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Online since: July 2021
Authors: Abu Bakar Md. Ismail, Abdul Kuddus
Acknowledgment
The authors are very grateful to Bangladesh Council for Science and Industrial Research (BCSIR), Dhaka, Bangladesh, Department of Glass and Ceramic, Rajshahi University of Engineering Technology, Central Science Laboratory, and Department of Electrical and Electronic Engineering, the University of Rajshahi for providing laboratory facilities.
Hossain, Comparative Study on Modified Alumino-thermic Processed Si NPs doped CuO-ZnO Spin Coated Heterojunction: Tandem and Bulk, Journal of Scientific and Engineering Research 7(3) (2020) 73-79
Ismail, Study on the Performance of ZnO/CuO Heterojunction Solar Cell Simulation and Experimental, Conference proceedings, International Conference on Computer, Communication, Chemical, Materials and Electronic Engineering IC4ME2 (2019)
Ismail, Performance Comparison of Simulated and Fabricated ZnO/CuO Heterojunction Thin-film Solar Cells, Rajshahi University journal of science & engineering 45 (2017) 13-21
Adedokun, Effect of Spin Coating Speed on Some Optical Properties of ZnO Thin Films, Journal of Materials Science and Chemical Engineering. 4 (2016) 1-6. http://dx.doi.org/10.4236/msce.2016.45001 [36] M.
Hossain, Comparative Study on Modified Alumino-thermic Processed Si NPs doped CuO-ZnO Spin Coated Heterojunction: Tandem and Bulk, Journal of Scientific and Engineering Research 7(3) (2020) 73-79
Ismail, Study on the Performance of ZnO/CuO Heterojunction Solar Cell Simulation and Experimental, Conference proceedings, International Conference on Computer, Communication, Chemical, Materials and Electronic Engineering IC4ME2 (2019)
Ismail, Performance Comparison of Simulated and Fabricated ZnO/CuO Heterojunction Thin-film Solar Cells, Rajshahi University journal of science & engineering 45 (2017) 13-21
Adedokun, Effect of Spin Coating Speed on Some Optical Properties of ZnO Thin Films, Journal of Materials Science and Chemical Engineering. 4 (2016) 1-6. http://dx.doi.org/10.4236/msce.2016.45001 [36] M.
Online since: March 2022
Authors: Hai Feng Liu, Shu Ing Doh, Ren Guang Tao, Qian Zhang, He Jiao Ma
To some extent, it is able to alleviate the shortage of sand resources to replace some of the medium sand with desert sand for engineering construction.
Not only does it meet the needs of the engineering, but it also puts more waste resources to effective use.
The detailed experimental analysis will provide strong support for the practical application of the engineering.
References [1] Qin Y, Building Materials, China Construction Industry Press, 2004 [2] Liu J X, Liu P, Zhang M L, Hai R, International advances on physical and mechanical properties of fly ash self-compacting concrete, Concrete, 2020, 11:11-15 [3] Zhang Z G, Zhao L, Zhang P, Zhang R Y, Mechanical properties of engineered cementitious composites with different fly ash contents at sub-elevated temperature, Journal of Southeast University(Natural Science Edition), 2020, 5:831-836 [4] Liu B, Carbonation resistance property of high fly-ash content concrete, Concrete, 2003, 3: 44-48 [5] Zhu Y F, Wang P M, Research on carbonation resistance of concrete containing large amount of fly ash, Journal of Building Materials, 1999, 4:319-323 [6] Wang X, Wang Y B, Yang L S, Zhu X F, Carbonation resistance of high volume fly ash concrete, Concrete, 2013, 2:5-7 [7] Li C H, Niu D T,Song H, Experimental research of carbonization of concrete with composite addition of mineral admixture, Engineering construction
of Building Materials, 1999, 4(5):319-323 [31] Zhu Y P, Yu L, Lv J, Long H B, Effect of fly ash and slag on physico-mechanical property and durability behavior of concrete, Engineering Journal of Wuhan University,2018,51(5):130-134 [32] Mi R J, Pan G H, Research progress in carbonation resistance of recycled aggregate concrete, Journal of Harbin Engineering University, 2020, 41(03):473-480 [33] Wang R X, Mathematical Statistics, Xi’an: Xi'an Jiaotong University Press,1986 [34] Ru H, Study on evaluation methodology and influencing factors of carbonation of concrete with high content mineral admixture, Beijing: Tsinghua University, 2011 [35] Yang W W, Wang F F, Cui Z Z, Research on the influence of fly ash and magnesium slag on carbonation of C30 concrete, Science Technology and Engineering, 2015, 6:250-253
Not only does it meet the needs of the engineering, but it also puts more waste resources to effective use.
The detailed experimental analysis will provide strong support for the practical application of the engineering.
References [1] Qin Y, Building Materials, China Construction Industry Press, 2004 [2] Liu J X, Liu P, Zhang M L, Hai R, International advances on physical and mechanical properties of fly ash self-compacting concrete, Concrete, 2020, 11:11-15 [3] Zhang Z G, Zhao L, Zhang P, Zhang R Y, Mechanical properties of engineered cementitious composites with different fly ash contents at sub-elevated temperature, Journal of Southeast University(Natural Science Edition), 2020, 5:831-836 [4] Liu B, Carbonation resistance property of high fly-ash content concrete, Concrete, 2003, 3: 44-48 [5] Zhu Y F, Wang P M, Research on carbonation resistance of concrete containing large amount of fly ash, Journal of Building Materials, 1999, 4:319-323 [6] Wang X, Wang Y B, Yang L S, Zhu X F, Carbonation resistance of high volume fly ash concrete, Concrete, 2013, 2:5-7 [7] Li C H, Niu D T,Song H, Experimental research of carbonization of concrete with composite addition of mineral admixture, Engineering construction
of Building Materials, 1999, 4(5):319-323 [31] Zhu Y P, Yu L, Lv J, Long H B, Effect of fly ash and slag on physico-mechanical property and durability behavior of concrete, Engineering Journal of Wuhan University,2018,51(5):130-134 [32] Mi R J, Pan G H, Research progress in carbonation resistance of recycled aggregate concrete, Journal of Harbin Engineering University, 2020, 41(03):473-480 [33] Wang R X, Mathematical Statistics, Xi’an: Xi'an Jiaotong University Press,1986 [34] Ru H, Study on evaluation methodology and influencing factors of carbonation of concrete with high content mineral admixture, Beijing: Tsinghua University, 2011 [35] Yang W W, Wang F F, Cui Z Z, Research on the influence of fly ash and magnesium slag on carbonation of C30 concrete, Science Technology and Engineering, 2015, 6:250-253
Online since: August 2011
Authors: S. P. Farrell, K.J. Avery, L.W. MacGregor
XRD is a widely recognized technique for reliable determination of on-site near surface residual stress in both metals and ceramics [2].
Medlin for ASM International, Materials Park, Ohio (1990), p. 49-69
[10] SAE J784a, Society of Automotive Engineers (SAE) Information Report, Second Edition, Published by SAE Inc., New York (1971), 119 pages
Chowdhury, Journal of Nondestructive Evaluation, Vol. 22, (2003) p. 53-62
Shipley for ASM International, Materials Park, Ohio (2007), p. 484-497
Medlin for ASM International, Materials Park, Ohio (1990), p. 49-69
[10] SAE J784a, Society of Automotive Engineers (SAE) Information Report, Second Edition, Published by SAE Inc., New York (1971), 119 pages
Chowdhury, Journal of Nondestructive Evaluation, Vol. 22, (2003) p. 53-62
Shipley for ASM International, Materials Park, Ohio (2007), p. 484-497
Online since: March 2023
Authors: Surian Pinem, Tukiran Surbakti, Lily Suparlina
Hassan, Simulation of a Full PWR Core with MCNP6, International Journal of Science and Research (IJSR). 9 9 (2020) 913-919
Part I: Steady-state analysis, Nuclear Engineering and Design. 241 1 (2011) 193-202
Boer, Neutronic analysis of the burning of transuranic in fully ceramic micro-encapsulated tri-isotropic particle-fuel in a PWR, Nuclear Engineering and Design. 252 (2012) 215-225
[9] Xuan Bach Tran, and Nam Zin Cho, A Study of Neutronics Effects of the Spacer Grids in a Typical PWR via Monte Carlo Calculation, Nuclear Engineering and Technology. 48 1 (2016) 33-42
Hazem et. al., Neutronic calculation and power maps investigation of PWR critical lattice experiments using WIMSD-5B and CITVAP v3.1 codes, International Journal of Nuclear Energy Science and Technology. 8 4 (2014) 351-359
Part I: Steady-state analysis, Nuclear Engineering and Design. 241 1 (2011) 193-202
Boer, Neutronic analysis of the burning of transuranic in fully ceramic micro-encapsulated tri-isotropic particle-fuel in a PWR, Nuclear Engineering and Design. 252 (2012) 215-225
[9] Xuan Bach Tran, and Nam Zin Cho, A Study of Neutronics Effects of the Spacer Grids in a Typical PWR via Monte Carlo Calculation, Nuclear Engineering and Technology. 48 1 (2016) 33-42
Hazem et. al., Neutronic calculation and power maps investigation of PWR critical lattice experiments using WIMSD-5B and CITVAP v3.1 codes, International Journal of Nuclear Energy Science and Technology. 8 4 (2014) 351-359
Online since: March 2022
Authors: Euan L. Maulas, Reinjhel F. Gomez, Mary Grace V. Vinzon, Giovanni D. David, Jennalyn A. Venegas
IOP Conference Series: Materials Science and Engineering. 2010, doi: https://doi.org/10.1088/1757-899X/1012/1/012019
[5] K.
Robles, Development of Smartphone-Controlled Hand and Arm Exoskeleton for Persons with Disability, Open Engineering, vol.11, no.1, 2021, pp. 161-170, doi: https://doi.org/10.1515/eng-2021-0016 [15] A.C.
Procedia Engineering 136 (2016), 257-262
Robles, Development of Smartphone-Controlled Hand and Arm Exoskeleton for Persons with Disability, Open Engineering, vol.11, no.1, 2021, pp. 161-170, doi: https://doi.org/10.1515/eng-2021-0016 [22] A.M.
Ahsan, Design and development of an autonomous agricultural drone for sowing seeds. 7th Brunei International Conference on Engineering and Technology Journal (2018), 101-4.
Robles, Development of Smartphone-Controlled Hand and Arm Exoskeleton for Persons with Disability, Open Engineering, vol.11, no.1, 2021, pp. 161-170, doi: https://doi.org/10.1515/eng-2021-0016 [15] A.C.
Procedia Engineering 136 (2016), 257-262
Robles, Development of Smartphone-Controlled Hand and Arm Exoskeleton for Persons with Disability, Open Engineering, vol.11, no.1, 2021, pp. 161-170, doi: https://doi.org/10.1515/eng-2021-0016 [22] A.M.
Ahsan, Design and development of an autonomous agricultural drone for sowing seeds. 7th Brunei International Conference on Engineering and Technology Journal (2018), 101-4.
Online since: August 2018
Authors: Ferdiansyah Mahyudin, Dwikora Novembri Utomo, Mouli Edward, Lukas Widhiyanto, Christopher Anthony Simanjuntak, Hudaya Nikmatullah
Bone Tissue Engineering: State of the Union.
Journal of Bone and Joint Surgery, 2011
Cell and Tissue Engineering.
Creation of Living Tissue: An Engineering Feat.
Stem cells combined with bone graft substitutes in skeletal tissue engineering.
Journal of Bone and Joint Surgery, 2011
Cell and Tissue Engineering.
Creation of Living Tissue: An Engineering Feat.
Stem cells combined with bone graft substitutes in skeletal tissue engineering.
Online since: May 2012
Authors: Yu Lei, Fang Yin, Wu Di Zhang, Shi Qing Liu, Yu Bao Chen
Introduction
MSW usually refers to the waste from the residents, business, tourism, municipal maintenance, enterprises, and institutions and so on, such as kitchen waste, food residues, waste paper, old fabrics, old furniture, glass and ceramic fragments, waste plastics, coal ash, abandoned vehicles, etc.[1].
An analysis of the collection and processing of urban domestic waste of internal and international(in Chinese).Territory & Natural Resources Study, 2008, (4): 67-68
Analysis of Anaerobic Digestion Technology for Municipal Solid Wastes(in Chinese).Journal Yunnan Normal University(Supplementary Issue 2), 2011, 31: 32-35
Environmental Sanitation Engineering, 2011, 19(3): 20-24
Guangxi journal of light industry, 2008, 116(7): 85-88
An analysis of the collection and processing of urban domestic waste of internal and international(in Chinese).Territory & Natural Resources Study, 2008, (4): 67-68
Analysis of Anaerobic Digestion Technology for Municipal Solid Wastes(in Chinese).Journal Yunnan Normal University(Supplementary Issue 2), 2011, 31: 32-35
Environmental Sanitation Engineering, 2011, 19(3): 20-24
Guangxi journal of light industry, 2008, 116(7): 85-88
Online since: November 2013
Authors: Yan Yan Jiang, Ji Wen Zhang, Zhi Qiang Hu, Jing Xiao Liu
Synthesis and Visible Light Photocatalytic Activity of Spinel MAl2O4 (M=Mg, Zn, Cu)
Yanyan Jianga, Jiwen Zhangb, Zhiqiang Huc, Jingxiao Liud
School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, PR China
ajiangyy@dlpu.edu.cn, bzhangjiwenzjw@126.com, chzq@dlpu.edu.cn,djxiaoliu@sina.com
Keywords: Aluminium spinel; Sol-gel method; Photocatalyst; Photocatalytic activity; Degradation
Abstract.
WANG: Chinese ceramic society.
Zhou: Chinese Journal of Catalysis.
Trari: International Journal of Hydrogen Energy.
WANG: Chinese ceramic society.
Zhou: Chinese Journal of Catalysis.
Trari: International Journal of Hydrogen Energy.
Online since: December 2023
Authors: Srikrishna Bhaskar Rao, K. Venkadeshwaran, Y. Naidu Shivaprasad
Y.3c ,
1Department of Mechanical Engineering, Faculty of Engineering and Technology,
JAIN (Deemed to-be University), Bangalore, Karnataka-562112, India
1Department of Mechanical Engineering, Faculty of Engineering and Technology,
Jain (Deemed to-be University), Bangalore, Karnataka-562112, India
3Department of Mechanical Engineering, Faculty of Engineering and Technology,
Jain (Deemed to-be University), Bangalore, Karnataka-562112, India
asrikrishna.rao@jainuniversity.ac.in, bvenkat.slse@gmail.com, cn.shivaprasad@jainuniversity.ac.in
Keywords: Coating applications.
Surface engineering, 21(2), 113-118
Rare Metal Materials and Engineering, 45(4), 1002-1006
Surface engineering, 19(4), 269-273
Journal of materials engineering and performance, 23(12), 4463-4471. https://doi.org/10.1007/ s11665-014-1244-9 [76] Feng, J., Ferreira, M.
Surface engineering, 21(2), 113-118
Rare Metal Materials and Engineering, 45(4), 1002-1006
Surface engineering, 19(4), 269-273
Journal of materials engineering and performance, 23(12), 4463-4471. https://doi.org/10.1007/ s11665-014-1244-9 [76] Feng, J., Ferreira, M.
Online since: December 2023
Authors: Brahim Athamnia, Hamad Khelaifa, Mohamed Zohair Kaab, Tarek Djedid
Yahia, Statistical models to optimize fiber-reinforced dune sand concrete, Arabian Journal for Science and Engineering. 39 (2014) 2721-2731
Krobba, Theoretical and Experimental Flexural Behavior of Steel Bars-Reinforced Concrete Beams Strengthened with Cementitious Mortars Based on Dune Sands, International Journal of Civil Engineering. 19 (2021) 623-634
Mahinroosta, Resistance of red clay brick waste/phosphorus slag-based geopolymer mortar to acid solutions of mild concentration, Journal of Building Engineering. 34 (2021) 102066
Mijarsh, The engineering properties and pozzolanic reaction kinetics of quaternary blended binder high strength mortars optimized by the Taguchi method, Journal of Building Engineering. 54 (2022) 104582
ABADOU, Use of crushed clay brick waste as dune sand granular corrector in mortar manufacturing, Journal of Materials and Engineering Structures. 6 (2019) 397–408.
Krobba, Theoretical and Experimental Flexural Behavior of Steel Bars-Reinforced Concrete Beams Strengthened with Cementitious Mortars Based on Dune Sands, International Journal of Civil Engineering. 19 (2021) 623-634
Mahinroosta, Resistance of red clay brick waste/phosphorus slag-based geopolymer mortar to acid solutions of mild concentration, Journal of Building Engineering. 34 (2021) 102066
Mijarsh, The engineering properties and pozzolanic reaction kinetics of quaternary blended binder high strength mortars optimized by the Taguchi method, Journal of Building Engineering. 54 (2022) 104582
ABADOU, Use of crushed clay brick waste as dune sand granular corrector in mortar manufacturing, Journal of Materials and Engineering Structures. 6 (2019) 397–408.