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Online since: July 2015
Authors: M.B.A. Asmael, Roslee Ahmad
Sherman, Materials characterization, 35 (1995) 3-9
Pantelakis, Journal of Materials Engineering and Performance, 12 (2003) 196-205
Chen, Materials & Design, 32 (2011) 4333-4340
Asmael, Advanced Materials Research, 264 (2011) 295-300
Ghazali, Materials & Design, 31 (2010) 365-374
Pantelakis, Journal of Materials Engineering and Performance, 12 (2003) 196-205
Chen, Materials & Design, 32 (2011) 4333-4340
Asmael, Advanced Materials Research, 264 (2011) 295-300
Ghazali, Materials & Design, 31 (2010) 365-374
Online since: February 2015
Authors: Zawati Harun, Nurafiqah Rosman
Factors affecting the synthesis of microsized NaY zeolite, Microporous and Mesoporous Materials. 25 (1998) 131–136
Mendes-Filhob Synthesis of Cubic Y Zeolite Using a Pulsed Microwave Heating System, Materials Research. 2(2) (1999) 105-109
Synthesis of small crystals zeolite NaY, Materials Letters 60 (2006) 1131–1133
Series: Materials Science and Engineering 17 (2011) 012030
Proc. 740 (2003) Materials Research Society 17.16
Mendes-Filhob Synthesis of Cubic Y Zeolite Using a Pulsed Microwave Heating System, Materials Research. 2(2) (1999) 105-109
Synthesis of small crystals zeolite NaY, Materials Letters 60 (2006) 1131–1133
Series: Materials Science and Engineering 17 (2011) 012030
Proc. 740 (2003) Materials Research Society 17.16
Online since: August 2016
Authors: Carolin Körner, Vera Juechter
Singer, Additive manufacturing of nickel-based superalloy Inconel 718 by selective electron beam melting: Processing window and microstructure, Journal of Materials Research. 29 (2014) 1987-1996
Körner, Process development for the manufacturing of 99.94% pure copper via selective electron beam melting, Materials Letters. 143 (2015) 298-301
West, Freeform Fabrication of Titanium Aluminide via Electron Beam Melting using Prealloyed and Blended Powders, Research Letters in Material Science. (2007), 1-4
Vasudevan, Creep properties of a fully-lamellar Ti-48Al-2Cr-2Nb alloy, Materials Science and Engineering.
Fujitsuna, Effects of lamellar spacing, volume fraction and grain size on creep strength of fully lamellar TiAl alloys, Materials Science and Engineering.
Körner, Process development for the manufacturing of 99.94% pure copper via selective electron beam melting, Materials Letters. 143 (2015) 298-301
West, Freeform Fabrication of Titanium Aluminide via Electron Beam Melting using Prealloyed and Blended Powders, Research Letters in Material Science. (2007), 1-4
Vasudevan, Creep properties of a fully-lamellar Ti-48Al-2Cr-2Nb alloy, Materials Science and Engineering.
Fujitsuna, Effects of lamellar spacing, volume fraction and grain size on creep strength of fully lamellar TiAl alloys, Materials Science and Engineering.
Online since: May 2022
Authors: Danny Tupayachy-Quispe, Paul Huanca-Zuñiga, Jonathan Almirón, Hugo Canahua-Loza, Belinda Chavez, Leslie Canahua-Sosa
Both chitin and chitosan have currently been studied for multiple uses: as a biodegradable material, an absorbent of heavy metals, a water purifier, a dietary supplement and in biomedical products.
Materials and Methods A.
Blanchemain, «Evaluation of antibacterial textile covered by layer-by-layer coating and loaded with chlorhexidine for wound dressing application,» Materials Science and Engineering: C, vol. 100, pp. 554-563, 2019
Tessaro, «Impact of acid type for chitosan dissolution on the characteristics and biodegradability of cornstarch/chitosan based films,» International Journal of Biological Macromolecules 138 (2019) 693–703, 2019
[15] Huihua Liu, Raju Adhikari, Qipeng Guo y Benu Adhikari, «Preparation and characterization of glycerol plasticized (high-amylose) starch–chitosan films,» Journal of Food Engineering 116 (2013) 588–597, 2013
Materials and Methods A.
Blanchemain, «Evaluation of antibacterial textile covered by layer-by-layer coating and loaded with chlorhexidine for wound dressing application,» Materials Science and Engineering: C, vol. 100, pp. 554-563, 2019
Tessaro, «Impact of acid type for chitosan dissolution on the characteristics and biodegradability of cornstarch/chitosan based films,» International Journal of Biological Macromolecules 138 (2019) 693–703, 2019
[15] Huihua Liu, Raju Adhikari, Qipeng Guo y Benu Adhikari, «Preparation and characterization of glycerol plasticized (high-amylose) starch–chitosan films,» Journal of Food Engineering 116 (2013) 588–597, 2013
Online since: December 2014
Authors: Duan Shu Song, Yue Xin Huang, Shao Wei Cheng
Touch: Material, Textures, Shape, etc.
The perception level is related to children's visual, tactile and auditory sense, for example, products' shape, color, lighting, materials, textures and sound, etc [5].
Journal of Hunan University of Science & Technology (Social Science Edition), 2013, 16 (01) 161-163
Journal of Educational Technology Systems, 2007-2008, 56 (02) 203-218
Information Science, 2010, (05) 763-767
The perception level is related to children's visual, tactile and auditory sense, for example, products' shape, color, lighting, materials, textures and sound, etc [5].
Journal of Hunan University of Science & Technology (Social Science Edition), 2013, 16 (01) 161-163
Journal of Educational Technology Systems, 2007-2008, 56 (02) 203-218
Information Science, 2010, (05) 763-767
Online since: June 2014
Authors: Li Fan Liu, Yong Wei Liao, Jie Liang, Shu Ting Lai
Materials and methods
Substrates and inoculums
The food waste used in the present study was collected from the first student canteen at Guangdong University of Technology, China.
Biogas was produced following SS and COD decreases in the reactor, suggesting that a part of the organic material was converted to biogas.
Vol. 79(2010), p.238 [3] Eleni Iacovidou, Dieudonne-Guy Ohandja, Nikolaos Voulvoulis: Science of the Total Environment.
Vol. 40(2005), p. 2897 [11] Zhongda Xu, George Nakhla: Biochemical Engineering Journal.
Onkal Engin: Journal of Hazardous Materials.
Biogas was produced following SS and COD decreases in the reactor, suggesting that a part of the organic material was converted to biogas.
Vol. 79(2010), p.238 [3] Eleni Iacovidou, Dieudonne-Guy Ohandja, Nikolaos Voulvoulis: Science of the Total Environment.
Vol. 40(2005), p. 2897 [11] Zhongda Xu, George Nakhla: Biochemical Engineering Journal.
Onkal Engin: Journal of Hazardous Materials.
Online since: October 2014
Authors: Li Ping Wang, Cui Ying Zhang
Aquatic macrophytes grow in interface of water-mud, water-gas and water-land, plays an important role in regulating material cycle of ecological system.And aquatic macrophyte is a good foundation of lake ecosystem with the better purification effects and unique economic benefits[3].
Jan: Aquatic botany(2003) [4] HeshengLi:Modern plant physiology, edtied by China Higher Education Press,Beijing,BJ(2002) , in Chinese [5] Shiyou Shang,Jianmin Du, Xuying Li,Qingtai Shen,Fuxiang Hou,Linbin Wu: Transactions of the Chinese Society of Agricultural Engineering(2003) ,in Chinese [6] Bin Wang, Wei Li: Acta Ecologica Sinica(2002) ,in Chinese [7] Hongwei Zhou,Guoxin Shi, Kaihong Du, Qinsong Xu,Nan Xu: Chinese Journal of Applied Ecology(2003) ,in Chinese [8] Chuanbao Yin, Long Wang, Cuiying Zhang, Hao Xing,Yazhou Song: China Rural Water and Hydropower(2014) ,in Chinese [9] M.
Beklioglu, B.Moss: Hydrobioloyia(1996) [10] Jianrong Qiao, Jiuchang Ren, Yanqing Chen: Acta Scientiarum Naturalium Universitatis Pekinensis(1996) ,in Chinese [11] Fu Song, Yan Chen, Jianrong Qiao: Research of Environmental Sciences(1997) ,in Chinese [12] Chun Ye, G.uoyan Zou, Zishi Fu: Acta Scientiae Circumstantiae(2007) ,in Chinese [13] T.Ozimek, E .van Donk, R.D.Gulati: Hydrobiologia(1993) [14] E.P.H.Best: Aquat Bot(1980) [15] Chanfgzhou Yan, Ayan.Zeng, Xiangcan Jin, Jingzhu.Zhao,Qiujin Xu,Xingmin Wang: Acta Ecologica Sinica(2007) ,in Chinese [16]Xiangcan Jin, Jianzhou Chun, Shengrui Wang: Chinese Journal of Applied & Environmental Biology(2007) ,in Chinese [17] Jinfeng Zhang, Qinghe Zhang: Journal of Sediment Research(2012) ,in Chinese [18] Lanfang Zhang, Wei Zhu, Jiashun Cao, Xinmin Mei,Jun Zhang: Journal of Lake Sciences (2006), in Chinese [19] Wenlin Wang, Guoxiang Wang, Qiang Li, Guoquan Pan,Ting Ma: Acta Ecologica Sinica (2006), in Chinese [20]Hua Zou, Gang Pan, Hao Chen
: Chinese Journal of Environmental Science(2004) ,in Chinese [21] J.W.Barko, D.G.Gunnison: Aquat Bot(1991) [22] Zexiang Lei, Yifa Xie, Zhengwen Liu: Journal of Central China Normal University(Natural Sciences) (2006) ,in Chinese [23] Kaining Chen, Xiaofeng Chen, Weimin Chen, Ensheng Liu,Cejie Lan,Hai Xu: Chinese Journal of Applied Ecology(2006) ,in Chinese [24 ] J.E.Keeley,D.R.Sandquist: Ecology(1991) [25] W.T.Dushenko, D.A.Bright, K.J.Reimer: Aquatic Botany(1995) [26] Qinsong Xu, Guoxin Shi,Xue Wang, Guorong Wu: Acta Hydrobiologica Sinica(2006) ,in Chinese [27] Wenhui You, Yongchang Song.
Chinese Journal of App lied Ecology(1992) ,in Chinese [28]V.W.Van:Aquat Bot(1982) [29]Kuan Xu, Bo Liu,Guoxiang Wang, Xu Du,Fen Ling,Feng Zhou: Chinese Journal of Environmental Engineering(2012) ,in Chinese [30]Ruili Su, Wei Li: Chinese Bulletin of Botany(2005) ,in Chinese
Jan: Aquatic botany(2003) [4] HeshengLi:Modern plant physiology, edtied by China Higher Education Press,Beijing,BJ(2002) , in Chinese [5] Shiyou Shang,Jianmin Du, Xuying Li,Qingtai Shen,Fuxiang Hou,Linbin Wu: Transactions of the Chinese Society of Agricultural Engineering(2003) ,in Chinese [6] Bin Wang, Wei Li: Acta Ecologica Sinica(2002) ,in Chinese [7] Hongwei Zhou,Guoxin Shi, Kaihong Du, Qinsong Xu,Nan Xu: Chinese Journal of Applied Ecology(2003) ,in Chinese [8] Chuanbao Yin, Long Wang, Cuiying Zhang, Hao Xing,Yazhou Song: China Rural Water and Hydropower(2014) ,in Chinese [9] M.
Beklioglu, B.Moss: Hydrobioloyia(1996) [10] Jianrong Qiao, Jiuchang Ren, Yanqing Chen: Acta Scientiarum Naturalium Universitatis Pekinensis(1996) ,in Chinese [11] Fu Song, Yan Chen, Jianrong Qiao: Research of Environmental Sciences(1997) ,in Chinese [12] Chun Ye, G.uoyan Zou, Zishi Fu: Acta Scientiae Circumstantiae(2007) ,in Chinese [13] T.Ozimek, E .van Donk, R.D.Gulati: Hydrobiologia(1993) [14] E.P.H.Best: Aquat Bot(1980) [15] Chanfgzhou Yan, Ayan.Zeng, Xiangcan Jin, Jingzhu.Zhao,Qiujin Xu,Xingmin Wang: Acta Ecologica Sinica(2007) ,in Chinese [16]Xiangcan Jin, Jianzhou Chun, Shengrui Wang: Chinese Journal of Applied & Environmental Biology(2007) ,in Chinese [17] Jinfeng Zhang, Qinghe Zhang: Journal of Sediment Research(2012) ,in Chinese [18] Lanfang Zhang, Wei Zhu, Jiashun Cao, Xinmin Mei,Jun Zhang: Journal of Lake Sciences (2006), in Chinese [19] Wenlin Wang, Guoxiang Wang, Qiang Li, Guoquan Pan,Ting Ma: Acta Ecologica Sinica (2006), in Chinese [20]Hua Zou, Gang Pan, Hao Chen
: Chinese Journal of Environmental Science(2004) ,in Chinese [21] J.W.Barko, D.G.Gunnison: Aquat Bot(1991) [22] Zexiang Lei, Yifa Xie, Zhengwen Liu: Journal of Central China Normal University(Natural Sciences) (2006) ,in Chinese [23] Kaining Chen, Xiaofeng Chen, Weimin Chen, Ensheng Liu,Cejie Lan,Hai Xu: Chinese Journal of Applied Ecology(2006) ,in Chinese [24 ] J.E.Keeley,D.R.Sandquist: Ecology(1991) [25] W.T.Dushenko, D.A.Bright, K.J.Reimer: Aquatic Botany(1995) [26] Qinsong Xu, Guoxin Shi,Xue Wang, Guorong Wu: Acta Hydrobiologica Sinica(2006) ,in Chinese [27] Wenhui You, Yongchang Song.
Chinese Journal of App lied Ecology(1992) ,in Chinese [28]V.W.Van:Aquat Bot(1982) [29]Kuan Xu, Bo Liu,Guoxiang Wang, Xu Du,Fen Ling,Feng Zhou: Chinese Journal of Environmental Engineering(2012) ,in Chinese [30]Ruili Su, Wei Li: Chinese Bulletin of Botany(2005) ,in Chinese
Online since: August 2011
Authors: Jun Hua Bai, Jing Li, Shao Kun Li
Materials and methods
Study region
The study area was located on the 148th farm of Xinjiang (45° 00′ N 86° 11′ E; 44° 46′ N 86° 23′ E), an area of approximately 1.63×104 ha in the Manas River valley at an elevation of 350-369 meters above mean sea level (MSL).
Journal of Xinjiang Agricultural University, 22(1), 9-14.
Journal of Xinjiang Agricultural University, 22(4), 276-282.
Chinese Journal of Eco-Agriculture, 4(4), 113-114.
Journal of Xinjiang Agricultural University, 22(1), 63-68.
Journal of Xinjiang Agricultural University, 22(1), 9-14.
Journal of Xinjiang Agricultural University, 22(4), 276-282.
Chinese Journal of Eco-Agriculture, 4(4), 113-114.
Journal of Xinjiang Agricultural University, 22(1), 63-68.
Online since: August 2016
Authors: Rosari Saleh, Nur Afifah
However, very few reports are available on this combination, especially using perovskite materials as catalyst.
The EDX analysis was employed to determine the element of the synthesized materials.
Wu, Simulated-sunlight-activated photocatalysis of Methylene Blue using cerium-doped SiO2/TiO2 nanostructured fibers, Journal of Environmental Sciences, vol. 24, p. 1867–1875, 2012
Saleh, Preparation, Characterization and Photocatalytic Activity of Multifunctional Fe3O4/ZnO/CuO Hybrid Nanoparticles, Materials Science Forum, vol. 827, pp. 37-42, 2015
Yu, Spin dynamics in annealed Mn-doped ZnO ceramic materials, Solid State Communications, vol. 144, p. 134–137, 2007
The EDX analysis was employed to determine the element of the synthesized materials.
Wu, Simulated-sunlight-activated photocatalysis of Methylene Blue using cerium-doped SiO2/TiO2 nanostructured fibers, Journal of Environmental Sciences, vol. 24, p. 1867–1875, 2012
Saleh, Preparation, Characterization and Photocatalytic Activity of Multifunctional Fe3O4/ZnO/CuO Hybrid Nanoparticles, Materials Science Forum, vol. 827, pp. 37-42, 2015
Yu, Spin dynamics in annealed Mn-doped ZnO ceramic materials, Solid State Communications, vol. 144, p. 134–137, 2007
Online since: May 2007
Authors: Jian Hua Liu, Jun Xiu Shi, Song Mei Li, Jun Lan Yi
This could lead the materials to severe galvanic corrosion.
Materials and Methods Ti-1023, 30CrMnSiA and LY12 sheets were used as test material.
In A4 and B4 galvanic couples, each Ēg of A4 and B4 couple was between the two Eoc of the materials involved in the couples.
For the anodized Ti-1023 alloy, chemical inert oxide coating also improve the corrosion resistance of the materials.
References [1] M.E.El-Dahshan, A.M.Shams El Din and H.H.Haggag: Desalination Vol. 142(2002), p.161-169 [2] F.E.Varela, Y.Kurata, N.Sanada: Corrosion Science Vol. 39(1997), p.775-788 [3] E.O.Ezugwu, J.Bonney, Y.Yamane: Journal of Materials Processing Technology Vol. 134(2003), p. 233-253 [4] R.R.Boyer: Materials Science and Engineering Vol.
Materials and Methods Ti-1023, 30CrMnSiA and LY12 sheets were used as test material.
In A4 and B4 galvanic couples, each Ēg of A4 and B4 couple was between the two Eoc of the materials involved in the couples.
For the anodized Ti-1023 alloy, chemical inert oxide coating also improve the corrosion resistance of the materials.
References [1] M.E.El-Dahshan, A.M.Shams El Din and H.H.Haggag: Desalination Vol. 142(2002), p.161-169 [2] F.E.Varela, Y.Kurata, N.Sanada: Corrosion Science Vol. 39(1997), p.775-788 [3] E.O.Ezugwu, J.Bonney, Y.Yamane: Journal of Materials Processing Technology Vol. 134(2003), p. 233-253 [4] R.R.Boyer: Materials Science and Engineering Vol.