A Framework of Green Growth Assessment for Thailand's Highway Infrastructure Developments

Author(s):  
N. Kokkaew ◽  
J. Rudjanakanoknad
Mathematics ◽  
2021 ◽  
Vol 9 (20) ◽  
pp. 2594
Author(s):  
Fenfen Li ◽  
Bo Dai ◽  
Qifan Wu

This study proposes a method for resource management and optimisation in the industrial sector of China. Differing from previous research on the green assessment of industrial systems focusing on “black box” evaluation, our approach contributes to the two-stage structure of an industrial system that consists of an industrial production process and a pollution treatment process. The corresponding network slack-based model (SBM) is proposed to analyse the performance of China’s provincial industry sector. Based on our network SBM, the global Malmquist index is built to analyse the total factor productivity changes of system and individual processes to evaluate the consistency of sustainable development where dynamic green growth assessment is realized. The results show that the whole system and its pollution treatment process performance are poor and disorganised, while the industrial production process maintains a stable ranking for the 30 regions in China. We find that the main cause of this phenomenon is the variable technical efficiency change in the 30 regions, which reflects the immaturity of the management of the pollution treatment process. System performance is also highly related to regionalism.


Author(s):  
Irina PILVERE ◽  
Aleksejs NIPERS ◽  
Bartosz MICKIEWICZ

Europe 2020 Strategy highlights bioeconomy as a key element for smart and green growth in Europe. Bioeconomy in this case includes agriculture, forestry, fisheries, food and pulp and paper production, parts of chemical, biotechnological and energy industries and plays an important role in the EU’s economy. The growth of key industries of bioeconomy – agriculture and forestry – highly depends on an efficient and productive use of land as a production resource. The overall aim of this paper is to evaluate opportunities for development of the main sectors of bioeconomy (agriculture and forestry) in the EU based on the available resources of land. To achieve this aim, several methods were used – monographic, analysis and synthesis, induction and deduction, statistical analysis methods. The findings show that it is possible to improve the use of land in the EU Member States. If all the Member States reached the average EU level, agricultural products worth EUR 77 bln would be annually additionally produced, which is 19 % more than in 2014, and an extra 5 billion m3 volume of forest growing stock would be gained, which is 20 % more than in 2010.


2013 ◽  
Author(s):  
Sherzod Shadikhodjaev ◽  
Jeongmeen Suh ◽  
MinSung Kim ◽  
Jaehyoung Lee
Keyword(s):  

Sign in / Sign up

Export Citation Format

Share Document