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Online since: January 2012
Authors: Ke Jie Fu, Li Sheng Yang, Chang Sheng Feng, Liang Chen
Research on Detecting Tris-(2,3-dibromopropyl)-phosphate in Textiles with the HPLC/DAD Method
Kejie FU1, a, Lisheng YANG1, b Changsheng FENG1, c and Liang CHEN2, d
1Ningbo Entry-exit Inspection and Quarantine Bureau, Zhejiang 315192, China
2College of Biological & Environmental Sciences, Zhejang Wanli University, Zhejiang, 315100, China
afkjciq@gmail.coml, byls0204nb@yahoo.com.cn, cyx.fengcs@nbciq.gov.cn, dchliang88@vip.163.com
Keywords: Textile; Tris-(2,3-dibromopropyl)-phosphate; Flame retardant; Detecting; HPLC/DAD
Abstract.
The relative standard (RSD) of 6 analyses of a 20 µg/ml TRIS reference material was 3.2%, indicating the method has a higher precision.
Henrich, Chronic Toxicity and Carcinogenic Potential of Tris-(1,3-Dichloro-2-propyl) Phosphate in Sprague-Dawley Rat, International Journal of Toxicology. 19 (2000) 119-125
[4] Levchik SV, Weil ED, A review of recent progress in phosphorus-based flame retardants, Journal of Fire Science. 24 (2006) 345-364
Rodriguez-Amaya, Confirmation of the identity of the carotenoids of tropical fruits by HPLC-DAD and HPLC-MS, Journal of Food Composition and Analysis. (2004) 385-396.
The relative standard (RSD) of 6 analyses of a 20 µg/ml TRIS reference material was 3.2%, indicating the method has a higher precision.
Henrich, Chronic Toxicity and Carcinogenic Potential of Tris-(1,3-Dichloro-2-propyl) Phosphate in Sprague-Dawley Rat, International Journal of Toxicology. 19 (2000) 119-125
[4] Levchik SV, Weil ED, A review of recent progress in phosphorus-based flame retardants, Journal of Fire Science. 24 (2006) 345-364
Rodriguez-Amaya, Confirmation of the identity of the carotenoids of tropical fruits by HPLC-DAD and HPLC-MS, Journal of Food Composition and Analysis. (2004) 385-396.
Online since: November 2011
Authors: Kai Li, Hong Xi Wang, Feng Qin
After defining the element types and material properties, we mesh the gear model, and add displacement constraints on it.
Acknowledgements This work is supported by Shaanxi Science and Technology Department of China, with the supported number No.S2011GY1051, and Xi'an Science Technology Bureau of China, with the supported number No.CXY1017(5).
Chinese Journal of Mechanical Engineering, 2004(08), Vol.40 No.8:24–29
Journal of Harbin Institute of Technology.
Journal of ShangHai JiaoTong University.
Acknowledgements This work is supported by Shaanxi Science and Technology Department of China, with the supported number No.S2011GY1051, and Xi'an Science Technology Bureau of China, with the supported number No.CXY1017(5).
Chinese Journal of Mechanical Engineering, 2004(08), Vol.40 No.8:24–29
Journal of Harbin Institute of Technology.
Journal of ShangHai JiaoTong University.
Online since: December 2012
Authors: Xiao Feng Li, Hua Yin
Zhang: Highway landscape learns (China Building Materials Press, China 2004), p.16
Wu: Journal of Ningxia Agricultural College Vol.3 (2002) No.5, p.68
Jin: Liaoning Forestry Science and Technology Vol.1 (2001) No.2, p.40
Cheng: Journal of Landscape Research Vol.4 (2012) No.3, p.1
Zhang: Journal of Xi'an University of Architecture and Technology (Natural Science Edition) Vol.43 (2011) No.2, p.101.
Wu: Journal of Ningxia Agricultural College Vol.3 (2002) No.5, p.68
Jin: Liaoning Forestry Science and Technology Vol.1 (2001) No.2, p.40
Cheng: Journal of Landscape Research Vol.4 (2012) No.3, p.1
Zhang: Journal of Xi'an University of Architecture and Technology (Natural Science Edition) Vol.43 (2011) No.2, p.101.
Online since: January 2019
Authors: Chanida Ruangsiriwattanakul
Materials and Methods
Many researchers observed that, the integration of wireless sensor network in agriculture is the concept which leads to monitoring the environment for agriculture.
[5] M.Mafuta, M.Zennaro, A.Bagula, G.Ault, H.Gombachika and T.Chadza, Successful Deployment of a Wireless Sensor Network for Precision Agriculture in Malawi, International Journal of Distributed Sensor Networks, Volume 2013, pp. 1-13
[7] A.Salleh, M.K.Ismail, N.R.Mohamad, M.Z.A Abd Aziz, M.A.Othman and M.H.Misran, Development of Greenhouse Monitoring using Wireless Sensor Network through ZigBee Technology, International Journal of Engineering Science Invention, Volume 2, Issue 7, July 2013, pp.06-12
An online coffee ordering system on a mobile device, Master of Computer Science, Bangkok University, Bangkok, 2017
[12] T.Alhmiedat, A Survey on Environmental Monitoring Systems using Wireless Sensor Networks, Journal of Networks, Vol. 10, No. 11, November 2015, pp. 606-615
[5] M.Mafuta, M.Zennaro, A.Bagula, G.Ault, H.Gombachika and T.Chadza, Successful Deployment of a Wireless Sensor Network for Precision Agriculture in Malawi, International Journal of Distributed Sensor Networks, Volume 2013, pp. 1-13
[7] A.Salleh, M.K.Ismail, N.R.Mohamad, M.Z.A Abd Aziz, M.A.Othman and M.H.Misran, Development of Greenhouse Monitoring using Wireless Sensor Network through ZigBee Technology, International Journal of Engineering Science Invention, Volume 2, Issue 7, July 2013, pp.06-12
An online coffee ordering system on a mobile device, Master of Computer Science, Bangkok University, Bangkok, 2017
[12] T.Alhmiedat, A Survey on Environmental Monitoring Systems using Wireless Sensor Networks, Journal of Networks, Vol. 10, No. 11, November 2015, pp. 606-615
Online since: August 2013
Authors: Xiao Chun Zhang, Yan Chen, Nan Tong Zhang, Hua Rong Wang
The similar materials of three rocks (Sandstone, mudstone, sandy mudstone) were made of alumina cement, Portland cement, barite powder, gypsum and paraffin in a mixing ratio.
The similar materials selected were proved to met the requirements of similar design basically by the experiment.
Huainan: Anhui University of Science and Technology, 2005.in Chinese [3] Hongchang Li.
Research on similar material of slope simulation experiment [J].
Technologies and research status of similar model test of soil materials [J].
The similar materials selected were proved to met the requirements of similar design basically by the experiment.
Huainan: Anhui University of Science and Technology, 2005.in Chinese [3] Hongchang Li.
Research on similar material of slope simulation experiment [J].
Technologies and research status of similar model test of soil materials [J].
Online since: September 2011
Authors: Shui Tai Xu, Sheng Yi Wang, Jian Ping Pan
The reinforcement method is to add textile in the tailing dam material.
With the rapid development of geotextile material, it is possible to reinforce tailings dam.
In order to prevent the liquefied tailings promoting shell material to flow downstream, the rock pressure was put outside the dam.
Science Foundation of Jiangxi University of Science and Technology (2008) and the Science Foundation of Jiangxi University of Science and Technology (2009), China.
[5] Xianjing KONG, Jianping PAN and Degao ZOU: Journal of Dalian University of Technology, Vol. 48(2008), p. 0541-0545, in Chinese
With the rapid development of geotextile material, it is possible to reinforce tailings dam.
In order to prevent the liquefied tailings promoting shell material to flow downstream, the rock pressure was put outside the dam.
Science Foundation of Jiangxi University of Science and Technology (2008) and the Science Foundation of Jiangxi University of Science and Technology (2009), China.
[5] Xianjing KONG, Jianping PAN and Degao ZOU: Journal of Dalian University of Technology, Vol. 48(2008), p. 0541-0545, in Chinese
Online since: October 2013
Authors: Hong Xin Zhao, Zhang Fu Yuan, Yan Wu, Shu Qing Li, Tao Qi, Li Na Wang, Yi Fang Pan
Fettling materials are added from the furnace mouth and spread on the serious erosion places for the big facet areas.
The serious erosion part in the middle campaign life is section of the trunnion (4.5, 90 ~ 270), gunning is used to make materials felted and solidified on trunnion position.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (No. 51174008, 21106167, 51104140) , Postdoctoral Science Foundation of China(2012M510552, 2013T60175) and the Project of Tianjin Science and Technology Commission (07ZCKFGXD3800).
Li, Investigation of Novel Method to Recycling CO2 for Slag Splashing in Converter, Journal of Iron and Steel Research International, 17(2010), No.12, p.12
Yang, Research of BOF protection technology by slag splashing, Materials Science Forum, (2009), No.1, p.45
The serious erosion part in the middle campaign life is section of the trunnion (4.5, 90 ~ 270), gunning is used to make materials felted and solidified on trunnion position.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (No. 51174008, 21106167, 51104140) , Postdoctoral Science Foundation of China(2012M510552, 2013T60175) and the Project of Tianjin Science and Technology Commission (07ZCKFGXD3800).
Li, Investigation of Novel Method to Recycling CO2 for Slag Splashing in Converter, Journal of Iron and Steel Research International, 17(2010), No.12, p.12
Yang, Research of BOF protection technology by slag splashing, Materials Science Forum, (2009), No.1, p.45
Online since: August 2013
Authors: Jian Ying Feng, Dong Tian, Shi Ze Lu, Ze Tian Fu
Materials and Methods
Emergy diagram for protected grape production system.
Chen: Communications in Nonlinear Science and Numerical Simulation Vol.14 (2009), p.946 (In Chinese)
Cavallaro: Journal of Cleaner Production Vol.16 (2008), p.1907
Li: Journal of Northwest A&F University (Nat.
Ruan: Ecology and Environmental Sciences Vol.18 (2009), p.2230 (In Chinese).
Chen: Communications in Nonlinear Science and Numerical Simulation Vol.14 (2009), p.946 (In Chinese)
Cavallaro: Journal of Cleaner Production Vol.16 (2008), p.1907
Li: Journal of Northwest A&F University (Nat.
Ruan: Ecology and Environmental Sciences Vol.18 (2009), p.2230 (In Chinese).
Online since: October 2014
Authors: Wei Tan, Xuan Liu
While a cloud service depends on its material basis, named manufacturing resource, its strength directly affect the strength of the cloud service based on it.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China under Grant No. 61070092, the National Natural Science Foundation of China under Grant No. 51175187, Guangdong Province Science and technology plan project under Grant No. 2008B010400018 and Science and technology project in Dongguan under Grant No. 201010814015.
Telecommunications Science 2013, 2:43-50
JOURNAL OF MANUFACTURING SYSTEMS, 2013, 32(4):564-579
CHINESE JOURNAL OF COMPUTERS, 2008, 31(8):1340-1353
Acknowledgements This work was financially supported by the National Natural Science Foundation of China under Grant No. 61070092, the National Natural Science Foundation of China under Grant No. 51175187, Guangdong Province Science and technology plan project under Grant No. 2008B010400018 and Science and technology project in Dongguan under Grant No. 201010814015.
Telecommunications Science 2013, 2:43-50
JOURNAL OF MANUFACTURING SYSTEMS, 2013, 32(4):564-579
CHINESE JOURNAL OF COMPUTERS, 2008, 31(8):1340-1353
Online since: August 2013
Authors: Wei Peng, Jian Guo, Wei Chang Gan, Ding Yu Jiang, Bing Nan Sun
With the development of computer science and compute technology, the numerical simulation method has lots of advantages in research field of structural wind engineering, and it is more flexible, efficient and accurate in structure form selection and multi-load-–condition simulation.
The structure of slender long-span bridges under strong wind tend to present the geometric and material nonlinearity characteristics, sometimes it can’t reveal real features of the structure based on frequency-domain analysis, Thus, only the analysis method based on time-domain can carry on the comparatively accurate result of in numerical simulation of interaction of wind and structure.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (No.50808160, 51178429) References [1] Gu, M: SCIENCE CHINA-TECHNOLOGICAL SCIENCES Vol. 12(2012),p. 3334-3343 [2] Li Y, Kareem A:Journal of Wind Engineering & Industrial Aerodynamics Vol.36(1990), p .415-427
[4] Yongle Li,Shuhua Zhou,Sizhong Qiang:China Civil Engineering Journal Vol.36(2003),p.60-65.
(In Chinese) [5] Hongying Cao,Haifan Xiang,Yi Zhou:China Civil Engineering Journal Vol.36(2003),p60-65 (In Chinese) [6] He X F, Moaveni B, Conte J P, etc:Computer-Aided Vivil and Infrastructure Engineering Vol.23(2008),p.373-388.
The structure of slender long-span bridges under strong wind tend to present the geometric and material nonlinearity characteristics, sometimes it can’t reveal real features of the structure based on frequency-domain analysis, Thus, only the analysis method based on time-domain can carry on the comparatively accurate result of in numerical simulation of interaction of wind and structure.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (No.50808160, 51178429) References [1] Gu, M: SCIENCE CHINA-TECHNOLOGICAL SCIENCES Vol. 12(2012),p. 3334-3343 [2] Li Y, Kareem A:Journal of Wind Engineering & Industrial Aerodynamics Vol.36(1990), p .415-427
[4] Yongle Li,Shuhua Zhou,Sizhong Qiang:China Civil Engineering Journal Vol.36(2003),p.60-65.
(In Chinese) [5] Hongying Cao,Haifan Xiang,Yi Zhou:China Civil Engineering Journal Vol.36(2003),p60-65 (In Chinese) [6] He X F, Moaveni B, Conte J P, etc:Computer-Aided Vivil and Infrastructure Engineering Vol.23(2008),p.373-388.