Wpływ wolnych glukozydów steroli na parametry niskotemperaturowe paliw i biopaliw

2021 ◽  
Author(s):  
Zygmunt Burnus

The depletion of primary energy sources and the increase in greenhouse gas emissions to the atmosphere necessitate taking action to seek alternative sources, including renewable energy sources. In March 2011, the European Commission issued a new White Paper – "Roadmap to a Single European Transport Area – Towards a competitive and resource efficient transport system" [White Paper; 2011]. The White Paper presents a vision of a competitive and sustainable transport system, ensuring its further growth and mobility while achieving the goal of reducing greenhouse gas emissions by 60% in 2050. The directions of development of motor fuels are mainly determined by the undesirable climate changes that negatively affect the environment, as well as by the constant development of engine designs in order to meet the increasing requirements of environmentalists and users. The modern world has realized that it is facing a serious environmental threat caused by CO2 emissions largely from car transport. Widely understood environmental protection, and also climate protection, requires the use of more eco-friendly engine fuels, which is reflected by European Union Directives and, consequently, in national legislation. A further increase in the share of biofuels and biocomponents in fuels intended for transport is expected, and these will not only be first generation fuels derived from vegetable oil transesterification (VOE) such as the currently commonly used fatty acid methyl esters (FAME) or fuels derived from the hydrotreatment of vegetable oils and animal fats (HVO), but also liquid fuels produced from biomass and bio-waste through thermochemical conversion. Low-temperature properties, and also the presence of biocomponents (FAME) in diesel fuel, which is the source of deposits in the engine and in its fuel system, causing many operational problems, are one of the important quality parameters of fuels intended for supplying diesel engines (ZS). FAME from rapeseed oil, widely used in the European Union as a biofuel for compression-ignition engines, has not, until recently, been suspected of affecting the performance parameters of the final product by the trace substances they contain, such as free sterol glucosides. In 2011, Polish fuel bases signaled the problem of a large amount of greasy deposits in tanks with a mixture of 5% (V/V) FAME in fuel for supplying diesel engines. Large amounts of free sterol glucosides were detected in these sediments using the research methodology developed by the author of this work. In the subject mixtures of commercial fuels and reference materials, relationships between low-temperature parameters such as cloud point CP, cold CFPP filter block temperature, CSFT cold filtration time on the one hand, and the content of FAME trace components from rapeseed oil: free sterol glucosides (FSG) and saturated monoacylglycerols (SMG) on the other hand, were determined. Keywords: low-temperature parameters, biodiesel, diesel fuel, free sterol glucosides

2021 ◽  
Vol 11 (11) ◽  
pp. 5142
Author(s):  
Javier Menéndez ◽  
Jorge Loredo

The use of fossil fuels (coal, fuel, and natural gas) to generate electricity has been reduced in the European Union during the last few years, involving a significant decrease in greenhouse gas emissions [...]


2012 ◽  
Vol 20 (1) ◽  
pp. 35-40
Author(s):  
S. Štefunková

Characteristics of asphalt mixes with FT additiveThis article is focused on low-temperature asphalt mixture technologies using FT additive and RAP. The modern production and use of asphalt mixture technologies with reduced temperatures has many advantages. These advantages mainly help to save energy and the environment. Lower temperatures enable a reduction in energy consumption, a more acceptable working environment for workers, a reduction in negative environmental effects, such as greenhouse gas emissions, and an improvement in the workability of mixtures and a prolongation of their duration. This technology is currently becoming popular in many countries.


2013 ◽  
Vol 47 (1) ◽  
pp. 143-168 ◽  
Author(s):  
Mariam Camarero ◽  
Juana Castillo-Giménez ◽  
Andrés J. Picazo-Tadeo ◽  
Cecilio Tamarit

Climate Law ◽  
2016 ◽  
Vol 6 (1-2) ◽  
pp. 182-195 ◽  
Author(s):  
Marjan Peeters

The European Union is the only party to the unfccc that is a regional organization. The European Union’s Intended Nationally Determined Contribution, submitted on behalf of itself and its member states, contains a pledge to reduce domestic greenhouse gas emissions by at least 40 per cent by 2030 compared with 1990 levels, in pursuit of the general objective to keep the global average temperature increase below 2°C. Given, however, that the Paris Agreement aims not only to hold the increase ‘well below’ 2°C, but also to ‘pursue efforts’ to limit the increase to 1.5°C, one wonders whether the outcome of cop 21 may lead the European Union to a reconsideration—with possibly a strengthening—of the mitigation effort proposed in its indc.


2020 ◽  
Vol 10 (3) ◽  
pp. 837
Author(s):  
Matteo Prussi

Anthropogenic greenhouse gas emissions are dramatically influencing the environment, and research is strongly committed in proposing alternatives, mainly based on renewable energy sources [...]


Author(s):  
Edyta Gajos ◽  
Sylwia Małażewska ◽  
Konrad Prandecki

The aim of the study was to compare the total greenhouse gas emissions in the European Union countries and their emission efficiency. Emission efficiency was calculated as the ratio of emission volume and value to gross value added generated by the economy of a given country (size of the economy). The necessary statistical data was obtained from Eurostat. It was found that in 2015 most of greenhouse gases were emitted by: Germany, United Kingdom, Poland, France and Italy. At the same time, France and the United Kingdom were characterized by one of the best emission efficiency in the European Union, Germany and Italy obtained average results, while Poland was in the group of countries with the lowest emission efficiency. Therefore, it can be concluded, that the volume of emissions is significantly affected by the size of the economy. Some large emitters have economies based on relatively “clean” technologies and thus their potential to further reduction is not very high. The reverse is true for some low-emission countries, such as Estonia and Bulgaria. This indicates the need for a more comprehensive look at the problem of reducing greenhouse gas emissions.


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