Guangdong Project List
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The Functional Structure Convergence of China's Coastal Ports
sustainability Article The Functional Structure Convergence of China’s Coastal Ports Wei Wang 1,2,3, Chengjin Wang 1,* and Fengjun Jin 1 1 Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China; [email protected] (W.W.); [email protected] (F.J.) 2 University of Chinese Academy of Sciences, Beijing 100049, China 3 School of Geography, Beijing Normal University, Beijing 100875, China * Correspondence: [email protected] Received: 6 September 2017; Accepted: 23 November 2017; Published: 28 November 2017 Abstract: Functional structure is an important part of a port system, and can reflect the resource endowments and economic development needs of the hinterland. In this study, we investigated the transportation function of coastal ports in China from the perspective of cargo structure using a similarity coefficient. Our research considered both adjacent ports and hub ports. We found that the transportation function of some adjacent ports was very similar in terms of outbound structure (e.g., Qinhuangdao and Huanghua) and inbound structure (e.g., Huanghua and Tangshan). Ports around Bohai Bay and the port group in the Yangtze River Delta were the most competitive areas in terms of outbound and inbound structure, respectively. The major contributors to port similarity in different regions varied geographically due to the different market demands and cargo supplies. For adjacent ports, the functional convergence of inbound structure was more serious than the outbound. The convergence between hub ports was more serious than between adjacent ports in terms of both outbound and inbound structure. The average similarity coefficients displayed an increasing trend over time. -
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 -
Printmgr File
THIS DOCUMENT IS IN DRAFT FORM, INCOMPLETE AND SUBJECT TO CHANGE. THE INFORMATION IN THIS DOCUMENT MUST BE READ IN CONJUNCTION WITH THE SECTION HEADED “WARNING” ON THE COVER OF THIS DOCUMENT. SUMMARY This summary is intended to give you an overview of the information contained in this document. Since it is a summary, it does not contain all the information that may be important to you. You should read this document in its entirety before you decide whether to invest in the [REDACTED]. OVERVIEW We are a leading large-scale private higher education and vocational education group in South China, offering applied science-focused and practice-oriented programs. As of October 31, 2019, we had an aggregate of 40,627 students enrolled at our three schools, namely Huali College, Huali Vocational College and Huali Technician College. According to the Frost & Sullivan Report, by the end of 2018, as measured by student enrollment, we ranked second among all private vocational education service providers in South China and ranked fourth among all private higher education service providers in South China. Our schools offer private higher education and private vocational education in a wide range of fields in applied sciences with an aim to prepare our students with the necessary knowledge base, skill sets and accreditations to secure jobs and pursue careers in particular professions, trades and industries. We have designed our curricula with a distinct emphasis on practical, job-oriented content for a variety of majors that are in demand by potential employers in the Pearl River Delta. We conduct employer surveys and on-going research on industry trends and market demand and seek to continuously improve our major offerings and curricula to respond to the changing needs of the job markets. -
Analysis of CO2 Emission in Guangdong Province, China
Feasibility Study of CCUS-Readiness in Guangdong Province, China (GDCCSR) Final Report: Part 1 Analysis of CO2 Emission in Guangdong Province, China GDCCSR-GIEC Team March 2013 Authors (GDCCSR-GIEC Team) Daiqing Zhao Cuiping Liao Ying Huang, Hongxu Guo Li Li, Weigang Liu (Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, China) For comments or queries please contact: Prof. Cuiping Liao [email protected] Announcement This is the first part of the final report of the project “Feasibility Study of CCS-Readiness in Guangdong (GDCCSR)”, which is funded by the Strategic Programme Fund of the UK Foreign & Commonwealth Office joint with the Global CCS Institute. The report is written based on published data mainly. The views in this report are the opinions of the authors and do not necessarily reflect those of the Guangzhou Institute of Energy Conversion, nor of the funding organizations. The complete list of the project reports are as follows: Part 1 Analysis of CO2 emission in Guangdong Province, China. Part 2 Assessment of CO2 Storage Potential for Guangdong Province, China. Part 3 CO2 Mitigation Potential and Cost Analysis of CCS in Power Sector in Guangdong Province, China. Part 4 Techno-economic and Commercial Opportunities for CCS-Ready Plants in Guangdong Province, China. Part 5 CCUS Capacity Building and Public Awareness in Guangdong Province, China Part 6 CCUS Development Roadmap Study for Guangdong Province, China Analysis of CO2 Emission in Guangdong Province Contents Background for the Report .........................................................................................2 -
Exploring Coordinative Mechanisms for Environmental Governance in Guangdong-Hong Kong-Macao Greater Bay Area: an Ecology of Games Framework
sustainability Article Exploring Coordinative Mechanisms for Environmental Governance in Guangdong-Hong Kong-Macao Greater Bay Area: An Ecology of Games Framework Wenjie Zhou and Rui Mu * Faculty of Humanities and Social Sciences, Dalian University of Technology, Dalian 116024, China; [email protected] * Correspondence: [email protected]; Tel.: +86-0411-8470-7479 Received: 15 May 2019; Accepted: 30 May 2019; Published: 3 June 2019 Abstract: To solve regional environmental problems, there is a trend of establishing urban agglomerations and formulating cooperative policy institutions in China. The extant studies on policy institutions largely focus on the coordinative mechanisms of multiple actors within one single institution. Only a few studies have tried to understand how different policy institutions are interlinked and mutually affected to influence actors’ decisions and problem resolutions. This article applies a network-based analytical approach and adopts the Ecology of Games Framework to explore how regional environmental governance is coordinated in the Guangdong-Hong Kong-Macao Greater Bay Area. It was found that coordinative mechanisms in regional environmental governance can happen around three elements: policy institutions, policy actors, and policy issues. Policy institutions tend to serve as an umbrella for many diverse and interdependent activities and actors within individual institutions. Additionally, positive externalities emerging between different policy institutions perform as coordinators across institutions. For actors, state-level actors usually play as facilitators of policy institutions while they are not active in participating in policy games in later phases; it is regional actors, particularly from Guangdong, that are active in the operation of policy institutions. For policy issues, they emerge because they are often tied with each other, and some of them play as the common ground for seemly separating policy institutions. -
The Superfamily Calopterygoidea in South China: Taxonomy and Distribution. Progress Report for 2009 Surveys Zhang Haomiao* *PH D
International Dragonfly Fund - Report 26 (2010): 1-36 1 The Superfamily Calopterygoidea in South China: taxonomy and distribution. Progress Report for 2009 surveys Zhang Haomiao* *PH D student at the Department of Entomology, College of Natural Resources and Environment, South China Agricultural University, Guangzhou 510642, China. Email: [email protected] Introduction Three families in the superfamily Calopterygoidea occur in China, viz. the Calo- pterygidae, Chlorocyphidae and Euphaeidae. They include numerous species that are distributed widely across South China, mainly in streams and upland running waters at moderate altitudes. To date, our knowledge of Chinese spe- cies has remained inadequate: the taxonomy of some genera is unresolved and no attempt has been made to map the distribution of the various species and genera. This project is therefore aimed at providing taxonomic (including on larval morphology), biological, and distributional information on the super- family in South China. In 2009, two series of surveys were conducted to Southwest China-Guizhou and Yunnan Provinces. The two provinces are characterized by karst limestone arranged in steep hills and intermontane basins. The climate is warm and the weather is frequently cloudy and rainy all year. This area is usually regarded as one of biodiversity “hotspot” in China (Xu & Wilkes, 2004). Many interesting species are recorded, the checklist and photos of these sur- veys are reported here. And the progress of the research on the superfamily Calopterygoidea is appended. Methods Odonata were recorded by the specimens collected and identified from pho- tographs. The working team includes only four people, the surveys to South- west China were completed by the author and the photographer, Mr. -
BP Neural Network Based Prediction of Potential Mikania Micrantha
se t Re arc s h: re O o p Qiu et al., Forest Res 2018, 7:1 F e f n o A DOI: 10.4172/2168-9776.100021 l 6 c a c n e r s u s o J Forest Research: Open Access ISSN: 2168-9776 Research Article Open Access BP Neural Network Based Prediction of Potential Mikania micrantha Distribution in Guangzhou City Qiu L1,2, Zhang D1,2, Huang H3, Xiong Q4 and Zhang G4* 1School of Geosciences and Info-Physics, Central South University, Hunan, Changsha, China 2Key Laboratory of Metallogenic Prediction of Nonferrous Metals and Geological Environment Monitor (Central South University), Ministry of Education, Changsha, China 3Shengli College of China University of Petroleum, Shandong, Dongying, China 4Central South University of Forestry and Technology, Hunan, Changsha, China *Corresponding author: Zhang G, Central South University of Forestry and Technology, Hunan, Changsha, China, Tel: 9364682275; E-mail: [email protected] Received date: January 16, 2018; Accepted date: February 09, 2018; Published date: February 12, 2018 Copyright: © 2018 Qiu L, et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Abstract To predict the distribution of Mikania micrantha, one of the most harmful invasive plants in Guangzhou City, the author selected relevant environmental factors and established a feasible simple model based on BP neural network to use its strong nonlinear ability in this -
China: Guangdong Compulsory Education
. PROJECT INFORMATION DOCUMENT (PID) APPRAISAL STAGE Report No.: PIDA118627 Public Disclosure Authorized . Project Name China: Guangdong Compulsory Education Project (P154621) Region EAST ASIA AND PACIFIC Country China Financing Instrument Investment Project Financing Project ID P154621 Borrower(s) PEOPLE'S REPUBLIC OF CHINA Implementing Agency Guangdong Department of Education Environmental Category B-Partial Assessment Date PID Prepared/Updated 11-May-2017 Public Disclosure Authorized Date PID Approved/Disclosed 07-Jun-2016 Estimated Date of Board 07-Sep-2017 Approval Appraisal Review Decision (from Decision Note) Other Decision . I. Project Context Country Context China’s economy grew 10 percent a year on average over the last three decades. Over 500 million Public Disclosure Authorized people were lifted out of poverty during this time (World Bank and Development Research Center of the State Council, 2013). Since the national law on compulsory education was passed in 1982, access to education has significantly improved. While the basic education cycle spans 15 years, a nine-year education cycle comprising primary and junior secondary school is compulsory for the nation’s children. The adult literacy rate has increased from 66 percent in 1982 to 96 percent in 2015. In addition to improvements in access, results from international student assessments – such as the Organisation for Economic Co-Operation and Development’s (OECD) Program for International Student Assessment (PISA) – demonstrate that the country is home to some of the best performing school systems in the world (World Bank, 2016). This socioeconomic progress of the past 30 years has raised the well-being of the population. China has made large strides in human development in terms of increased average life expectancy, education, and average income. -
Genetic Diversity of 14 Indigenous Grey Goose Breeds in China Based on Microsatellite Markers
1 Genetic Diversity of 14 Indigenous Grey Goose Breeds in China Based on Microsatellite Markers Y. J. Tu*, K. W. Chen, S. J. Zhang, Q. P. Tang, Y. S. Gao and N. Yang1 Poultry Institute, Chinese academy of agriculture science, Yangzhou 225003, P. R. China ABSTRACT : This experiment first cloned some microsatellite sequences for goose species by magnetic beads enriched method and studied the genetic structure research of 14 indigenous grey goose breeds using 19 developed and 12 searched microsatellite markers with middle polymorphism. According to the allele frequencies of 31 microsatellite sites, mean heterozygosity (H), polymorphism information content (PIC) and DA genetic distances were calculated for 31-microsatellite sites. The results showed that 25 of 31microsatellite sites were middle polymorphic, so the 25 microsatellite markers were effective markers for analysis of genetic relationship among goose breeds. The mean heterozygosity was between 0.4985 and 0.6916. The highest was in the Xupu (0.6916), and in the Yan was the lowest (0.4985) which was consistent with that of PIC. The phylogenetic tree was completed through analysis of UPGMA. Fencheng Grey, Shoutou, Yangjiang and Magang were grouped firstly, then Xongguo Grey, Wugang Tong, Changle and Youjiang were the second group; Gang, Yan Xupu and Yili were the third group; Yongkang Grey and Wuzeng were the fourth group. The results could provide basic molecular data for the research on the characteristics of local breeds in the eastern China, and a scientific basis for the conservation and utilization of those breeds. (Asian-Aust. J. Anim. Sci. 2006. Vol 19, No. 1 : 1-6) Key Words : Microsatellite, Goose, Genetic Diversity INTRODUCTION Breeding goose is a traditional vocation of peasant in China. -
National Reports on Wetlands in South China Sea
United Nations UNEP/GEF South China Sea Global Environment Environment Programme Project Facility “Reversing Environmental Degradation Trends in the South China Sea and Gulf of Thailand” National Reports on Wetlands in South China Sea First published in Thailand in 2008 by the United Nations Environment Programme. Copyright © 2008, United Nations Environment Programme This publication may be reproduced in whole or in part and in any form for educational or non-profit purposes without special permission from the copyright holder provided acknowledgement of the source is made. UNEP would appreciate receiving a copy of any publication that uses this publicationas a source. No use of this publication may be made for resale or for any other commercial purpose without prior permission in writing from the United Nations Environment Programme. UNEP/GEF Project Co-ordinating Unit, United Nations Environment Programme, UN Building, 2nd Floor Block B, Rajdamnern Avenue, Bangkok 10200, Thailand. Tel. +66 2 288 1886 Fax. +66 2 288 1094 http://www.unepscs.org DISCLAIMER: The contents of this report do not necessarily reflect the views and policies of UNEP or the GEF. The designations employed and the presentations do not imply the expression of any opinion whatsoever on the part of UNEP, of the GEF, or of any cooperating organisation concerning the legal status of any country, territory, city or area, of its authorities, or of the delineation of its territories or boundaries. Cover Photo: A vast coastal estuary in Koh Kong Province of Cambodia. Photo by Mr. Koch Savath. For citation purposes this document may be cited as: UNEP, 2008. -
Vegetation Protection and Road Landscape Construction Technology Along the Yunmao Expressway
E3S Web of Conferences 145, 02006 (2 020) https://doi.org/10.1051/e3sconf/20 2014502006 IAECST 201 9 Vegetation protection and road landscape construction technology along the Yunmao expressway Jian Lou1, Siqing Zeng2*, Min Cai3, Tianwen Liang 4, Dan Wang 5 and Ke Yao6 1,2,3 Yun Mao Expressway, Guangzhou, Guangdong Province, 510623, China 4,5 Research Institute of Highway Ministry of Transport, Beijing, 100086, China 6 Guangdong Provincial Transportation Planning Research Center, Guangzhou, Guangdong Province, 510101, China Abstract: The construction of green highways must not only combine the characteristics of regional ecological environment, but also do a good job of landscape greening to create a good driving environment. Taking Yunmao expressway as an example, from the perspective of ecological protection and restoration, this paper describes the design ideas of vegetation protection and landscape construction along the expressway, and discusses the landscape greening design of expressways characteristic of Guangdong Province based on the actual experience of landscape greening of expressways in Guangdong Province. many long uphill and long downhill sections. Special 1 Introduction liquid soils such as high-liquid limit soil and soft soil are dense, and bad geology such as collapse and karst are Expressway landscape greening refers to the restoration of more common, which is a typical mountain highway. the damaged ecological environment around the expressway, the use of vegetation roots and stems to consolidate the soil and improve the soil's corrosion 2.2. Environmental Overview resistance, so as to strengthen the slope, this can not only improve the landscape environment around the highway, 2.2.1.