Please wait a minute...
 首页  期刊介绍 期刊订阅 联系我们
 
最新录用  |  预出版  |  当期目录  |  过刊浏览  |  阅读排行  |  下载排行  |  引用排行  |  百年期刊
Journal of Tsinghua University(Science and Technology)    2016, Vol. 56 Issue (12) : 1341-1345     DOI: 10.16511/j.cnki.qhdxxb.2016.25.044
CHEMISTRY AND CHEMICAL ENGINEERING |
Resource productivity estimates at the municipal and intra-county levels in China
ZHU Bing1,2, CHEN Zengbo1, ZHANG Yupeng1, CHEN Dingjiang1,2, JIANG Meng3
1. Center for Industrial Ecology, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China;
2. Institute of Circular Economy, Tsinghua University, Beijing 100084, China;
3. College of Chemical Engineering, Sichuan University, Chengdu 610065, China
Download: PDF(1014 KB)  
Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks    
Abstract  Resource productivity is a comprehensive indicator used to evaluate economic development that has been used at the national level in China. However, there source productivity is more difficult to define at various regional levels, especially for the municipal and intra-county levels. The effectiveness of the accounting method has not been verified for local economics. This study focuses on issues related to establishing a resource productivity indicator for municipal and intra-county levels based on a economic-wide material flow analysis. This study presents a simple estimation method for the municipal and intra-county resource productivity using local statistical data. As typical and extreme examples, 32 cities and counties from 4 provinces in China were selected to calculate the resource productivity using this estimation method. The results indicate that the accounting frame is suitable for most of the selected cities and counties and can be used to evaluate development economic. This estimation method provides a basis for further resource productivity estimates at the municipal and intra-county levels.
Keywords resource productivity      estimation      municipal and intra-county level      economic-wide material flow analysis     
ZTFLH:  X24  
Issue Date: 15 December 2016
Service
E-mail this article
E-mail Alert
RSS
Articles by authors
ZHU Bing
CHEN Zengbo
ZHANG Yupeng
CHEN Dingjiang
JIANG Meng
Cite this article:   
ZHU Bing,CHEN Zengbo,ZHANG Yupeng, et al. Resource productivity estimates at the municipal and intra-county levels in China[J]. Journal of Tsinghua University(Science and Technology), 2016, 56(12): 1341-1345.
URL:  
http://jst.tsinghuajournals.com/EN/10.16511/j.cnki.qhdxxb.2016.25.044     OR     http://jst.tsinghuajournals.com/EN/Y2016/V56/I12/1341
  
  
  
  
  
[1] 马凯. 贯彻和落实科学发展观, 大力推进循环经济发展[J]. 宏观经济管理, 2004(10):4-9.MA Kai. Carry out and implement scientific development, promote development of circular economy vigorously[J]. Macroeconomic Management, 2004(10):4-9. (in Chinese)
[2] 诸大建, 邱寿丰. 生态效率是循环经济的合适测度[J]. 中国人口·资源与环境, 2006, 16(5):1-6.ZHU Dajian, QIU Shoufeng. Eco-efficiency is the appropriate measure of circular economy[J]. China Population, Resource and Environment, 2006, 16(5):1-6. (in Chinese)
[3] 贺业方, 朱兵, 洪丽云, 等. 循环经济与低碳经济的关系分析——基于资源生产率[J]. 技术经济, 2010, 29(12):68-73.HE Yefang, ZHU Bing, HONG Liyun, et al. The relationship between circular economy and low carbon economy analysis-Based on resource productivity[J]. Technology Economics, 2010, 29(12):68-73. (in Chinese)
[4] 中华人民共和国. 中华人民共和国国民经济和社会发展第十二个五年规划纲要. (2011-03-16). http://www.gov.cn/2011lh/content_1825838.htm.The People's Republic of China. The Twelfth Five-year Plan for National Economic and Social Development Program of The People's Republic of China. (2011-03-16). http://www.gov.cn/2011lh/content_1825838.htm.(in Chinese)
url: http://www.gov.cn/2011lh/content_1825838.htm.the people's republic of china. the twelfth five-year plan for national economic and social development program of the people's republic of china. (2011-03-16). http://www.gov.cn/2011lh/content_1825838.htm.(in chinese)
[5] 余亚东, 陈定江, 胡山鹰, 等. 经济系统物质流分析研究述评[J]. 生态学报, 2015, 35(22):7274-7285.YU Yadong, CHEN Dingjiang, HU Shanying, et al. A critical review of economy-wide material flow analysis[J]. Acta Ecologica Sinica, 2015, 35(22):7274-7285. (in Chinese)
[6] Chen X Q, Qiao L J. A preliminary material input analysis of China[J]. Population and Environment, 2001, 23(1):46-51.
[7] Tachibana J, Hirota K, Goto N, et al. A method for regional-scale material flow and decoupling analysis:A demonstration case study of Aichi prefecture Japan[J]. Resources, Conservation and Recycling, 2008, 52(12):1382-1390.
[8] 黄晓芬, 诸大建. 上海市经济——环境系统的物质输入分析[J]. 中国人口·资源与环境, 2007, 17(3):96-99.HUANG Xiaofen, ZHU Dajian. Economic-environmental system analysis of material input in Shanghai[J]. China Population, Resource and Environment, 2007, 17(3):96-99. (in Chinese)
[9] 中华人民共和国国家发展和改革委员会. 国家循环经济示范城市(县)建设评价内容解释(试行). (2013-09-26). http://hzs.ndrc.gov.cn/newgzdt/201309/t20130927_5605-21.html.National Development and Reform Commission. Evaluation Construction and Content Explain of National Circular Economy Demonstration City (County) (Trial). (2013-09-26). http://hzs.ndrc.gov.cn/newgzdt/201309/t20130927_5605-21.html. (in Chinese)
url: http://hzs.ndrc.gov.cn/newgzdt/201309/t20130927_5605-21.html.national development and reform commission. evaluation construction and content explain of national circular economy demonstration city (county) (trial). (2013-09-26). http://hzs.ndrc.gov.cn/newgzdt/201309/t20130927_5605-21.html. (in chinese)
[10] OECD. Measuring Material Flows and Resource Productivity[R]. Paris, France, 2008.
[11] 冶金工业规划研究院. 2012年我国钢铁消费分析和2013年需求预测[J]. 冶金经济与管理, 2013(1):4-6.Planning Institute of Metallurgy Industry. China's steel consumption analysis in 2012 and demand forecast in 2013[J]. Metallurgical Economics and Management, 2013(1):4-6. (in Chinese)
[12] 陈永梅, 张天柱. 北京住宅建设活动的物质流分析[J]. 建筑科学与工程学报, 2005, 22(3):80-83.CHEN Yongmei, ZHANG Tianzhu. Material flow analysis of Beijing residential construction activity[J]. Journal of Construction Science and Engineering, 2005, 22(3):80-83. (in Chinese)
[1] WU Shan, WU Yuchen, HOU Benwei, HAN Hongquan. Water demand dynamic estimation in water distribution network hydraulic models based on Kalman filter[J]. Journal of Tsinghua University(Science and Technology), 2024, 64(2): 271-281.
[2] ZHANG Mingfang, LI Guilin, WU Chuna, WANG Li, TONG Lianghao. Estimation algorithm of driver's gaze zone based on lightweight spatial feature encoding network[J]. Journal of Tsinghua University(Science and Technology), 2024, 64(1): 44-54.
[3] CHI Hao, LIU Yu, CHEN Ken, FENG Weichun, ZHANG Jiwen. Monocular method for parameter estimation of symmetric-inertia uncooperative targets[J]. Journal of Tsinghua University(Science and Technology), 2022, 62(9): 1492-1499.
[4] LIU Zhi, CHEN Ken, XU Jing. Data-driven method for 6D robot pose estimation[J]. Journal of Tsinghua University(Science and Technology), 2022, 62(3): 391-399.
[5] GAO Yang, REN Wang, WU Renpu, WANG Weiping, YI Shengwei, HAN Baijing. Attack detection and security state estimation of cyber-physical systems[J]. Journal of Tsinghua University(Science and Technology), 2021, 61(11): 1234-1239.
[6] WANG Wei, YANG Kaiming, ZHU Yu, QIAN Yuyang. Walking speed estimation based on empirical mode decomposition method and swing foot parameters[J]. Journal of Tsinghua University(Science and Technology), 2021, 61(10): 1152-1158.
[7] CHENG Lin, ZHANG Qingzhen, JIANG Fanghua. Multi-constraint compound reentry guidance based on onboard model identification[J]. Journal of Tsinghua University(Science and Technology), 2019, 59(9): 712-719.
[8] ZHANG Yun, JIANG Nan, WANG Liping. Reliability analysis of NC rotary table based on a Wiener process for extremely small samples[J]. Journal of Tsinghua University(Science and Technology), 2019, 59(2): 91-95.
[9] PEI Yukui, HAO Haoran, SU Li. IQ-separated baseband structure for high-speedsatellite digital communication[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(9): 827-832.
[10] LIU Huaping, ZHENG Xiangmei, SUN Fuchun. Orientation estimate of indoor mobile robot using laser scans[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(7): 609-613.
[11] GONG Qin, ZHENG Shuo. Beamforming and maximum likelihood estimation for speech enhancement using dual closely-spaced microphones[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(6): 603-608.
[12] YOU Ersheng, SHE Ding, SHI Lei. Mass estimation model for Brayton cycle space nuclear power systems[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(5): 450-455.
[13] FANG Yi, CHEN Youyuan, MOU Hongyu, FENG Haihong. A robust time-delay estimation and dereverberation algorithm based on the coherence function[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(5): 516-522.
[14] CHEN Donghui, CHEN Ling, WANG Junkai, WU Yong, WANG Jingchang. Approximation algorithms for aggregate queries on uncertain data[J]. Journal of Tsinghua University(Science and Technology), 2018, 58(3): 231-236.
[15] GUO Mengwu, ZHONG Hongzhi. Equivalence of two strictly bounding approaches for goal-oriented error estimation[J]. Journal of Tsinghua University(Science and Technology), 2017, 57(4): 362-368.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
Copyright © Journal of Tsinghua University(Science and Technology), All Rights Reserved.
Powered by Beijing Magtech Co. Ltd