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Online since: May 2012
Authors: Yun Jiang Yu, Qiong Wang, Zhong Ren Nan, Yan Ping Zhang, Hai Peng Lin, Sheng Li Wang
Materials and Methods
Sampling Region and Location.
Michopoulos: Journal of Hazardous Materials, Vol. 140(2007),p. 389-398
Kumar: Journal of Hazardous Materials, Vol. 179 (2010),p.1084-1095
Park: Journal of Hazadous Materials, Vol. 184 (2010), p.406-416
Zhang: Journal of Environmental Science.
Michopoulos: Journal of Hazardous Materials, Vol. 140(2007),p. 389-398
Kumar: Journal of Hazardous Materials, Vol. 179 (2010),p.1084-1095
Park: Journal of Hazadous Materials, Vol. 184 (2010), p.406-416
Zhang: Journal of Environmental Science.
Online since: October 2013
Authors: Fei Wang, Tiao Kun Fu, Ji Hua Li, Qing Huang Wang, He Huang, Xiao Yi Wei, Li Hong Cui, Yi Hong Wang
Cellulose is a fibrous material of plant origin and the basis of all natural and man-made cellulosic fibers, such as cotton, bagasse and pineapple.
Experiments Materials.
Further studies will focused on the application of cellulose extracted from pineapple leaf, for example, face mask and functional materials.
H. and Wang F., Development of natural nano-cellulose from tropical agriculture products, Journal of Cellulose Science and Technology, 2013, 21(1), 78-85
Luangpituksa, Extraction and application of dietary fiber and cellulose from pineapple cores, Journal of Food Science, 2002, 67(4), 1308-1313
Experiments Materials.
Further studies will focused on the application of cellulose extracted from pineapple leaf, for example, face mask and functional materials.
H. and Wang F., Development of natural nano-cellulose from tropical agriculture products, Journal of Cellulose Science and Technology, 2013, 21(1), 78-85
Luangpituksa, Extraction and application of dietary fiber and cellulose from pineapple cores, Journal of Food Science, 2002, 67(4), 1308-1313
Online since: September 2013
Authors: Tao Jiang, Ying Ding, Yong Shen
Experiment
Materials.
Byranvand: International Journal of Materials Research, Vol.103 (2012) No.3, p.347
Zong: Rare Metal Materials and Engineering, Vol.39 (2010) No.36, p.33.
Yang: Journal of Materials Chemistry, Vol.22 (2012) No.32, p.1306.
Liu: Shandong Textile Science, Vol.01 (2006) No.1, p.12.
Byranvand: International Journal of Materials Research, Vol.103 (2012) No.3, p.347
Zong: Rare Metal Materials and Engineering, Vol.39 (2010) No.36, p.33.
Yang: Journal of Materials Chemistry, Vol.22 (2012) No.32, p.1306.
Liu: Shandong Textile Science, Vol.01 (2006) No.1, p.12.
Online since: October 2013
Authors: Hong Chen, Jian Wang, Zhi Qing Yuan
China
4School of Packaging and Materials Engineering, Hunan University of Technology, Zhuzhou, Hunan, 412007, P.R.
Introduction Low-density polyethylene film is an important packaging materials because it is nontoxic and inexpensive.
For packaging materials, both high tenacity and barrier property are usually needed for protecting commodities before using.
Experimental Materials Low-density polyethylene resin was purchased from Maoming petroleum ethylene Corporation of China.
Crosby, Designing Bio-Inspired Adhesives for Shear Loading: From Simple Structures to Complex Patterns, Advanced Functional Materials. 22 (2012) 4985-4992
Introduction Low-density polyethylene film is an important packaging materials because it is nontoxic and inexpensive.
For packaging materials, both high tenacity and barrier property are usually needed for protecting commodities before using.
Experimental Materials Low-density polyethylene resin was purchased from Maoming petroleum ethylene Corporation of China.
Crosby, Designing Bio-Inspired Adhesives for Shear Loading: From Simple Structures to Complex Patterns, Advanced Functional Materials. 22 (2012) 4985-4992
Online since: January 2013
Authors: Bao Xiang Jiao, Xu Wang, Xia Zhang, Meng Ting Li
Introduction
TiO2 and ZnO are both important functional materials, which have a common application in many areas, such as microwave absorbing and photocatalytic, etc.
Chinese Journal of Catalysis,2003,24(3), 175.
Journal of Applied Physics,2001,90( 11) : 5564
[7] Yang ping,Song Chunfeng,Lu Mengkai,et al.Materials Science and Engineering,2002, 90(2): 99-102
Journal of Rare Earths,2001,17( 4):242.
Chinese Journal of Catalysis,2003,24(3), 175.
Journal of Applied Physics,2001,90( 11) : 5564
[7] Yang ping,Song Chunfeng,Lu Mengkai,et al.Materials Science and Engineering,2002, 90(2): 99-102
Journal of Rare Earths,2001,17( 4):242.
Online since: April 2022
Authors: Ju Song Zhang, Xi Luan, Xiao Ning Chen
Materials Guide, 2016(9):110-114.
]the cracking and low strength of ceramsite foam concrete has been a profound major problem in the foam concrete industry for a long time.
(1)The ratio of raw materials: sludge(10%, 20%, 30%)oil sludge(30%, 40%, 50%) (2)Sintering temperature:(1120, 1160, 1200) (3)Sintering time:(10min, 20min, 30min) 2.4.2.
Journal of Nanchang University (Engineering Science Edition). 2007, 29(2): 175-180
Journal of Nanchang University (Engineering Science Edition). 2007, 29(2): 175-180. ]in which the ceramsite content was 45%, the fly ash content was 15%, 20% and 25% respectively, and the hydrogel ratio was 0.55,0.6 and 0.65 respectively.
Table 2 Base mix ratio of ceramsite foam concrete Raw materials Cement[ Kg] Fly ash [Kg] Ceramsite[ Kg] water[Kg] Foaming agent [L] quality 2.1 0.9 1.9 1.9 2.8 3.
(1)The ratio of raw materials: sludge(10%, 20%, 30%)oil sludge(30%, 40%, 50%) (2)Sintering temperature:(1120, 1160, 1200) (3)Sintering time:(10min, 20min, 30min) 2.4.2.
Journal of Nanchang University (Engineering Science Edition). 2007, 29(2): 175-180
Journal of Nanchang University (Engineering Science Edition). 2007, 29(2): 175-180. ]in which the ceramsite content was 45%, the fly ash content was 15%, 20% and 25% respectively, and the hydrogel ratio was 0.55,0.6 and 0.65 respectively.
Table 2 Base mix ratio of ceramsite foam concrete Raw materials Cement[ Kg] Fly ash [Kg] Ceramsite[ Kg] water[Kg] Foaming agent [L] quality 2.1 0.9 1.9 1.9 2.8 3.
Online since: October 2011
Authors: Yue Gang Tan, Li Wei, Ting Ting Hu
In other words, the grating needn't stickup, which can avoid reflection wave chirp or multi-peaks phenomenon when the grating area is fixed. (2) FBG is pasted on elastic medium, including different combinations of simple supported beam, cantilever beam of different materials with mass block and electromagnetic damping[7-13], in order to improve the sensitivity of sensor and the stability of signal detection and extend bandwidth of measuring frequency.
In consequence, beryllium bronze with high elastic modulus and density is selected as elastomer's material.
Journal of Optoelectronics.laser,2002,13(4):420-430
[4] Rujiao Sun,Limin Sun,etc.Design Research of Fiber Bragg Grating Accelerometer[J].Journal of photons,2007,36(1):63-67
[14] Hiroshi Tsuda.Ultrasound and damage detection in CFRP using fiber bragg grating sensors[J].Composites Science and Technology,2006,5(66):676-683
In consequence, beryllium bronze with high elastic modulus and density is selected as elastomer's material.
Journal of Optoelectronics.laser,2002,13(4):420-430
[4] Rujiao Sun,Limin Sun,etc.Design Research of Fiber Bragg Grating Accelerometer[J].Journal of photons,2007,36(1):63-67
[14] Hiroshi Tsuda.Ultrasound and damage detection in CFRP using fiber bragg grating sensors[J].Composites Science and Technology,2006,5(66):676-683
Online since: March 2015
Authors: Yun Ding, Yong Guang Yin
Development of the Detection System and Pretreatments of the Materials
2.1 Development of the system
Based on machine vision technology, a rapid automatic detection system is developed by us (see Fig. 1b), and also the operating software for windows is developed by using C++ language.
Fig. 1 Hardware organization and design of the rapid automatic detection system. 2.2 Pretreatments of the materials The viable bacteria in drinking water are selected to be the detection object.
Innovative Food Science & Emerging Technologies, 2005, 6: 183-188
Journal of Food Engineering, 2008, 86: 234-242
Journal of Microbiological Methods, 2005, 60: 335-342.
Fig. 1 Hardware organization and design of the rapid automatic detection system. 2.2 Pretreatments of the materials The viable bacteria in drinking water are selected to be the detection object.
Innovative Food Science & Emerging Technologies, 2005, 6: 183-188
Journal of Food Engineering, 2008, 86: 234-242
Journal of Microbiological Methods, 2005, 60: 335-342.
Online since: August 2011
Authors: Dong Gao, Yong Lu, Jian Guang Li, Feng Zhou
Ertekin: Journal of Materials Processing Technology, 2000, 105(3) : 407~420
[4] R.
Jouko: International Journal of Machine Tools & Manufacture, 2000, 40(10): 1119~1213 [5] T.
Shen: Journal of Shanxi University of Science & Technology. 2009, (27): 80~83 [7] H.
Yao: Key Engineering Materials. 2006, 315/316: 71~75 [8] X.
Li: PhD thesis, Huazhong University of Science and Technology, China, 2006
Jouko: International Journal of Machine Tools & Manufacture, 2000, 40(10): 1119~1213 [5] T.
Shen: Journal of Shanxi University of Science & Technology. 2009, (27): 80~83 [7] H.
Yao: Key Engineering Materials. 2006, 315/316: 71~75 [8] X.
Li: PhD thesis, Huazhong University of Science and Technology, China, 2006