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Search Results (5)

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Authors = Lidia Hrnčević ORCID = 0000-0001-8990-0985

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19 pages, 4858 KiB  
Article
Lady’s Mantle Flower as a Biodegradable Plant-Based Corrosion Inhibitor for CO2 Carbon Steel Corrosion
by Katarina Žbulj, Gordana Bilić, Katarina Simon and Lidia Hrnčević
Coatings 2024, 14(6), 671; https://doi.org/10.3390/coatings14060671 - 25 May 2024
Cited by 3 | Viewed by 1428
Abstract
Due to issues with the corrosion problem in the petroleum industry and the use of less ecologically acceptable corrosion inhibitors, great emphasis, within research on corrosion inhibitors, is now being put on green corrosion inhibitors (GCIs). In this study, Lady’s mantle flower extract [...] Read more.
Due to issues with the corrosion problem in the petroleum industry and the use of less ecologically acceptable corrosion inhibitors, great emphasis, within research on corrosion inhibitors, is now being put on green corrosion inhibitors (GCIs). In this study, Lady’s mantle flower extract (LMFE) has been observed as a plant-based GCI for carbon steel in a simulated CO2-saturated brine solution. The effectiveness of the inhibitor in static and flow conditions has been determined using potentiodynamic polarization with Tafel extrapolation and electrochemical impedance spectroscopy (EIS). In static conditions, the inhibitor has been tested at concentrations from 1 g/L to 5 g/L with an increment of 1 g/L per measurement, while, in dynamic (flow) conditions, the inhibitor has been tested at concentrations from 3 g/L to 6 g/L with an increment of 1 g/L per measurement. All measurements were performed at room temperature. EIS and potentiodynamic polarization methods showed that LMFE achieves maximum effectiveness in protecting carbon steel from corrosion when added at a concentration of 4 g/L in static conditions and at a concentration of 5 g/L in flow conditions. The test methods proved that the inhibitory effectiveness of LMFE is greater than 90% in both test conditions (static and flow). The inhibitor efficiency was attributed to the adsorption of LMFE on the carbon steel surface, which was demonstrated by Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). A biodegradability of 0.96 and a toxicity of 19.34% for LMFE were determined. The conducted laboratory tests indicate that LMFE could be used as an effective corrosion inhibitor for CO2 carbon steel corrosion. Full article
(This article belongs to the Special Issue Investigation on Corrosion Behaviour of Metallic Materials)
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13 pages, 678 KiB  
Article
Mining and Mineral Processing Journals in the WoS and Their Rankings When Merging SCIEx and ESCI Databases—Case Study Based on the JCR 2022 Data
by Tomislav Korman, Tomislav Malvić, Vasyl Lozynskyi, Zlatko Briševac, Zoran Kovač, Lidia Hrnčević and Krešimir Pavlić
Publications 2024, 12(1), 3; https://doi.org/10.3390/publications12010003 - 19 Jan 2024
Cited by 1 | Viewed by 3732
Abstract
The 2022 JCR included ESCI journals for the first time, increasing the number of publication titles by approximately 60%. In this paper, the subcategory Mining and Mineral Processing (part of the Engineering and Geosciences category, where 12 of the ESCI journals were merged [...] Read more.
The 2022 JCR included ESCI journals for the first time, increasing the number of publication titles by approximately 60%. In this paper, the subcategory Mining and Mineral Processing (part of the Engineering and Geosciences category, where 12 of the ESCI journals were merged with the 20 SCIEx ones) is presented and analyzed. Only three of the ESCI journals included in the database were ranked Q1/Q2. The inclusion of the entire ESCI added new content for readers and authors relying on JCR sources. This paper offers authors, researchers, and publishers in the Mining and Mineral Processing field practical insights into the potential benefits and challenges associated with the changing landscape of indexed journals, as well as in-depth, systematic analyses that provide potential authors with the opportunity to select the most suitable journal for submitting their papers. Full article
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18 pages, 2268 KiB  
Article
Citation Rate Challenges for a Small Journal Indexed in Scopus and WoS—Case Study from Central Europe (Croatia), Editorial View
by Tomislav Malvić, Željko Andreić, Uroš Barudžija, Gordan Bedeković, Lidia Hrnčević, Josip Ivšinović, Tomislav Korman, Zoran Kovač, Krešimir Pavlić and Borivoje Pašić
Publications 2022, 10(3), 32; https://doi.org/10.3390/publications10030032 - 8 Sep 2022
Cited by 5 | Viewed by 6320
Abstract
The term “small journal” has been used for a journal published as a single journal or one of a few serials, mostly by an academic publisher. This case study showed the challenges that a journal must override to be indexed in Scopus and [...] Read more.
The term “small journal” has been used for a journal published as a single journal or one of a few serials, mostly by an academic publisher. This case study showed the challenges that a journal must override to be indexed in Scopus and WoS, especially if Q1/Q2 are targeted. The number of submissions, and especially of the published papers, are not the most critical variables for an increase of journal citations. The most important is the further activity of researchers included in the paper’s authorship, their future publication rate and continuation of similar research, which implies the citations of previous works belonging to the same authors and/or research groups. The larger the number of papers per issue, the increased probability of such an event, but there is no linear correlation. Moreover, the editorial work, especially during the initial editorial screening of received submissions, makes the consequent reviewer’s work easier, faster, and of higher quality, which certainly increases the quality of publications and their further citation life. The cited half-life vs. cited half-life ratio in small journals would need to be less than one (here 0.25), making the published papers fast cited, with first citations coming early enough that they could fit in a three-year window, and be countable for the calculation of indexing measures like Citescore or the Impact Factor. Full article
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14 pages, 6233 KiB  
Article
Dandelion-Root Extract as Green Corrosion Inhibitor for Carbon Steel in CO2-Saturated Brine Solution
by Katarina Žbulj, Lidia Hrnčević, Gordana Bilić and Katarina Simon
Energies 2022, 15(9), 3074; https://doi.org/10.3390/en15093074 - 22 Apr 2022
Cited by 8 | Viewed by 2445
Abstract
Recently, due to the corrosion problem in the petroleum industry and the usage of commercial corrosion inhibitors, which, when released untreated into the environment, are considered to be environmentally unfriendly, green corrosion inhibitors are being researched. In this paper, the results of dandelion-root-extract [...] Read more.
Recently, due to the corrosion problem in the petroleum industry and the usage of commercial corrosion inhibitors, which, when released untreated into the environment, are considered to be environmentally unfriendly, green corrosion inhibitors are being researched. In this paper, the results of dandelion-root-extract testing as a green corrosion inhibitor for carbon steel in simulated brine solution saturated with carbon dioxide (CO2) are shown. The extract’s inhibition efficiency in static and flow conditions was determined by using potentiodynamic polarization with Tafel extrapolation and electrochemical-impedance-spectroscopy methods. In static conditions, the extract was tested at different concentrations. A maximum inhibition efficiency of 98.37% in static conditions at an extract concentration of 12 mL/L and 82.80% in flow conditions at a concentration of 14 mL/L was achieved. Additionally, for the most efficient dandelion-root-extract concentration (12 mL/L), the biodegradability and toxicity were determined. A biodegradability of 0.96 and a toxicity of 2.38% was achieved. Based on the obtained results of the conducted laboratory measurements, it can be concluded that dandelion-root extract has significant potential in terms of its use as a green corrosion inhibitor for carbon steel in a CO2-saturated brine solution. Full article
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27 pages, 4930 KiB  
Review
Significance of Enhanced Oil Recovery in Carbon Dioxide Emission Reduction
by Karolina Novak Mavar, Nediljka Gaurina-Međimurec and Lidia Hrnčević
Sustainability 2021, 13(4), 1800; https://doi.org/10.3390/su13041800 - 7 Feb 2021
Cited by 52 | Viewed by 12710
Abstract
Limiting the increase in CO2 concentrations in the atmosphere, and at the same time, meeting the increased energy demand can be achieved by applying carbon capture, utilization and storage (CCUS) technologies, which hold potential as the bridge for energy and emission-intensive industries [...] Read more.
Limiting the increase in CO2 concentrations in the atmosphere, and at the same time, meeting the increased energy demand can be achieved by applying carbon capture, utilization and storage (CCUS) technologies, which hold potential as the bridge for energy and emission-intensive industries to decarbonization goals. At the moment, the only profitable industrial large-scale carbon sequestration projects are large-scale carbon dioxide enhanced oil recovery (CO2-EOR) projects. This paper gives a general overview of the indirect and direct use of captured CO2 in CCUS with a special focus on worldwide large-scale CO2-EOR projects and their lifecycle emissions. On the basis of scientific papers and technical reports, data from 23 contemporary large-scale CO2-EOR projects in different project stages were aggregated, pointing out all the specificities of the projects. The specificities of individual projects, along with the lack of standardized methodologies specific for estimating the full lifecycle emissions resulting from CO2-EOR projects, pose a challenge and contribute to uncertainties and wide flexibilities when estimating emissions from CO2-EOR projects, making the cross-referencing of CO2-EOR projects and its comparison to other climate-mitigation strategies rather difficult. Pointing out the mentioned project’s differentiations and aggregating data on the basis of an overview of large-scale CO2-EOR projects gives useful information for future work on the topic of a CO2-EOR project’s lifecycle emissions. Full article
(This article belongs to the Special Issue Sustainability of Carbon Capture and Utilisation)
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