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Online since: October 2011
Authors: Xiu Hong Xu, Jia Lei Xiao, Bi Xian Zhang, Hong Tao Li, Yong Cai Lai, Wan Li
Analysis of Fungal Diversity in the Composting by Sequencing of Cloned PCR-Amplified 18S rDNA and Denaturing Gradient Gel Electrophoresis
Wan Li1,a, Xiuhong Xu2,b, Jialei Xiao1,c, Bixian Zhang3,d, Hongtao Li2,e,
Yongcai Lai1,f
1Crop tillage and cultivation institution, Heilongjiang academy of agricultural sciences, Harbin, 150086, China
2College of resources and environment, Northeast agriculture university, Harbin, 150030, China
3Heilongjiang academy of agricultural sciences, Harbin, 150086, China
ahliwan@hotmail.com, bhoward2857@sina.com, cj_l_x@163.com, dzg_2008@163.com, el1h1t1345@yahoo.com.cn, fyame0451@163.com
Keywords: Compost, Fungi, Diversity, DGGE.
Composting was performed based on a conventional method with cattle manure and rice straw as materials.
Rice straw which was used as organic materials difficult to be decomposed, was air-dried and cut into 10–20 mm lengths[11].The size of the compost pile was approximately 150 cm long, 150 cm wide, and 120 cm high.
Journal of Applied Microbiology. 95 (2003) 934.
Composting was performed based on a conventional method with cattle manure and rice straw as materials.
Rice straw which was used as organic materials difficult to be decomposed, was air-dried and cut into 10–20 mm lengths[11].The size of the compost pile was approximately 150 cm long, 150 cm wide, and 120 cm high.
Journal of Applied Microbiology. 95 (2003) 934.
Online since: September 2011
Authors: Yun Long Yang, Xue Yang, Ji Ming Liu
Material and methods
Equipment and technological process.The BAF reactor included two parts: anoxic reactor and aerobic reactor .All were made of plexiglass, Each had effective capacity of 2.8L (Fig. 1).
Fig. 1 The Technics Flow Chart of BAF 1 - pump 2 - Heater 3 - Temperature Controller 4 - diffuser 5 – head water tank 6 - return pump also as a backwash 7 - Low water tank 8 - lift pump 9 - anoxic reactor 10 - aerobic reactor 11 – Ceramic 12 - Cushion 13 - Intake 14 - outlet 15 - sampling ports Materials.Test water came from a coking plant wastewater treatment station in Taiyuan City.
COD removal rate enhauces.But as the reflux ratio increases, hydraulic load increases dramatically, accelerates the biofilm updates, and makes the filter material between the interception and loss of biofilm easier, resulting in a drop of COD removal rate.
Fig.6 The concentration and removal efficiency of COD in each reactor of BAF under the optimal condition Acknowledgements This work was financially supported by the Shanxi Science and Technology Breakthrough Projects (2007031104-2).
Taiyuan: Taiyuan University of Technology,2002 [10] SHEN Jinyou,SHEN Jinyou,WANG Lianjun et al.Kinetics of COD Removal in a Biological Aerated Filter in the Presence of 2,4,6-Trinitrophenol (Picric Acid).Chinese Journal of Chemical Engineering, 17(6) 1021—1026 (2009)
Fig. 1 The Technics Flow Chart of BAF 1 - pump 2 - Heater 3 - Temperature Controller 4 - diffuser 5 – head water tank 6 - return pump also as a backwash 7 - Low water tank 8 - lift pump 9 - anoxic reactor 10 - aerobic reactor 11 – Ceramic 12 - Cushion 13 - Intake 14 - outlet 15 - sampling ports Materials.Test water came from a coking plant wastewater treatment station in Taiyuan City.
COD removal rate enhauces.But as the reflux ratio increases, hydraulic load increases dramatically, accelerates the biofilm updates, and makes the filter material between the interception and loss of biofilm easier, resulting in a drop of COD removal rate.
Fig.6 The concentration and removal efficiency of COD in each reactor of BAF under the optimal condition Acknowledgements This work was financially supported by the Shanxi Science and Technology Breakthrough Projects (2007031104-2).
Taiyuan: Taiyuan University of Technology,2002 [10] SHEN Jinyou,SHEN Jinyou,WANG Lianjun et al.Kinetics of COD Removal in a Biological Aerated Filter in the Presence of 2,4,6-Trinitrophenol (Picric Acid).Chinese Journal of Chemical Engineering, 17(6) 1021—1026 (2009)
Online since: September 2014
Authors: Chao Lu, Shang Feng Pan, Yi Bo Peng
Remanufacturing of used machine tool is the best "green manufacturing" model to maximize the use of raw materials, energy and to reduce environmental pollution [2,3].
The interactions between nodes is shown in Table 1: Table 1 Interactions between some nodes Parent node Child nodes Cost saving Option one, Option two, Option three, Material saving, Energy saving Time saving Option one, Option two, Option three Gas emission Option one, Option two, Option three Using the ANP calculation software "Super Decision" developed by the U.S.
Acknowledgements This work was financially supported by the National Science and Technology Major Project Funded projects of “high-end CNC machine tools and basic manufacturing equipment” —Research of Heavy Machine Tool Reliability Evaluation and Testing Method(2014ZX04037001).
Remanufacturing and recycling economy.Beijing: Science Press, 2007
Journal of Cleaner Production, 2012,(20): 82-91
The interactions between nodes is shown in Table 1: Table 1 Interactions between some nodes Parent node Child nodes Cost saving Option one, Option two, Option three, Material saving, Energy saving Time saving Option one, Option two, Option three Gas emission Option one, Option two, Option three Using the ANP calculation software "Super Decision" developed by the U.S.
Acknowledgements This work was financially supported by the National Science and Technology Major Project Funded projects of “high-end CNC machine tools and basic manufacturing equipment” —Research of Heavy Machine Tool Reliability Evaluation and Testing Method(2014ZX04037001).
Remanufacturing and recycling economy.Beijing: Science Press, 2007
Journal of Cleaner Production, 2012,(20): 82-91
Online since: June 2014
Authors: Pan Miao
Secondly, the starting point of low-carbon technology innovation is too low, and the level of science and technology overall lags behind.
In order to proceed cleaner production, enterprises need to invest a lot of environmental protection equipment, purchase clean raw materials and use clean energy, which add more burden than enterprises in the same industry who don’t adopt clean production, and the production cost will be higher than the social average cost of similar products.
New energy, new materials bio-medicine, high-end electronic information manufacturing, software and information services, internet and other strategic emerging industries, including culture, education, sports, leisure tourism and other low-carbon industries should be developed vigorously.
Journal of Shandong Institute of Business and Technology, 2010 (8) In Chinese [5] Wenjian Chen, Dong Huang, Analysis about drives and barriers of low-carbon technology innovation in our country [J].
Science and Technology Management Research, 2011 (20) In Chinese [6] Xinmin Tan, The fundamental role of low-carbon culture in the development of low-carbon [J]. 2011 (4) In Chinese
In order to proceed cleaner production, enterprises need to invest a lot of environmental protection equipment, purchase clean raw materials and use clean energy, which add more burden than enterprises in the same industry who don’t adopt clean production, and the production cost will be higher than the social average cost of similar products.
New energy, new materials bio-medicine, high-end electronic information manufacturing, software and information services, internet and other strategic emerging industries, including culture, education, sports, leisure tourism and other low-carbon industries should be developed vigorously.
Journal of Shandong Institute of Business and Technology, 2010 (8) In Chinese [5] Wenjian Chen, Dong Huang, Analysis about drives and barriers of low-carbon technology innovation in our country [J].
Science and Technology Management Research, 2011 (20) In Chinese [6] Xinmin Tan, The fundamental role of low-carbon culture in the development of low-carbon [J]. 2011 (4) In Chinese
Online since: August 2013
Authors: Bing Xia Lin, Ming Guo Deng, Xu Wen Liang
Characteristic Analysis of Texture and Structure of Ores and genesis of Luziyuan Pb-Zn Polimetallic Deposit in Zhenkang, Yunnan, China
Binxia Lin 1,a, Mingguo Deng 1,b, Xuwen Liang 1,c
1,2,3.Faculty of Land and Resource Engineering, Kunming University of Science and Technology, Yunnan, China.
The initial rock forming minerals which form the initial source bed mainly refer to calcite, dolomite and the deposit sediment of basic volcanic material and metal sulfide deposits.
This phase formed by metasomatism in the sedimentary diagenetic period bedded ore body occurred in situ, because of the addition of new material late, ore material composition change, but the bedded ore body shape remains the same, roughly formation dissolution metasomatism and metasomatic residual structure.
The stage is influenced by regional tectonic movement.The tectonic activity provides a favorable fluid channel for ore-forming, while it make material exchange between surrounding rock and ore-forming fluid[3,6].
Earth Science-Journal of China University of Geosciences, in China. 2005, 30(2):177-186
The initial rock forming minerals which form the initial source bed mainly refer to calcite, dolomite and the deposit sediment of basic volcanic material and metal sulfide deposits.
This phase formed by metasomatism in the sedimentary diagenetic period bedded ore body occurred in situ, because of the addition of new material late, ore material composition change, but the bedded ore body shape remains the same, roughly formation dissolution metasomatism and metasomatic residual structure.
The stage is influenced by regional tectonic movement.The tectonic activity provides a favorable fluid channel for ore-forming, while it make material exchange between surrounding rock and ore-forming fluid[3,6].
Earth Science-Journal of China University of Geosciences, in China. 2005, 30(2):177-186
Online since: February 2011
Authors: Jing Min Li, Jin Yao, Wei He, Yan Ting Ni
An Systematic Modeling and Simulation Study on WIP Optimization
in Semiconductor Assembly And Test Factory
Yanting Ni, JingMin Li, Wei He, Jin Yao
School of Manufacturing Science and Engineering, Sichuan University,China
Keywords: Semiconductor Assembly and Test; Work in Process; Simulation; Throughput; Cycle Time
Abstract.
Simulation model conceptual Design In this paper, WIP control essentially study two critical functions for production control and management: tracking WIP status in a defined time effectively and promptly controlling raw material flows into production floor within right time.
this step, can analyze single station WIP through the simulator and direct raw material release action, especially adapted for constrain station, to avoid the starvation and overbuild happened, to effective utilize the constrain station capacity with inventory control.
This research is sponsored by Science and Technology Bureau of Sichuan Province, grants No. 2009GZ0159.
References 1.Yeong-Dae Kim, Dong-Ho Lee, and Jung-Ug Kim, “A Simulation Study on Lot Release Control.Mask Scheduling, and Batch Scheduling in Semiconductor Wafer Fabrication Facilities”Journal of Manu/acturing Systems(1998) 2.
Simulation model conceptual Design In this paper, WIP control essentially study two critical functions for production control and management: tracking WIP status in a defined time effectively and promptly controlling raw material flows into production floor within right time.
this step, can analyze single station WIP through the simulator and direct raw material release action, especially adapted for constrain station, to avoid the starvation and overbuild happened, to effective utilize the constrain station capacity with inventory control.
This research is sponsored by Science and Technology Bureau of Sichuan Province, grants No. 2009GZ0159.
References 1.Yeong-Dae Kim, Dong-Ho Lee, and Jung-Ug Kim, “A Simulation Study on Lot Release Control.Mask Scheduling, and Batch Scheduling in Semiconductor Wafer Fabrication Facilities”Journal of Manu/acturing Systems(1998) 2.
Online since: January 2012
Authors: Zhen Yu Song, Xiao Shan Fang
The Climate-adapted Design for the Hot-humid Region
——Case Study on the University Library in the Lingnan Region
1Fang Xiaoshan and 2Song Zhenyu
1School of Architecture, South China University of Technology , State Key Laboratory of Sub-tropical Architecture Science, Guangzhou,China
2Architecture Design and Research Institute of South China University of Technology, State Key Laboratory of Sub-tropical Architecture Science , Guangzhou, China
E-mail: xshfang@scut.edu.cn, zhysong@scut.edu.cn
Keywords- Hot-humid Climate; Lingnan Region; University Library; Climate-adapted Design, Case Study
Abstract.
The fact means that the university libraries’ construction cost more raw materials and energy, and these university libraries need more energy for the air-conditioning system and artificial lighting system in future use.
Due to the current global energy crisis, energy-saving construction and conservation of materials and resources is particularly urgent, especially in the development and promotion of ecological construction technology.
Proceedings of the 1st International Conference on Building Energy an Environment, Dalian, China. pp.838-845 [2] LinXiande, August 2003, Green Building In Hot-humid Climate, First Copy, Zhans Publisher (Taiwan), pp. 130, pp. 134, pp. 148 [3] TangGuohua, June 2005, The Humid-hot Climate in Lingnan Region and the Traditional Architecture, First Copy, Architecture Industry Publisher in China, pp. 4, pp. 10 [4] HanJihong, JiangYan, October 2005, The Example of the Ecological Office Building in Shanghai, First Copy, Architecture Industry Publisher in China, pp.8 [5] Songzhenyu, June 2006, The Ecology-library Design for the Hot-humid Climate in Lingnan Region, Master Degree Lecture in SCUT, pp.13- 33 [6] Zeng Zhi-hui; Lu Qi; Guo Peng-fei,December 2009,Measurement and Analysis of Thermal Environment in Foshan Donghuali Dwellings,Journal of Guangdong University of Technology,pp.70-74 Photo 1: University libraries at the Guangzhou Island Campus (Source: photos were taken by writers
The fact means that the university libraries’ construction cost more raw materials and energy, and these university libraries need more energy for the air-conditioning system and artificial lighting system in future use.
Due to the current global energy crisis, energy-saving construction and conservation of materials and resources is particularly urgent, especially in the development and promotion of ecological construction technology.
Proceedings of the 1st International Conference on Building Energy an Environment, Dalian, China. pp.838-845 [2] LinXiande, August 2003, Green Building In Hot-humid Climate, First Copy, Zhans Publisher (Taiwan), pp. 130, pp. 134, pp. 148 [3] TangGuohua, June 2005, The Humid-hot Climate in Lingnan Region and the Traditional Architecture, First Copy, Architecture Industry Publisher in China, pp. 4, pp. 10 [4] HanJihong, JiangYan, October 2005, The Example of the Ecological Office Building in Shanghai, First Copy, Architecture Industry Publisher in China, pp.8 [5] Songzhenyu, June 2006, The Ecology-library Design for the Hot-humid Climate in Lingnan Region, Master Degree Lecture in SCUT, pp.13- 33 [6] Zeng Zhi-hui; Lu Qi; Guo Peng-fei,December 2009,Measurement and Analysis of Thermal Environment in Foshan Donghuali Dwellings,Journal of Guangdong University of Technology,pp.70-74 Photo 1: University libraries at the Guangzhou Island Campus (Source: photos were taken by writers
Online since: April 2010
Authors: Yong Ho Sohn, N. Garimella, H.J. Choi
Sohn1,c
1
Advanced Materials Processing and Analysis Center, Department of Mechanical, Materials and
Aerospace Engineering, University of Central Florida, Orlando, Florida, 32816, U.S.A.
Acknowledgement Financial support from CAREER Award of National Science Foundation (DMR-0238356) is gratefully acknowledged.
Any opinion, findings and conclusions or recommendations expressed in this manuscript are those of the authors and do not necessarily reflect the view of the National Science Foundation.
Sohn: Journal of Phase Equilibria Vol. 30 (2009), p. 246
Acknowledgement Financial support from CAREER Award of National Science Foundation (DMR-0238356) is gratefully acknowledged.
Any opinion, findings and conclusions or recommendations expressed in this manuscript are those of the authors and do not necessarily reflect the view of the National Science Foundation.
Sohn: Journal of Phase Equilibria Vol. 30 (2009), p. 246
Online since: June 2012
Authors: Iwanori Murakami, Kou Yamada, Yoshinori Ando, Muhammad Awis Qurni Nor Aziz
References
[1] Masato Enokizono, Construction of Development Technology of Next Generation Applied Electromagnetic Machinery in Japan, Materials Science Forum, Vol.670 (2010), pp.51-59
[2] Yohji Okada, Hidetoshi Miyazawa, Ryou Kondo, Masato Enokizono, Proposal of Flux Concentrated Radial and Axial Magnetic Bearings, Materials Science Forum, Vol.670 (2010), pp.435-446
[3] A.
Nor Aziz, et al., Development of Magnetic Gear Device: Design and Performance Test for Cylindrical Magnetic Gear, Journal of JSAEM vol.18, NO.3 (2010), pp.257-262, (in Japanese) [10] Y.
Nor Aziz, et al., Development of Magnetic Gear Device: Design and Performance Test for Cylindrical Magnetic Gear, Journal of JSAEM vol.18, NO.3 (2010), pp.257-262, (in Japanese) [10] Y.
Online since: January 2013
Authors: Hua Liu, Hua Guang Li, Qiu Zhen Zhao
The Effects of ligustrazine on the Expression of Bax protein and Cytochrome C Following Focal Cerebral Ischemia/Reperfusion Injury in Rats
Qiuzhen Zhao1, a, Hua Liu2,b and Huaguang Li 3,c
1Office of Students Affairs, Hebei North University; Zhangjiakou, Hebei Province, 075000, China
2 Life Science Research Center, Hebei North University; Zhangjiakou, Hebei Province, 075000, China
3 Department of Orthopaedics, the First Affiliated Hospital of HeBei North University, Zhangjiakou, 07500, China
awuwu965@yahoo.com.cn, blh_teacher@163.com, clhg_doctor@163.com
Keywords: CIR; ligustrazine; Hippocampus; hybridization in situ
Abstract.
Materials Main materials.
The protocols were conducted in accordance with Guidance Suggestions for the Care and Use of Laboratory Animals, formulated by the Ministry of Science and Technology of China.
Modern Journal of Integrated Chinese Traditional and Western Medicine,2009,18(14):1598-9
Materials Main materials.
The protocols were conducted in accordance with Guidance Suggestions for the Care and Use of Laboratory Animals, formulated by the Ministry of Science and Technology of China.
Modern Journal of Integrated Chinese Traditional and Western Medicine,2009,18(14):1598-9