Jiangsu(PDF/288KB)
Total Page:16
File Type:pdf, Size:1020Kb
Load more
Recommended publications
-
Service Summary
COSCO SHIPPING TRANSPACIFIC SERVICE OVERVIEW Service Summary 23 SERVICE LINES cover 161 PORT PAIRS since 1st. April, 2017 * Including COSCO SHIPPING Out-Alliance Service Lines PSW/PNW/AWE SERVICE LINE OVERVIEW PSW Service Summary 12 Far-east to Southwest Coast of America Service lines Cover 61 Port Pairs CEN (COSCO)* AAC (COSCO) AAC2 (CMA+EMC) AAC3 (COSCO+WHL+PIL)** AAC4 (OOCL) Service 6 X 10000 6 X 10000 6 X 9000 6 X 8500 5 X 7800 Port ETB Port ETB Port ETB Port ETB Port ETB XINGANG 0 DALIAN 0 QINGDAO 0 QINGDAO 0 NINGBO 0 QINGDAO 3 LIANYUNGANG 1 SHANGHAI 2 SHANGHAI 2 SHANGHAI 1 SHANGHAI 5 SHANGHAI 4 NINGBO 4 NINGBO 3 PUSAN 4 Port Load of Port NINGBO 6 PRINCE RUPERT 17 LONG BEACH 20 LONG BEACH 18 LONG BEACH 17 LONG BEACH 16 LONG BEACH 22 SEATTLE 28 OAKLAND 23 OAKLAND 22 PUSAN 33 OAKLAND 27 DALIAN 42 TOKYO 38 QINGDAO 42 NINGBO 35 XINGANG 42 NAGOYA 39 QINGDAO 42 Port Discharge of Port *The details of all the services will be optimized further. ** COSCO SHIPPING’s Out-Alliance Service Lines PSW Service Summary 12 Far-east to Southwest Coast of America Service lines Cover 61 Port Pairs AAS (OOCL) AAS2 (CMA) AAS3 (EMC) AAS4 (EMC) Service 6 X 9000 6 X 14000 6 X 6500 6 X 7000 Port ETB Port ETB Port ETB Port ETB CAI MEP 0 FUQING 0 TAIPEI 0 YANTIAN 0 SHEKOU 3 NANSHA 2 XIAMEN 3 HONG KONG 1 HONG KONG 3 HONG KONG 3 SHEKOU 4 KAOHSIUNG 3 Port of Load Port YANTIAN 4 YANTIAN 4 YANTIAN 5 TAIPEI 4 KAOHSIUNG 6 XIAMEN 6 LONG BEACH 19 LONG BEACH 20 LONG BEACH 20 LONG BEACH 18 KAOHSIUNG 38 OAKLAND 25 OAKLAND 24 OAKLAND 22 CAI MEP 42 FUQING 42 TAIPEI 42 -
Investigation on Relationships Between Optical Properties and Cell Concentrations of Microalgae Zhaoming Zhou Montana Tech
Montana Tech Library Digital Commons @ Montana Tech Graduate Theses & Non-Theses Student Scholarship Spring 2018 Investigation on Relationships between Optical Properties and Cell Concentrations of Microalgae Zhaoming Zhou Montana Tech Follow this and additional works at: https://digitalcommons.mtech.edu/grad_rsch Part of the Geophysics and Seismology Commons Recommended Citation Zhou, Zhaoming, "Investigation on Relationships between Optical Properties and Cell Concentrations of Microalgae" (2018). Graduate Theses & Non-Theses. 149. https://digitalcommons.mtech.edu/grad_rsch/149 This Publishable Paper is brought to you for free and open access by the Student Scholarship at Digital Commons @ Montana Tech. It has been accepted for inclusion in Graduate Theses & Non-Theses by an authorized administrator of Digital Commons @ Montana Tech. For more information, please contact [email protected]. Investigation on Relationships between Optical Properties and Cell Concentrations of Microalgae by Zhaoming Zhou A thesis submitted in partial fulfillment of the requirements for the degree of Master of Science in Geophysical Engineering Montana Tech 2018 ii Abstracts Biofuel from microalgae is a very promising renewable energy resource. Growth of microalgae depends on ambient temperature, appropriate nutrients in water, and light condition for photosynthesis. As microalgae grow, the depth of light penetration decreases and the growing conditions at depth deteriorate. Monitoring of microalgae concentration during their growing phase is imperative to ensure efficiency in biomass production. Conventionally, cell concentration (number of cells per unit volume) of microalgae solution is estimated by taking images of samples under microscope and then counted and estimated using the Metallized Hemacytometer Hausser Bright-Linewe (MHHBL) method developed by Hausser Scientific. This method of measuring cell concentration of microalgal solution is time consuming and can be performed only in the laboratory. -
Kūnqǔ in Practice: a Case Study
KŪNQǓ IN PRACTICE: A CASE STUDY A DISSERTATION SUBMITTED TO THE GRADUATE DIVISION OF THE UNIVERSITY OF HAWAI‘I AT MĀNOA IN PARTIAL FULFILLMENT OF THE REQUIREMENTS FOR THE DEGREE OF DOCTOR OF PHILOSOPHY IN THEATRE OCTOBER 2019 By Ju-Hua Wei Dissertation Committee: Elizabeth A. Wichmann-Walczak, Chairperson Lurana Donnels O’Malley Kirstin A. Pauka Cathryn H. Clayton Shana J. Brown Keywords: kunqu, kunju, opera, performance, text, music, creation, practice, Wei Liangfu © 2019, Ju-Hua Wei ii ACKNOWLEDGEMENTS I wish to express my gratitude to the individuals who helped me in completion of my dissertation and on my journey of exploring the world of theatre and music: Shén Fúqìng 沈福庆 (1933-2013), for being a thoughtful teacher and a father figure. He taught me the spirit of jīngjù and demonstrated the ultimate fine art of jīngjù music and singing. He was an inspiration to all of us who learned from him. And to his spouse, Zhāng Qìnglán 张庆兰, for her motherly love during my jīngjù research in Nánjīng 南京. Sūn Jiàn’ān 孙建安, for being a great mentor to me, bringing me along on all occasions, introducing me to the production team which initiated the project for my dissertation, attending the kūnqǔ performances in which he was involved, meeting his kūnqǔ expert friends, listening to his music lessons, and more; anything which he thought might benefit my understanding of all aspects of kūnqǔ. I am grateful for all his support and his profound knowledge of kūnqǔ music composition. Wichmann-Walczak, Elizabeth, for her years of endeavor producing jīngjù productions in the US. -
Produzent Adresse Land Allplast Bangladesh Ltd
Zeitraum - Produzenten mit einem Liefertermin zwischen 01.01.2020 und 31.12.2020 Produzent Adresse Land Allplast Bangladesh Ltd. Mulgaon, Kaliganj, Gazipur, Rfl Industrial Park Rip, Mulgaon, Sandanpara, Kaligonj, Gazipur, Dhaka Bangladesh Bengal Plastics Ltd. (Unit - 3) Yearpur, Zirabo Bazar, Savar, Dhaka Bangladesh Durable Plastic Ltd. Mulgaon, Kaligonj, Gazipur, Dhaka Bangladesh HKD International (Cepz) Ltd. Plot # 49-52, Sector # 8, Cepz, Chittagong Bangladesh Lhotse (Bd) Ltd. Plot No. 60 & 61, Sector -3, Karnaphuli Export Processing Zone, North Potenga, Chittagong Bangladesh Plastoflex Doo Branilaca Grada Bb, Gračanica, Federacija Bosne I H Bosnia-Herz. ASF Sporting Goods Co., Ltd. Km 38.5, National Road No. 3, Thlork Village, Chonrok Commune, Konrrg Pisey, Kampong Spueu Cambodia Powerjet Home Product (Cambodia) Co., Ltd. Manhattan (Svay Rieng) Special Economic Zone, National Road 1, Sangkat Bavet, Krong Bavet, Svaay Rieng Cambodia AJS Electronics Ltd. 1st Floor, No. 3 Road 4, Dawei, Xinqiao, Xinqiao Community, Xinqiao Street, Baoan District, Shenzhen, Guangdong China AP Group (China) Co., Ltd. Ap Industry Garden, Quetang East District, Jinjiang, Fujian China Ability Technology (Dong Guan) Co., Ltd. Songbai Road East, Huanan Industrial Area, Liaobu Town, Donggguan, Guangdong China Anhui Goldmen Industry & Trading Co., Ltd. A-14, Zongyang Industrial Park, Tongling, Anhui China Aold Electronic Ltd. Near The Dahou Viaduct, Tianxin Industrial District, Dahou Village, Xiegang Town, Dongguan, Guangdong China Aurolite Electrical (Panyu Guangzhou) Ltd. Jinsheng Road No. 1, Jinhu Industrial Zone, Hualong, Panyu District, Guangzhou, Guangdong China Avita (Wujiang) Co., Ltd. No. 858, Jiaotong Road, Wujiang Economic Development Zone, Suzhou, Jiangsu China Bada Mechanical & Electrical Co., Ltd. No. 8 Yumeng Road, Ruian Economic Development Zone, Ruian, Zhejiang China Betec Group Ltd. -
Appendix 1: Rank of China's 338 Prefecture-Level Cities
Appendix 1: Rank of China’s 338 Prefecture-Level Cities © The Author(s) 2018 149 Y. Zheng, K. Deng, State Failure and Distorted Urbanisation in Post-Mao’s China, 1993–2012, Palgrave Studies in Economic History, https://doi.org/10.1007/978-3-319-92168-6 150 First-tier cities (4) Beijing Shanghai Guangzhou Shenzhen First-tier cities-to-be (15) Chengdu Hangzhou Wuhan Nanjing Chongqing Tianjin Suzhou苏州 Appendix Rank 1: of China’s 338 Prefecture-Level Cities Xi’an Changsha Shenyang Qingdao Zhengzhou Dalian Dongguan Ningbo Second-tier cities (30) Xiamen Fuzhou福州 Wuxi Hefei Kunming Harbin Jinan Foshan Changchun Wenzhou Shijiazhuang Nanning Changzhou Quanzhou Nanchang Guiyang Taiyuan Jinhua Zhuhai Huizhou Xuzhou Yantai Jiaxing Nantong Urumqi Shaoxing Zhongshan Taizhou Lanzhou Haikou Third-tier cities (70) Weifang Baoding Zhenjiang Yangzhou Guilin Tangshan Sanya Huhehot Langfang Luoyang Weihai Yangcheng Linyi Jiangmen Taizhou Zhangzhou Handan Jining Wuhu Zibo Yinchuan Liuzhou Mianyang Zhanjiang Anshan Huzhou Shantou Nanping Ganzhou Daqing Yichang Baotou Xianyang Qinhuangdao Lianyungang Zhuzhou Putian Jilin Huai’an Zhaoqing Ningde Hengyang Dandong Lijiang Jieyang Sanming Zhoushan Xiaogan Qiqihar Jiujiang Longyan Cangzhou Fushun Xiangyang Shangrao Yingkou Bengbu Lishui Yueyang Qingyuan Jingzhou Taian Quzhou Panjin Dongying Nanyang Ma’anshan Nanchong Xining Yanbian prefecture Fourth-tier cities (90) Leshan Xiangtan Zunyi Suqian Xinxiang Xinyang Chuzhou Jinzhou Chaozhou Huanggang Kaifeng Deyang Dezhou Meizhou Ordos Xingtai Maoming Jingdezhen Shaoguan -
Association Between Blood Glucose Levels in Insulin Therapy And
Association between blood glucose levels in insulin therapy and Glasgow Outcome Score in patients with traumatic brain injury: secondary analysis of a randomized trial Tao Yuan Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Hongyu He Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Yuepeng Liu Center for clinical research and translational medicine, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Jianwei Wang Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Xin Kang Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Guanghui Fu Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Fangfang Xie Department of Neurosurgery, the aliated Lianyungang Oriental Hospital of Xuzhou Medical University Aimin Li Lianyungang No 1 People's Hospital Jun Chen Lianyungang No 1 People's Hospital Wen-xue Wang ( [email protected] ) Department of Neurosurgery,the aliated Lianyungang Oriental Hospital of Xuzhou Medical University https://orcid.org/0000-0002-9865-6811 Research Article Keywords: Traumatic brain injuries, Glasgow Outcome Score, hyperglycaemia, insulin therapy Posted Date: June 14th, 2021 DOI: https://doi.org/10.21203/rs.3.rs-615839/v1 Page 1/18 License: This work is licensed under a Creative Commons Attribution 4.0 International License. Read Full License Page 2/18 Abstract Background: Too high or low blood glucose levels after traumatic brain injury (TBI) negatively affect the prognosis of patients with TBI. This study aimed to examine the relationship between different levels of blood glucose in insulin therapy and Glasgow Outcome Score (GOS) in patients with TBI. -
Paper Formatting Instructions
Characterizing the Deep Pumping-induced Subsidence Against Metro Tunnel Using Vertically Distributed Fiber-Optic Sensing Yunxiao Xin Nanjing University Xiaozhao Li ( [email protected] ) Nanjing University https://orcid.org/0000-0002-7049-8989 Wei Zhang Nanjing University Qi Wang Geo-engineering Investigation Institute of Jiangsu Province Research Article Keywords: Deep pumping, Differential settlement, Metro tunnel, Distributed ber-optic sensing (DFOS), Space-time matrix Posted Date: March 17th, 2021 DOI: https://doi.org/10.21203/rs.3.rs-168411/v1 License: This work is licensed under a Creative Commons Attribution 4.0 International License. Read Full License Characterizing the deep pumping-induced subsidence against metro tunnel using vertically distributed fiber-optic sensing Xin Yunxiao1, Li Xiaozhao1*, Zhang Wei1, Wang Qi2 1. School of Earth Sciences and Engineering, Nanjing University, 163 Xianlin Avenue, Nanjing, 210023, China 2. Geo-engineering Investigation Institution of Jiangsu Province, 17 Meilin Street, Nanjing, 211101, China Corresponding Author: Li Xiaozhao Professor, Ph.D. supervisor, School of Earth Sciences and Engineering, Nanjing University, No. 163 Xianlin Avenue, Nanjing, 210023, PR China Email: [email protected] 1 Abstract: Continuous pumping of groundwater will induce uneven ground settlement, which 2 may adversely affect the nearby metro tunnels. In this paper, taking Nantong Metro Line 1 3 crossing Nantong Port Water Plant as an example, the surface level measurement and 4 subsurface deformation monitoring using vertically distributed fiber-optic sensing are 5 implemented to acquire the surface and subsurface settlement of emergency water supply 6 conditions. The fiber optic cable vertically buried in the constant-temperature layer is used to 7 measure the subsurface strain field and deduce the deformation amount of each stratum. -
SGS-Safeguards 04910- Minimum Wages Increased in Jiangsu -EN-10
SAFEGUARDS SGS CONSUMER TESTING SERVICES CORPORATE SOCIAL RESPONSIILITY SOLUTIONS NO. 049/10 MARCH 2010 MINIMUM WAGES INCREASED IN JIANGSU Jiangsu becomes the first province to raise minimum wages in China in 2010, with an average increase of over 12% effective from 1 February 2010. Since 2008, many local governments have deferred the plan of adjusting minimum wages due to the financial crisis. As economic results are improving, the government of Jiangsu Province has decided to raise the minimum wages. On January 23, 2010, the Department of Human Resources and Social Security of Jiangsu Province declared that the minimum wages in Jiangsu Province would be increased from February 1, 2010 according to Interim Provisions on Minimum Wages of Enterprises in Jiangsu Province and Minimum Wages Standard issued by the central government. Adjustment of minimum wages in Jiangsu Province The minimum wages do not include: Adjusted minimum wages: • Overtime payment; • Monthly minimum wages: • Allowances given for the Areas under the first category (please refer to the table on next page): middle shift, night shift, and 960 yuan/month; work in particular environments Areas under the second category: 790 yuan/month; such as high or low Areas under the third category: 670 yuan/month temperature, underground • Hourly minimum wages: operations, toxicity and other Areas under the first category: 7.8 yuan/hour; potentially harmful Areas under the second category: 6.4 yuan/hour; environments; Areas under the third category: 5.4 yuan/hour. • The welfare prescribed in the laws and regulations. CORPORATE SOCIAL RESPONSIILITY SOLUTIONS NO. 049/10 MARCH 2010 P.2 Hourly minimum wages are calculated on the basis of the announced monthly minimum wages, taking into account: • The basic pension insurance premiums and the basic medical insurance premiums that shall be paid by the employers. -
Taizhou Bridge (China)
Project information Taizhou Bridge (China) Project description mageba scope Highlights & facts The Taizhou Yangtze River Bridge links mageba supplied TENSA®MODULAR ex- the cities of Taizhou, Zhenjiang, and pansion joints for each end, each with 18 mageba Products: Changzhou across Asia’s longest river. At individual gaps and facilitating movements Type: TENSA®MODULAR the point where the bridge is located, the of up to 1,440 mm. expansion joints (LR18), river has a width of approximately 2.1 km. A ROBO®CONTROL permanent “Ad- ROBO®CONTROL In order to minimize impacts on river flow vanced” SHM system was also supplied monitoring system and navigation, a three-pylon (two main and installed, to measure deck move- Installation: 2012 span) suspension bridge with spans of ments at the expansion joints. Structure: 390 m, 1,080 m, 1,080 m and 390 m was Measurements to date enabled it to be City: Taizhou proposed. concluded that the movements and rota- Country: China The ambitious construction project repre- tions of the extraordinary bridge’s deck sented the first attempt to create a long- are as expected, and that the exceptional Completed: 2012 span multi-tower suspension bridge, and expansion joints continue to perform very Type: Suspension (3-tower) the bridge won the 2013 Institution of well. Length: 2,940 m Structural Engineers Supreme Award for A new feature, currently being developed, Owner: Jiangsu Taizhou Bridge co., Ltd structural engineering. will also support remote expansion joint Contractor: CCCC SECOND HARBOUR inspections. ENGINEERING COMPANY LTD.,CCCC Second Highway Engineering Co.,Ltd, China Zhongtie Major Bridge Engineering Group Co.,LTD The Taizhou Yangtze River Bridge is located in An 18-gap TENSA®MODULAR expansion joint, al- Installation of the bridge’s ROBO®CONTROL eastern China lowing 1,440 mm of movement, as installed monitoring system beneath an expansion joint South Korea China © 2014 Google Version 2018.06 CH-EN ©mageba mageba sa - Solistrasse 68 - 8180 Bülach - Switzerland - T +41 44 872 40 50 - [email protected]. -
Supplement of a Systematic Examination of the Relationships Between CDOM and DOC in Inland Waters in China
Supplement of Hydrol. Earth Syst. Sci., 21, 5127–5141, 2017 https://doi.org/10.5194/hess-21-5127-2017-supplement © Author(s) 2017. This work is distributed under the Creative Commons Attribution 3.0 License. Supplement of A systematic examination of the relationships between CDOM and DOC in inland waters in China Kaishan Song et al. Correspondence to: Kaishan Song ([email protected]) The copyright of individual parts of the supplement might differ from the CC BY 3.0 License. Figure S1. Sampling location at three rivers for tracing the temporal variation of CDOM and DOC. The average widths at sampling stations are about 1020 m, 206m and 152 m for the Songhua River, Hunjiang River and Yalu River, respectively. Table S1 the sampling information for fresh and saline water lakes, the location information shows the central positions of the lakes. Res. is the abbreviation for reservoir; N, numbers of samples collected; Lat., latitude; Long., longitude; A, area; L, maximum length in kilometer; W, maximum width in kilometer. Water body type Sampling date N Lat. Long. A(km2) L (km) W (km) Fresh water lake Shitoukou Res. 2009.08.28 10 43.9319 125.7472 59 17 6 Songhua Lake 2015.04.29 8 43.6146 126.9492 185 55 6 Erlong Lake 2011.06.24 6 43.1785 124.8264 98 29 8 Xinlicheng Res. 2011.06.13 7 43.6300 125.3400 43 22 6 Yueliang Lake 2011.09.01 6 45.7250 123.8667 116 15 15 Nierji Res. 2015.09.16 8 48.6073 124.5693 436 83 26 Shankou Res. -
1 RIVERBED EVOLUTION of UPPER PART of YANGTZE ESTUARY and ITS RESPONSE to the HYDRODYNAMIC CHANGES at UPSTREAM Yongping Chen1
RIVERBED EVOLUTION OF UPPER PART OF YANGTZE ESTUARY AND ITS RESPONSE TO THE HYDRODYNAMIC CHANGES AT UPSTREAM Yongping Chen1, Ninglin Jiang 2 and Changkuan Zhang3 The riverbed evolution of upper part of Yangtze estuary, Chengtong reach, is analyzed by comparison of 6 sets of bathymetry data during 1977~2011. The significant changes of water depth profiles along 6 representative cross- sections indicate this reach is still in the process of development. In order to get a better understanding of the effect of river discharge at upstream on the riverbed evolution of Chengtong reach, a series of numerical experiments are implemented by specifying different river discharge conditions at the upper boundary. The corresponding discharge ratios of main and secondary channels at 3 main sub-reaches are compared. The results show that with the increase of river discharge, the discharge ratio in the main channels of Fujiangsha sub-reach and Rugaosha sub-reach increases, but it changes to decrease when the upstream river discharge becomes very large; however, the discharge ratio in the main channel of Tongzhousha sub-reach always decreases with the increase of river discharge at upstream. The discharge ratio of secondary channel has an adverse tendency. Keywords: Yangtze estuary; Chengtong reach; riverbed evolution; numerical modeling; upstream discharge INTRODUCTION Yangtze River is the longest river in China and the third longest river in the world. The estuary of Yangtze River starts from Ebizui of Jiangsu Province and reaches the East China Sea by the city of Shanghai. In recent years, the riverbed of Yangtze estuary has exhibited significant changes under the effects of natural evolution and anthropogenic works (Yang et al, 2006; Liu et al, 2007). -
Transportation the Conference Will Be Held in North Zhongshan Road
Transportation The conference will be held in North Zhongshan Road campus of East China Normal University (ECNU). The address is: No. 3663, North Zhongshan Road, Putuo, Shanghai. The hotel where all participants will stay is Yifu Building (逸夫楼) located on the campus. Arrival by flights: There are two airports in Shanghai: the Pudong Airport in east Shanghai and the Hongqiao Airport in west Shanghai. Both are convenient to get to the North Zhongshan Road campus of ECNU. At the airport, you can take taxi or metro to North Zhongshan Road Campus of ECNU. Taxi is recommended in terms of its convenience and time saving. Our students will be there for helping you to find the taxi. By taxi From Pudong Airport: about one hour and 200 CNY when traffic is not busy. From Hongqiao Airport: about 30 minutes and 60 CNY when traffic is not busy. Please print the following tips if you like “请带我去华东师范大学中山北路校区正门” in advance and show it to the taxi driver. The Chinese words in tips mean "Please take me to the main gate of North Zhongshan Road Campus of ECNU". By metro From Pudong Airport: 1. Metro Line 2 (6:00 - 22:00)->Zhongshan Park (中山公园) station (Note: exchange at Guanglan Road station(广兰路)), then take taxi for about 10 minutes and 14 CNY cost to North Zhongshan Road Campus of ECNU, or take the bus 67 for 2 stops and get off at ECNU station(华东师大站)instead. 2. Metro Line 2->Jiangsu Road (江苏路) station-> Metro Line 11->Longde Road (隆德路) station->Metro Line 13-> Jinshajiang Road (金沙江路) Station->10 minutes walk.