scholarly journals Energy conservation: The main factor for reducing greenhouse gas emissions in the former Soviet Union

1991 ◽  
Author(s):  
I.A. Bashmakov ◽  
V.P. Chupyatov
Author(s):  
Vladimir Dekhnich

A comparative analysis of the original methods of modeling urban greenhouse gas emissions caused by communal and transport sectors was carried out. These methods provide information at the level of urban-planning areas limited by the elements of the transport network and characterized by relatively similar buildings. These methods make possible to calculate greenhouse gas emissions from sources of the public sector, such as electricity and heat generation, gas burning for domestic needs. Calculation of emissions from sources of the transport sector includes differentiation by individual street segments. The described methods correspond to different accuracy levels including: the transition from aggregated values to the amount of emissions of individual areas of the city (downscaling); calculations using energy standards; calculations using actual energy consumption data. The considered methods have been tested on the example of the city of Nur-Sultan, that is one of the largest in the Republic of Kazakhstan. The calculation results are close to the actual values of Nur-Sultan's emission. The advantages and disadvantages of the considered methods are described. The factors leading to inaccurate results are considered. It was confirmed that the considered methods can be used for planning climate policy measures, since they allow to identify areas of the city and fields of activity that make the maximum contribution to the formation of greenhouse gas emissions. The considered methods are significant of for the cities of the former Soviet Union, which are characterized by the absence of developed systems for monitoring greenhouse gas emissions, is described, and it becomes necessary to calculate greenhouse gas emissions using indirect sources.


2009 ◽  
pp. 107-120 ◽  
Author(s):  
I. Bashmakov

On the eve of the worldwide negotiations of a new climate agreement in December 2009 in Copenhagen it is important to clearly understand what Russia can do to mitigate energy-related greenhouse gas emissions in the medium (until 2020) and in the long term (until 2050). The paper investigates this issue using modeling tools and scenario approach. It concludes that transition to the "Low-Carbon Russia" scenarios must be accomplished in 2020—2030 or sooner, not only to mitigate emissions, but to block potential energy shortages and its costliness which can hinder economic growth.


2017 ◽  
Vol 4 (3) ◽  
pp. 62-72
Author(s):  
O. Zhukorsky ◽  
O. Nykyforuk ◽  
N. Boltyk

Aim. Proper development of animal breeding in the conditions of current global problems and the decrease of anthropogenic burden on environment due to greenhouse gas emissions, caused by animal breeding activity, require the study of interaction processes between animal breeding and external climatic conditions. Methods. The theoretical substantiation of the problem was performed based on scientifi c literature, statistical informa- tion of the UN Food and Agriculture Organization and the data of the National greenhouse gas emissions inventory in Ukraine. Theoretically possible emissions of greenhouse gases into atmosphere due to animal breeding in Ukraine and specifi c farms are calculated by the international methods using the statistical infor- mation about animal breeding in Ukraine and the economic-technological information of the activity of the investigated farms. Results. The interaction between the animal breeding production and weather-and-climate conditions of environment was analyzed. Possible vectors of activity for the industry, which promote global warming and negative processes, related to it, were determined. The main factors, affecting the formation of greenhouse gases from the activity of enterprises, aimed at animal breeding production, were characterized. Literature data, statistical data and calculations were used to analyze the role of animal breeding in the green- house gas emissions in global and national framework as well as at the level of specifi c farms with the consid- eration of individual specifi cities of these farms. Conclusions. Current global problems require clear balance between constant development of sustainable animal breeding and the decrease of the carbon footprint due to the activity of animal breeding.


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