Ways to Improve the Effectiveness of Depressant Additives for the Production of Winter and Arctic Diesel Fuels

IF 3.6 Q2 ENVIRONMENTAL SCIENCES Resources Pub Date : 2024-02-08 DOI:10.3390/resources13020027
I. Bogdanov, Y. Morozova, A. Altynov, Alina Titaeva, M. Kirgina
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Abstract

Diesel fuel is the main fuel for transport and power generation for remote areas, especially the Arctic. For these territories, it is important to produce low-freezing fuel grades. The most effective way to improve the low-temperature properties of diesel fuels (cloud point, pour point, and cold filter plugging point) is the use of depressant additives. Existing research shows that the depressant additives’ effectiveness is influenced by many factors. The most important factors are diesel fuel composition, additive concentration, and the temperature of additive introduction into the fuel (adding temperature). The purpose of this work is to find ways to increase the efficiency of depressant additives for the production of low-freezing diesel fuels by choosing the most effective additive concentration and adding temperature for fuels of various compositions. During the work, low-temperature properties were determined and the effectiveness of three depressant additives was assessed on four samples of diesel fuel at four concentrations (0.5, 1.0, 2.0, and 5.0 c.u., where c.u. (conditional unit) is the concentration recommended by the manufacturer of the additives). In addition, low-temperature properties for blends of six depressant additives and two samples of diesel fuel at five adding temperatures (15, 25, 35, 45, and 55 °C) were determined. In this work, in contrast to existing works, it was established for the first time that the composition of the fuel affects not only the depressant additives effectiveness, but also the dependence of the additive effectiveness on the concentration in which it is used. It is shown that the higher the content of paraffins in the composition of the diesel fuel, the less the depressant additive’s effectiveness in relation to cold filter plugging point depends on the concentration and the more the depressant additive’s effectiveness in relation to the power point depends on the concentration. An inverse relationship was revealed for the content of aromatic hydrocarbons in diesel fuel. It was also found for the first time that an increase in the adding temperature of depressant additives up to 35–55 °C enhances the effectiveness of their action in relation to the cold filter plugging point (maximum at 6–7 °C). It is shown that the greater additive effect on the cold filter plugging point of the diesel fuel, the more strongly the depressant effectiveness depends on the adding temperature. The work provides recommendations for obtaining the most low-freezing classes of fuel based on the samples considered. The regularities identified in the work will make it possible, depending on the composition of the fuel, to select the optimal concentration of the additive and the temperature of its adding, which will increase the efficiency of the additives, as well as the volume of low-freezing grades of diesel fuel production.
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提高用于生产冬季和北极地区柴油的降压添加剂效果的方法
柴油是偏远地区,尤其是北极地区运输和发电的主要燃料。对于这些地区来说,生产低冻燃料等级非常重要。改善柴油低温特性(浊点、倾点和冷过滤器堵塞点)的最有效方法是使用降凝剂添加剂。现有研究表明,降凝剂添加剂的效果受许多因素的影响。其中最重要的因素是柴油成分、添加剂浓度和添加剂进入燃油的温度(添加温度)。这项工作的目的是通过为不同成分的燃料选择最有效的添加剂浓度和添加温度,找到提高生产低凝柴油的降凝添加剂效率的方法。在这项工作中,对四种浓度(0.5、1.0、2.0 和 5.0 c.u.,其中 c.u.(条件单位)是添加剂生产商推荐的浓度)的柴油样品进行了低温特性测定,并评估了三种降凝剂添加剂的有效性。此外,还测定了六种减压添加剂与两种柴油样品混合后在五种添加温度(15、25、35、45 和 55 °C)下的低温特性。在这项工作中,与现有工作不同的是,首次确定了燃料成分不仅会影响减压添加剂的效果,还会影响添加剂效果与使用浓度的关系。研究表明,柴油成分中的石蜡含量越高,抑制剂添加剂在冷滤器堵塞点方面的效果与浓度的关系就越小,而抑制剂添加剂在功率点方面的效果与浓度的关系就越大。柴油中芳香烃的含量呈反比关系。研究还首次发现,将抑制剂添加剂的添加温度提高到 35-55 °C,可增强其对冷过滤器堵塞点(6-7 °C 时最大)的作用效果。研究表明,添加剂对柴油冷滤器堵塞点的影响越大,抑制剂的效果就越取决于添加温度。这项研究根据所考虑的样本,提出了获得最低冻度燃油等级的建议。根据工作中发现的规律,可以根据燃料的成分选择最佳的添加剂浓度和添加温度,从而提高添加剂的效率和低凝柴油的产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Resources
Resources Environmental Science-Nature and Landscape Conservation
CiteScore
7.20
自引率
6.10%
发文量
0
审稿时长
11 weeks
期刊介绍: Resources (ISSN 2079-9276) is an international, scholarly open access journal on the topic of natural resources. It publishes reviews, regular research papers, communications and short notes, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and methodical details must be provided so that the results can be reproduced. There are, in addition, unique features of this journal: manuscripts regarding research proposals and research ideas will be particularly welcomed, electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Subject Areas: natural resources, water resources, mineral resources, energy resources, land resources, plant and animal resources, genetic resources, ecology resources, resource management and policy, resources conservation and recycling.
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