Bibi-Mariyam Khassankhojayeva | Chemical Engineering | Best Research Article Award

Best Research Article Award

Bibi-Mariyam Khassankhojayeva
Affiliation South Kazakhstan University of Muktar Auezov
Country Kazakhstan
Documents 6
Subject Area Chemical Engineering
Event International Research Excellence and Best Paper Awards
ORCID 0000-0002-3568-2043

Bibi-Mariyam Khassankhojayeva

Bibi-Mariyam Khassankhojayeva of the South Kazakhstan University of Muktar Auezov, Kazakhstan, is recognized with the Best Research Article Award in Chemical Engineering. Her recognized research examines the valorization of oil sludge through recovery of its organic fraction and its application as a substitute for petroleum processing oil in SKI-3 rubber compounds. The study connects waste-resource recovery, petroleum-derived materials, and rubber-compound development within an applied chemical engineering context [1].

Abstract

This article recognizes Bibi-Mariyam Khassankhojayeva with the Best Research Article Award for work in Chemical Engineering concerning oil-sludge valorization and rubber-compound development. The recognized study investigates recovery of the organic fraction from oil sludge and its potential use as a substitute for petroleum processing oil in SKI-3 rubber compounds. The research addresses the conversion of an industrial residue into a potentially useful material while considering its application within polymer processing. By connecting waste-resource recovery with rubber technology, the study represents an applied approach to materials utilization, resource efficiency, and chemical engineering. Its subject matter is relevant to broader efforts toward improved industrial resource management and alternative material development [1].

Keywords

Best Research Article Award, Bibi-Mariyam Khassankhojayeva, Chemical Engineering, Oil Sludge, Oil-Sludge Valorization, Organic Fraction Recovery, Petroleum Processing Oil, SKI-3 Rubber, Rubber Compounds, Waste Valorization, Resource Recovery, Polymer Materials, Industrial Waste, Sustainable Materials, Chemical Processing.

Introduction

Oil sludge is a complex industrial residue generated during petroleum-related operations and may contain organic components that can be investigated for material recovery. Valorization approaches seek to convert such residues into useful resources rather than treating them solely as waste. The recognized study applies this concept to the recovery of an organic fraction and its potential incorporation into SKI-3 rubber compounds as an alternative to petroleum processing oil [1].

Research Profile

Bibi-Mariyam Khassankhojayeva is affiliated with the South Kazakhstan University of Muktar Auezov in Kazakhstan and is associated with research in Chemical Engineering. The supplied bibliographic information identifies six documents within the relevant research profile. Her recognized work addresses oil-sludge processing, organic-fraction recovery, and application of recovered material in SKI-3 rubber compounds, connecting chemical engineering with materials and waste-resource research [1].

Research Contributions

The recognized research contributes to the study of oil-sludge valorization by examining recovery of its organic fraction for subsequent material use. Its application to SKI-3 rubber compounds provides a specific pathway for investigating whether recovered organic material can substitute for petroleum processing oil. This approach combines waste-resource utilization with rubber formulation and demonstrates an applied chemical engineering perspective on secondary raw materials [1].

Publications

The supplied research profile indicates six documents associated with the specified academic record. The recognized paper focuses specifically on oil-sludge valorization, organic-fraction recovery, and substitution of petroleum processing oil in SKI-3 rubber compounds. A complete publication-level assessment would require examination of the individual records, including article titles, abstracts, journals, publication dates, co-authorship, citation relationships, and experimental findings [1].

Research Impact

The research has potential relevance to industrial waste management and materials development because it considers the recovery of an organic fraction from oil sludge for use in a rubber-compounding application. Substituting recovered material for petroleum processing oil may provide a research pathway for reducing dependence on virgin petroleum-derived inputs. The supplied profile records six documents, while broader impact should be assessed from documented citations, adoption, subsequent studies, and industrial validation [1].

Award Suitability

Bibi-Mariyam Khassankhojayeva is recognized with the Best Research Article Award for the study titled “Oil-Sludge Valorization Through Organic-Fraction Recovery and Its Use as a Substitute for Petroleum Processing Oil in SKI-3 Rubber Compounds.” The work addresses a clearly defined chemical engineering problem involving resource recovery and material application. Its focus on converting an industrial residue into a potential input for rubber processing provides an identifiable connection between waste valorization and materials engineering [1].

Conclusion

Bibi-Mariyam Khassankhojayeva of the South Kazakhstan University of Muktar Auezov, Kazakhstan, is recognized with the Best Research Article Award for research in Chemical Engineering. Her recognized study examines recovery of the organic fraction from oil sludge and its use as a substitute for petroleum processing oil in SKI-3 rubber compounds. The work provides an applied research perspective on waste valorization, resource recovery, and alternative materials for rubber processing [1].

External Links

References

  1. Khassankhojayeva, B.-M. (n.d.). Oil-Sludge Valorization Through Organic-Fraction Recovery and Its Use as a Substitute for Petroleum Processing Oil in SKI-3 Rubber Compounds. Research article information supplied for the Best Research Article Award.
    DOI:https://www.mdpi.com/2227-9717/14/19/3058
  2. ORCID. (n.d.). ORCID record: Bibi-Mariyam Khassankhojayeva.
    ORCID.https://orcid.org/0000-0002-3568-2043
  3. Best Paper Awards. (n.d.). Best Paper Awards.
    https://bestpaperawards.com/

Van-Can Nguyen | Chemical Engineering | Best Paper Award

Best Paper Award

Van-Can Nguyen
Affiliation National Cheng Kung University
Country Taiwan
Scopus ID 57212607906
Documents 117
Citations 3,801
h-index 37
Subject Area Chemical Engineering
Event International Research Excellence and Best Paper AwardsBest Paper Awards
ORCID 0000-0002-5851-0439

Van-Can Nguyen

Van-Can Nguyen of National Cheng Kung University, Taiwan is recognized with the Best Paper Award for research excellence in the field of Agriculture [1]. The recognized research, titled “Insights into radical coupling mechanisms of photocatalytic CO2 reduction and CH3OH reforming into C2 products”, focuses on radical coupling mechanisms associated with photocatalytic CO2 reduction and CH3OH reforming toward the formation of C2 products.

Abstract

This article recognizes Van-Can Nguyen with the Best Paper Award for research excellence in Agriculture [1]. The recognized paper, “Insights into radical coupling mechanisms of photocatalytic CO2 reduction and CH3OH reforming into C2 products”, investigates radical coupling mechanisms involved in photocatalytic CO2 reduction and CH3OH reforming for the production of C2 products. The research addresses reaction pathways and mechanistic understanding within photocatalytic conversion processes.

Keywords

Best Paper Award, Van-Can Nguyen, Agriculture, Photocatalytic CO2 Reduction, CH3OH Reforming, Radical Coupling, C2 Products, Photocatalysis, CO2 Conversion, Methanol Reforming, Reaction Mechanisms, Sustainable Chemistry, Catalysis.

Introduction

The recognized research focuses on the mechanistic aspects of photocatalytic CO2 reduction and CH3OH reforming, with particular attention to radical coupling processes leading toward C2 products [2]. Understanding reaction mechanisms is important for interpreting how photocatalytic systems transform carbon-containing feedstocks into higher-value products.

Research Profile

Van-Can Nguyen is affiliated with National Cheng Kung University in Taiwan and is associated with the subject area of Agriculture. The provided academic information records 117 documents, 3,801 citations, and an h-index of 37 [1]. These bibliometric indicators provide context for the researcher’s indexed scholarly record.

Research Contributions

The recognized paper contributes to research on photocatalytic CO2 conversion and CH3OH reforming by examining radical coupling mechanisms associated with the formation of C2 products [3]. The mechanistic focus provides a framework for understanding how reactive intermediates may participate in product-forming pathways.

Publications

The principal publication associated with this recognition is “Insights into radical coupling mechanisms of photocatalytic CO2 reduction and CH3OH reforming into C2 products.” The supplied information identifies this paper as the research basis for the Best Paper Award recognition in Agriculture [1].

Research Impact

The provided academic information records 3,801 citations across 117 documents, together with an h-index of 37 [1]. These indicators demonstrate substantial citation activity within the supplied indexed scholarly record.

Award Suitability

The Best Paper Award recognizes research demonstrating academic quality, relevance, originality, and meaningful contribution to its respective discipline [4]. The recognized work by Van-Can Nguyen aligns with these objectives through its focused investigation of radical coupling mechanisms in photocatalytic CO2 reduction and CH3OH reforming.

Conclusion

Van-Can Nguyen is recognized for research addressing photocatalytic CO2 reduction, CH3OH reforming, radical coupling mechanisms, and C2 product formation. The recognized publication, “Insights into radical coupling mechanisms of photocatalytic CO2 reduction and CH3OH reforming into C2 products,” focuses on mechanistic aspects of photocatalytic chemical conversion.

External Links

References

  1. Van-Can Nguyen – Scopus Author Profile. Scopus Author ID 57212607906.
    https://www.scopus.com/authid/detail.uri?authorId=6506451674
  2. Van-Can Nguyen – ORCID Profile. ORCID identifier 0000-0002-5851-0439.
    https://orcid.org/0000-0002-5851-0439
  3. Best Paper Awards. Best Paper Awards website and award information.
    https://bestpaperawards.com/

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Ashish Gome | Chemical Engineering | Best Academic Researcher Award

Dr. Ashish Gome | Chemical Engineering | Best Academic Researcher Award

Associate Professor | Prashanti Group of Institutes | India

Dr. Ashish Gome is an accomplished academician, researcher, and educational leader with more than twenty-two years of combined experience in academia, administration, and environmental consultancy. He earned his Ph.D. in Chemical Engineering from Rajiv Gandhi Proudyogiki Vishwavidyalaya, Bhopal in 2016, focusing on the application of ozone for pharmaceutical wastewater treatment, after completing his M.Tech. in Chemical Engineering with specialization in Environmental Management in 2005 and his B.E. in Chemical Engineering in 2000. Professionally, he has served as Dean Academics & Administration at Prashanti Group of Institutes, Ujjain, Associate Professor and Head of Department at Shri Guru Sandipani Institute of Technology & Science, and Academic Coordinator at Vikram University, while also contributing as an Environmental Consultant at AM Ozonics Ltd., Mumbai. His research interests center on advanced wastewater treatment technologies, ozonation processes, environmental management, and sustainable engineering solutions. Dr. Gome possesses strong research skills in experimental design, chemical kinetics, ozonation applications, biodegradability assessment, and simulation studies, reflected in his publications in reputed international journals including Springer, Scopus-indexed outlets, and environmental science journals. He has also delivered numerous presentations at national and international conferences and published collaborative works in environmental engineering. Among his academic honors, he qualified the prestigious GATE examination three times, secured All India Rank 8 in the University of Roorkee PG entrance in 2001, and has been invited as a distinguished speaker at global summits in Paris, Dubai, Prague, Osaka, Lisbon, and Helsinki, highlighting his growing international recognition. Additionally, he serves as a reviewer and editorial board member for international journals, and his Google Scholar profile records 39 citations with an h-index of 3. In conclusion, Dr. Ashish Gome has demonstrated exceptional leadership, research acumen, and academic contributions, making him a deserving candidate for recognition as a Best Academic Researcher with the potential to influence global advancements in environmental engineering and sustainable wastewater treatment.

Profile: ORCID

Featured Publications

  1. Gome, A., & Upadhyay, K. (2022). Removal of persistent chemical oxygen demand from pharmaceutical wastewater by ozonation at different pH. International Journal of Environmental Science and Technology.

  2. Gome, A., & Upadhyay, K. (2014). Impact of ozone dose on the removal of total solids from pharmaceutical wastewater. International Journal of Research in Chemistry & Environment, 4(3), 10–15.

  3. Gome, A., & Upadhyay, K. (2013). Effect of pH on the abatement of biochemical oxygen demand of pharmaceutical industry wastewater treated by ozone. International Journal of Advanced Research, 1(7), 416–422.

  4. Gome, A., & Upadhyay, K. (2013). Biodegradability assessment of pharmaceutical wastewater treated by ozone. International Research Journal of Environmental Sciences, 2(4), 21–25.

  5. Gome, A., & Upadhyay, K. (2012). Chemical kinetics of ozonation and other processes used for the treatment of wastewater containing pharmaceuticals: A review. International Journal of Current Research and Review, 4(22), 1–7.