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Online since: March 2021
Authors: Mohd Azrul Hisham Ismail, Siti Hajar Noor Shaarani, Saiful Nizam Tajuddin, Mohd Syafik Mohamad Hamdan
Materials and Method
Plant Material and Growth Condition.
T., Zulkefeli, M., Khan, S., Agarwood Production - A Multidisciplinary Field to be Explored in Bangladesh, International Journal of Pharmaceutical and Life Sciences. 2(1) (2013) 22-32
[2] Mohamed, Rozi., Jong, Phai., Abd Kudus, Kamziah., Fungal inoculation induces agarwood in young Aquilaria malaccensis trees in the nursery, Journal of Forestry Research. 25 (2014) 201-204
[7] Naef, R., The volatile and semi-volatile constituents of agarwood, the infected heartwood of Aquilaria species: A review, Flavour and Fragrance Journal. 26 (2011) 73–87
Grassland Soil, Soil Science Society of America Journal. 53 (1989) 800–805
T., Zulkefeli, M., Khan, S., Agarwood Production - A Multidisciplinary Field to be Explored in Bangladesh, International Journal of Pharmaceutical and Life Sciences. 2(1) (2013) 22-32
[2] Mohamed, Rozi., Jong, Phai., Abd Kudus, Kamziah., Fungal inoculation induces agarwood in young Aquilaria malaccensis trees in the nursery, Journal of Forestry Research. 25 (2014) 201-204
[7] Naef, R., The volatile and semi-volatile constituents of agarwood, the infected heartwood of Aquilaria species: A review, Flavour and Fragrance Journal. 26 (2011) 73–87
Grassland Soil, Soil Science Society of America Journal. 53 (1989) 800–805
Online since: May 2012
Authors: Yan Li, Xin Yan Lin, Zhang Yan
Eqs.(1)-(4) furnish a system of differential equations which can be solved only associating with the contitutive laws of the materials and with the bond-slip relationship by means of various numerical techniques..
Constitutive Law of Materials Concrete in Tension The mechanical behavior of the concrete in tension prior to cracking is assumed to be linear elastic.
Journal of Structural Engineering, 124(9): 1041-1049(1998)
Journal of Composites for Construction, 4(4): 164-171(2000)
Journal of Building Structures, 31(1):33-40(2010).
Constitutive Law of Materials Concrete in Tension The mechanical behavior of the concrete in tension prior to cracking is assumed to be linear elastic.
Journal of Structural Engineering, 124(9): 1041-1049(1998)
Journal of Composites for Construction, 4(4): 164-171(2000)
Journal of Building Structures, 31(1):33-40(2010).
Online since: November 2010
Authors: Su Qin Li, Yun Fei Xiong, Xue Zhang, Ayijamali Kudureti
Study on removal of NH4+-N by zero-valent iron (ZVI or Fe0) in advanced coking wastewater treatment
Suqin LI1,2, a, Yunfei XIONG3,b, Xue ZHANG2,c, Ayijamali.kudureti2,d
1 School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing ,100083, China
2 Key Laboratory of Ecology & Circulating Metallurgy, National Ministry of Education, Beijing, 100083, China
3 School of Chemistry Engineering, Nangjing University of Technologies, Nanjing, 210000, China
a ecolp@sina.com, bxyf_tx@hotmail.com, c carol19860415@163.com, Ayjamal2010@126.com
Keywords: Nano/micro-sized ZVI (Fe0), Removal of nitrogen, Adsorption and coagulation, Advanced treatment of coking wastewater
Abstract: In this study, the feasibility of a new chemical agent named zero-valent iron (ZVI or Fe0) was used to investigate for removal of NH4+-N from coking wastewater.
This study, preparation and characterization of Fe0, and applied in coking wastewater treatment were discussed. 2 Materials and methods 2.1 chemical s Table 1 The chemical reagents Name Purity NaBH4 (A.R.),98% FeSO4.7H2O (A.R.),99.0~100% N2 (A.R.)
Journal of Hazardous Materials 156 (2008) 17–22 [10] A.H.
Journal of Hazardous Materials B135 (2006) 112–121 [14] Kai-Sung Wang, Chiou-LiangLin, Ming-ChiWeid, et al.
Journal of Hazardous Materials 1(2010):1-10 [15] C.E.Noradoun,I.E.Cheng,EDTA degradation induced by oxygen activation in a zero-valent iron/air/water system, Environ.
This study, preparation and characterization of Fe0, and applied in coking wastewater treatment were discussed. 2 Materials and methods 2.1 chemical s Table 1 The chemical reagents Name Purity NaBH4 (A.R.),98% FeSO4.7H2O (A.R.),99.0~100% N2 (A.R.)
Journal of Hazardous Materials 156 (2008) 17–22 [10] A.H.
Journal of Hazardous Materials B135 (2006) 112–121 [14] Kai-Sung Wang, Chiou-LiangLin, Ming-ChiWeid, et al.
Journal of Hazardous Materials 1(2010):1-10 [15] C.E.Noradoun,I.E.Cheng,EDTA degradation induced by oxygen activation in a zero-valent iron/air/water system, Environ.
Online since: May 2010
Authors: Ping Lu, Wei Bo Huang, Hui Shi, Li Zhu
Experimental
Materials.
References [1] S Yoon, K Wang, W Weiss, et al.: ACI Materials Journal Vol. 97 (2000), p. 637-644
[3] Lu Ping, Chen Guohua and Huang Weibo: Polymer Materials and Engineering Vol. 23 (2007), p. 55-58
[5] Yu Hongfa, Sun Wei and Ma Haiyan: Journal of Southeast University (Natural Science Edition) Vol. 32 (2002), p. 638-642
[7] Zhong Shi-yun,Chen Zhi-yuan: Joural of Building Materials Vol. 1 (2002), p. 225-229.
References [1] S Yoon, K Wang, W Weiss, et al.: ACI Materials Journal Vol. 97 (2000), p. 637-644
[3] Lu Ping, Chen Guohua and Huang Weibo: Polymer Materials and Engineering Vol. 23 (2007), p. 55-58
[5] Yu Hongfa, Sun Wei and Ma Haiyan: Journal of Southeast University (Natural Science Edition) Vol. 32 (2002), p. 638-642
[7] Zhong Shi-yun,Chen Zhi-yuan: Joural of Building Materials Vol. 1 (2002), p. 225-229.
Online since: August 2013
Authors: Xian Bin Zhang, Da Quan Huang, En Cui Guan, Cui Xue Ma, Zheng Song Qiu
Materials and methods
Materials
Sulfonated drilling wastewater.
(In Chinese) [2] Min Yang, Yanming Wang and Dongsheng Wang: The Chinese Journal of Process Engineering Vol. 2 (2002), p. 283-288.
(In Chinese) [3] Hongyan Zhang, Ronghu Lv and Shaohui Guo: The Chinese Journal of Process Engineering Vol. 7 (2007), p. 718-722.
Swaminathan: Solar Energy Materials and Solar Cells Vol. 89(2005), p. 61-74
Huang: Journal of Hazardous Materials Vol. 162(2009), p. 1211-1216
(In Chinese) [2] Min Yang, Yanming Wang and Dongsheng Wang: The Chinese Journal of Process Engineering Vol. 2 (2002), p. 283-288.
(In Chinese) [3] Hongyan Zhang, Ronghu Lv and Shaohui Guo: The Chinese Journal of Process Engineering Vol. 7 (2007), p. 718-722.
Swaminathan: Solar Energy Materials and Solar Cells Vol. 89(2005), p. 61-74
Huang: Journal of Hazardous Materials Vol. 162(2009), p. 1211-1216
Online since: March 2013
Authors: Jing Wu Zheng, Liang Qiao, Li Qiang Jiang, Yao Ying, Zi He, Wei Cai, Si Yuan Chen
Low Resistivity Aluminium Alloy of High Tensile Strength and Elongation
Zheng Jing-wu1,a, He Zi2,b, Cai Wei, Chen Si-yuan,Qiao Liang *, Ying Yao, Jiang Li-qiang3,a
1,2,3College of Chemical Engineering and Materials Science, Zhejiang University of Technology, Hangzhou 310014, P.
Consequently, this study aim to add trace amounts of alloying elements on the basis of commercial aluminum to improve the strength of commercial aluminum, on the other hand, its excellent conductivity and elongation are still reserved. 1 Experimental materials and method The commercial aluminum (Al≥99.7%, Fe≤0.12%, Si≤0.08%, the rest≤0.1%) which the tensile strength was 72MPa, the elongation was 36% and the resistivity was 2.751×10-8Ω·m was taken as the raw materials, and the desired aluminum alloy samples was obtained by weighing, melting and casting the experimental materials in turn.
[6] L P Wang, F W Kang, E J Guo, X Y Zhang, Roles of Single Rare Earths Ce, La and Mischmetal in Commercial Pure Aluminum, Journal of the Chinese Society of Rare Earths. 2003, 21(2): 218-220
[7] G S Fu, F S Sun, L Y Ren, W Z Chen, K W Qian, Modification Behavior of Trace Rare Earth on Impurity Phases in Commercial Pure Aluminum, Journal of the Chinese Society of Rare Earths, 2001,19(2): 133-137
[10] S H Liu, G Q Wang, A M Wu, H W Gao, C M Li, Effects of rare earth elements on electrical conductivity of industrial aluminum, The Chinese Journal of Nonferrous Metals. 2000, 10(3): 335-339
Consequently, this study aim to add trace amounts of alloying elements on the basis of commercial aluminum to improve the strength of commercial aluminum, on the other hand, its excellent conductivity and elongation are still reserved. 1 Experimental materials and method The commercial aluminum (Al≥99.7%, Fe≤0.12%, Si≤0.08%, the rest≤0.1%) which the tensile strength was 72MPa, the elongation was 36% and the resistivity was 2.751×10-8Ω·m was taken as the raw materials, and the desired aluminum alloy samples was obtained by weighing, melting and casting the experimental materials in turn.
[6] L P Wang, F W Kang, E J Guo, X Y Zhang, Roles of Single Rare Earths Ce, La and Mischmetal in Commercial Pure Aluminum, Journal of the Chinese Society of Rare Earths. 2003, 21(2): 218-220
[7] G S Fu, F S Sun, L Y Ren, W Z Chen, K W Qian, Modification Behavior of Trace Rare Earth on Impurity Phases in Commercial Pure Aluminum, Journal of the Chinese Society of Rare Earths, 2001,19(2): 133-137
[10] S H Liu, G Q Wang, A M Wu, H W Gao, C M Li, Effects of rare earth elements on electrical conductivity of industrial aluminum, The Chinese Journal of Nonferrous Metals. 2000, 10(3): 335-339
Online since: November 2015
Authors: Shi Yun Zhong, Pei Ming Wang, Yong Cai
Influence of Coagulation of Polymer Dispersion on the Properties of Polymer-modified Mortar
Yong Cai a, Peiming Wang b *, Shiyun Zhong c
Key Laboratory of Advanced Civil Engineering Materials of Ministry of Education, School of Materials Science and Engineering, Tongji University, Shanghai 201804, China
acaiyong0814@126.com, btjwpm@126.com, csyzhong@tongji.edu.cn
* Corresponding author
Keywords: coagulation; polymer dispersion; polymer-modified mortar; mechanical property;
Abstract.
Introduction Polymer dispersions (or latex dispersions) are commonly used in the modification of cement materials.
Experiment part Raw materials and their properties Cement PII 52.5 is provided by Nanjing Onoda Cement Co., Ltd.
Kardon, Polymer-modified concrete: Review, Journal Of Materials In Civil Engineering 9(2)(1997)85-92
Pilvin, Mechanical behaviour of polymer modified mortars, Materials Science and Engineering. 380 (2004) 1-8
Introduction Polymer dispersions (or latex dispersions) are commonly used in the modification of cement materials.
Experiment part Raw materials and their properties Cement PII 52.5 is provided by Nanjing Onoda Cement Co., Ltd.
Kardon, Polymer-modified concrete: Review, Journal Of Materials In Civil Engineering 9(2)(1997)85-92
Pilvin, Mechanical behaviour of polymer modified mortars, Materials Science and Engineering. 380 (2004) 1-8
Online since: January 2005
Authors: P. Shi, Li Shan Cui, Da Zhi Yang
China
2
Department of Materials Science and Engineering, University of Petroleum, Beijing, 102200, P.
Introduction The composites incorporating SMA in structural materials possess the characteristics of functional and structural materials with the exhibition of some smart behaviors.
Taya, Materials Trans.
Furuya et al, Smart Structures and Materials 1993, Smart Materials, SPIE, Vol. 1916 (1993), p. 373
McCoy, Journal of Sound and Vibration, Vol. 140 (1990), p. 437
Introduction The composites incorporating SMA in structural materials possess the characteristics of functional and structural materials with the exhibition of some smart behaviors.
Taya, Materials Trans.
Furuya et al, Smart Structures and Materials 1993, Smart Materials, SPIE, Vol. 1916 (1993), p. 373
McCoy, Journal of Sound and Vibration, Vol. 140 (1990), p. 437
Online since: August 2016
Authors: Salina Sabudin, Sudirman Sahid, Shirin Ibrahim, Nor Shahida Kader Bashah, Zul Hazmi Hussin, Muhamad Anas Marzuke
Advanced Materials Centre (AMREC) SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3,
Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia.
Generally the microporosity is necessary to achieve excellent osteoinductivity for the MCP materials and also promoted the material resorption and bone substitute in vivo [7].
This MCP believe will prove to be promising for bone repair materials.
Khalid, Porous Hydroxyapatite for Artificial Bone Applications, Science and Technology of Advanced Materials. 8 (2007)116-123
Tan and X Huang, Porous calcium phosphate ceramic modified with PLGA-bioactive glass, Materials Science and Engineering C. vol 27 (2) (2007), 274-279
Generally the microporosity is necessary to achieve excellent osteoinductivity for the MCP materials and also promoted the material resorption and bone substitute in vivo [7].
This MCP believe will prove to be promising for bone repair materials.
Khalid, Porous Hydroxyapatite for Artificial Bone Applications, Science and Technology of Advanced Materials. 8 (2007)116-123
Tan and X Huang, Porous calcium phosphate ceramic modified with PLGA-bioactive glass, Materials Science and Engineering C. vol 27 (2) (2007), 274-279
Online since: August 2008
Authors: Gobwute Rujijanagul, K. Wongjinda, P. Tammakun, Arnon Chaipanich, Nittaya Jaitanong
An important approach for making functional composites
is to bring together two or more different materials [1].
The importance of many-phase system in material science and technology is still growing.
Cement, such as Portland cement, has long been used as structural materials.
Xu: Ferroelectric Materials and Their Applications (North-Holland, USA, 1991)
Yang: Journal of Wuhan University of Technology.
The importance of many-phase system in material science and technology is still growing.
Cement, such as Portland cement, has long been used as structural materials.
Xu: Ferroelectric Materials and Their Applications (North-Holland, USA, 1991)
Yang: Journal of Wuhan University of Technology.