ethanol. This paper studies the conversion of vinasse into valuable materials using laser, and the characterization of the provided products. For this purpose, vinasse sample was dried and combusted for 30 seconds using Nd: YAG laser with wavelength 1064 nm at output power 60 W continuous mode. The product of this process was characterized by an X-ray diffractometer (XRD), Fourier ...
Open Access Library J.   Vol.10, 2023
Doi:10.4236/oalib.1109672


Dec 02, 2022Open    Access

Directional Droplet Transportation on Microchannels

Lanling Chu, Yunzheng Wang, Xuemei Ge
In recent years, anisotropic wetting surfaces have attracted wide scientific attention for both fundamental research and practical applications. Directional transportation of droplets, as an efficient method to conduct droplet motion, has attracted great interest in research and industrial fields. Nevertheless, the great challenges in its application focus on these aspects such as sample conservation, velocity, distance, precision and driving force. Very recently, some research highlights were p...
Open Access Library J.   Vol.9, 2022
Doi:10.4236/oalib.1109253


Go

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413