Fatima Zahra Janani | Environmental Chemistry | Best Researcher Award

Best Researcher Award

Fatima Zahra Janani
University Sultan Moulay Slimane, Morocco

Fatima Zahra Janani
Affiliation University Sultan Moulay Slimane
Country Morocco
Scopus ID 57221292976
Documents 17
Citations 426
h-index 10
Subject Area Environmental Chemistry
Event International Chemistry Scientist Awards

Fatima Zahra Janani is an environmental chemistry researcher affiliated with University Sultan Moulay Slimane in Morocco. Her scholarly profile is associated with 17 documents, 426 citations, and an h-index of 10 according to the supplied Scopus information. Her research record provides a basis for consideration in the Best Researcher Award category within the International Chemistry Scientist Awards.

Abstract

Fatima Zahra Janani is an environmental chemistry researcher at University Sultan Moulay Slimane, Morocco, whose scholarly profile reflects sustained engagement with chemistry-related research and scientific communication. The supplied Scopus record identifies 17 documents, 426 citations, and an h-index of 10. These indicators provide a quantitative overview of her indexed research activity and scholarly visibility. Her subject-area classification in Environmental Chemistry places her work within a field concerned with chemical processes, environmental systems, pollutants, and sustainable approaches to environmental challenges. The Best Researcher Award recognizes researchers whose documented contributions demonstrate scholarly productivity, research relevance, and measurable academic impact. Janani’s available bibliometric profile offers an evidence-based foundation for evaluating her candidature alongside qualitative assessment of research contributions, publication quality, originality, and broader scientific significance. The recognition is associated with the International Chemistry Scientist Awards, providing an international context for consideration of researchers working across chemistry and related disciplines.[2]

Keywords

Best Researcher Award, Fatima Zahra Janani, Environmental Chemistry, University Sultan Moulay Slimane, Morocco, Scopus, Research Impact, Scholarly Productivity, Environmental Research, Chemistry Awards

Introduction

Environmental chemistry examines chemical processes occurring within natural and human-impacted environments and contributes to understanding contamination, transformation, and sustainability. Researchers in this field often work across analytical chemistry, environmental monitoring, materials, remediation, and related disciplines. Janani’s supplied academic profile places her within this broad research domain at University Sultan Moulay Slimane. [1]

Research Profile

The available profile identifies Fatima Zahra Janani with University Sultan Moulay Slimane in Morocco and assigns Environmental Chemistry as the principal subject area. Her supplied Scopus identifiers include author ID 57221292976, 17 indexed documents, 426 citations, and an h-index of 10. These metrics provide a concise bibliometric representation of her research record. [1]

Research Contributions

Janani’s research profile is positioned within Environmental Chemistry, a multidisciplinary area requiring integration of chemical principles with environmental assessment and problem solving. Her documented publication activity indicates participation in scholarly research within this subject area. Detailed evaluation of individual contributions should consider article-level evidence, methodological rigor, originality, collaboration, and relevance to environmental chemistry. [1]

Publications

The supplied Scopus record reports 17 documents associated with Fatima Zahra Janani. This publication count indicates an established indexed research output, while the citation total of 426 suggests that the published work has received measurable scholarly attention. Individual publication titles, journals, dates, co-authors, and DOI identifiers were not supplied and should be verified directly through authoritative bibliographic records. [2]

Research Impact

Research impact can be assessed through complementary quantitative and qualitative evidence. Janani’s supplied bibliometric indicators include 426 citations and an h-index of 10, providing measurable evidence of scholarly visibility in indexed literature. These indicators should be interpreted alongside publication quality, citation context, research originality, collaboration, and practical or scientific relevance. [1]

Award Suitability

The supplied academic indicators make Janani a candidate for consideration for the Best Researcher Award. Her affiliation, Environmental Chemistry specialization, indexed document count, citation record, and h-index provide identifiable evidence for an initial scholarly assessment. Final award suitability should additionally consider verified publications, originality, research quality, academic leadership, societal relevance, and supporting nomination documentation.[2]

Conclusion

Fatima Zahra Janani’s supplied Scopus profile presents a measurable record of research activity in Environmental Chemistry, supported by 17 documents, 426 citations, and an h-index of 10. Her affiliation with University Sultan Moulay Slimane establishes an academic context for this work. The profile provides relevant evidence for consideration within the Best Researcher Award, subject to independent verification and qualitative assessment.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Fatima Zahra Janani, Author ID 57221292976. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221292976
  2. El Harmouchi, H., Janani, F. Z., Alami, S., Moumouche, O., Elouhabi, N., Barka, N., & Harcharras, M. (n.d.). Synthesis, characterization and photocatalytic activity of ZnCuP₂O₇/TiO₂ composite for degradation of methyl orange (MO) under UV-irradiation.
    https://www.sciencedirect.com/science/article/abs/pii/S187610702600180X

Amr Mohamed | Environmental Chemistry | Innovative Research Award

Innovative Research Award

Amr Mohamed
Horticulture Research Institute of Agricultural Research Center, Egypt

Amr Mohamed
Affiliation Horticulture Research Institute of Agricultural Research Center
Country Egypt
Scopus ID 57200201975
Documents 11
Citations 126
h-index 4
Subject Area Environmental Chemistry
Event International Chemistry Scientist Awards
ORCID 0000-0001-5844-4219

Amr Mohamed is a researcher affiliated with the Horticulture Research Institute of Agricultural Research Center in Egypt, working within the broad field of Environmental Chemistry. His indexed research record comprises 11 documents and 126 citations, with a reported h-index of 4 in Scopus. [1] His scholarly profile provides a basis for considering research contributions associated with environmental chemical processes, agricultural systems, and sustainability-oriented scientific inquiry. The present article summarizes the available bibliometric information and describes the relevance of this research profile to the Innovative Research Award at the International Chemistry Scientist Awards.

Abstract

Amr Mohamed is affiliated with the Horticulture Research Institute of Agricultural Research Center, Egypt, and has a documented research profile in Environmental Chemistry. His Scopus record reports 11 documents, 126 citations, and an h-index of 4. His research profile connects environmental chemical inquiry with agricultural and horticultural contexts, providing a basis for assessing scientific contribution, publication activity, research visibility, and potential relevance to innovation-focused recognition. This article presents a concise scholarly overview of his profile for consideration in the Innovative Research Award category of the International Chemistry Scientist Awards, while maintaining a neutral evidence-based perspective throughout. [2]

Keywords

Keywords: Environmental Chemistry, Agricultural Chemistry, Horticultural Research, Environmental Science, Agricultural Research, Chemical Processes, Sustainability, Research Impact, Scientific Publications, Innovation, Research Recognition, Egypt.

Introduction

Environmental Chemistry examines chemical processes occurring in natural and human-influenced environments and is closely connected with agricultural sustainability, environmental quality, and resource management. Within horticultural and agricultural research, chemical analysis can contribute to understanding environmental interactions and developing evidence-based approaches to sustainable production. Amr Mohamed’s documented subject area is Environmental Chemistry, while his institutional affiliation places this work within an agricultural research setting. [1]

Research Profile

Amr Mohamed’s listed affiliation is the Horticulture Research Institute of Agricultural Research Center in Egypt. His Scopus author record identifies Author ID 57200201975 and reports 11 indexed documents, 126 citations, and an h-index of 4. [1] These indicators provide a measurable snapshot of scholarly visibility within the indexed literature.

Research Contributions

The available profile places Mohamed’s research within Environmental Chemistry and an agricultural research environment. This combination is relevant to scientific questions involving chemical processes, environmental conditions, and horticultural or agricultural systems. A complete assessment of individual contributions requires examination of the underlying publications, methods, datasets, collaborations, and documented findings rather than bibliometric indicators alone. [2]

Publications

The Scopus profile supplied for this article reports 11 documents associated with the researcher. [1] Because individual publication titles, journal information, publication years, and DOI identifiers were not supplied in the source data, this article does not assign unverified titles or DOI numbers to specific works. For a publication-level evaluation, the indexed documents should be reviewed directly for research topic, methodological contribution, citation context, journal quality, collaboration, and reproducibility.

Research Impact

Research impact can be considered through multiple dimensions, including scholarly citations, publication quality, disciplinary relevance, collaboration, practical applicability, and influence on subsequent research. The supplied Scopus record reports 126 citations and an h-index of 4 for Amr Mohamed. [1] These figures indicate measurable citation activity, although citation counts vary over time and should be interpreted in relation to career stage, field, publication age, and disciplinary citation practices. [2]

Award Suitability

Based on the supplied information, Mohamed’s profile is relevant to an award category focused on innovative research in chemistry because Environmental Chemistry is explicitly identified as the subject area and the researcher has an indexed publication and citation record. [1] Final award evaluation should additionally examine the originality, rigor, significance, and documented outcomes of the submitted research. [1]

Conclusion

Amr Mohamed’s documented academic profile combines an Environmental Chemistry research focus with an affiliation at the Horticulture Research Institute of Agricultural Research Center in Egypt. The supplied Scopus indicators comprise 11 documents, 126 citations, and an h-index of 4. [1] These data establish a measurable scholarly record, while a complete determination of innovative research merit should be based on detailed evaluation of publications, methodologies, originality, scientific significance, and documented research outcomes. [3]

References

  1. Elsevier. (n.d.). Scopus author details: Amr Mohamed, Author ID 57200201975. Scopus.
    https://www.scopus.com/pages/authors/57200201975
  2. ORCID. (n.d.). ORCID profile of Amr Mohamed. ORCID Registry.
    https://orcid.org/0000-0001-5844-4219
  3. Mohamed, A. S., Elhafez, A. E. A., & Ahmad, M. M. N. (n.d.). Mitigating the harmful consequences of arsenic on Celosia plants via the use of GABA.
    https://link.springer.com/article/10.1186/s12870-026-08384-2

Dr. Karim Al Souki | Environmental Chemistry | Best Researcher Award

Dr. Karim Al Souki | Environmental Chemistry | Best Researcher Award

Dr. Karim Al Souki , Environmental Chemistry , Jan Evangelista Purkyne University , Czech Republic

Dr. Karim Al Souki is a postdoctoral researcher and assistant professor at the Faculty of Environment, Jan Evangelista Purkyne University (UJEP), Czechia. With a Ph.D. in Earth and Universe Sciences from Lille 1 University, France, his academic journey reflects a strong foundation in plant biology and environmental sciences. Dr. Al Souki’s research spans phytoremediation, bioremediation, biochar utilization, and climate change mitigation through sustainable phytotechnology. He is a key contributor to international projects funded by NATO, Erasmus+, and Interreg, focusing on ecosystem restoration, water management, and environmental biotechnology. As an educator, he has taught courses across Europe on subjects such as environmental biotechnology, phytotechnology, and bio-economy. Dr. Al Souki’s interdisciplinary approach blends ecological theory with applied environmental solutions, making significant contributions to marginal land restoration and water pollution mitigation. His work promotes sustainability, ecological awareness, and environmental resilience through innovation and education.

Professional Profile : 

Orcid

Scopus 

Summary of Suitability for Award:

With a Ph.D. in Earth and Universe Sciences from Lille 1 University (France), and two Master’s degrees in Phyto-ecology and Plant Biology from Lebanese University, Dr. Karim Al Souki demonstrates a solid and multidisciplinary academic foundation. Dr. Karim Al Souki  leads and contributes to cutting-edge projects on phytoremediation, biochar technology, and environmental biotechnology—directly addressing climate change, pollution mitigation, and sustainable soil management. His research covers analytical techniques (FTIR, TGA, stable isotopes, DNA extraction), linking practical fieldwork with lab-based precision, ensuring both academic rigor and societal relevance. His role as project supervisor in initiatives like IDEAL and NATO-SPS illustrates leadership in shaping future environmental policies and technologies. Dr. Karim Al Souki is an ideal candidate for the “Best Researcher Award”, given his consistent, interdisciplinary contributions to environmental sciences. His research directly supports global sustainability goals through practical, innovative, and scalable solutions. Furthermore, his educational outreach, cross-border collaborations, and commitment to solving real-world ecological problems distinguish him as a researcher of international repute. This award would recognize and further empower his impactful scientific journey.

🎓Education:

Dr. Al Souki pursued his academic studies in biology and environmental sciences. He earned his Bachelor’s degree in General Biology (2008–2010), followed by a Master 1 in Plant Biology and Environment (2010–2011), and a Master 2 in Phyto-ecology, Resources, and Security Applications (2011–2012), all from Lebanese University, Lebanon. He then completed his Ph.D. in Earth and Universe Sciences at LGCgE, ISA-Lille, Lille 1 University of Sciences and Technologies, France (2014–2017). His academic foundation combines ecological sciences, environmental applications, and molecular understanding of plant-soil interactions. This educational pathway equipped him with the necessary tools to integrate ecological theory with practical environmental solutions. His training in Europe and the Middle East enabled him to adopt a multidisciplinary perspective and work in cross-cultural academic and research environments. His education has laid the groundwork for his specialization in environmental biotechnology, phytoremediation, and biochar applications.

🏢Work Experience:

Since October 2018, Dr. Karim Al Souki has been serving as a Post-doctoral researcher and Assistant Professor at UJEP, Czechia, where he teaches and conducts advanced research in environmental sciences. His prior experience includes teaching roles at ESME Sudria (France) and private institutions in Lille, where he lectured in phytoecology, molecular biology, and environmental science. He has supervised and contributed to numerous EU- and NATO-funded projects related to phytotechnology, biochar, soil-plant interactions, and wastewater treatment. His pedagogical contributions span multiple European universities and platforms, such as Erasmus, COIL, and ISA-Lille. He has taught subjects including Bioremediation, Bio-economy, Environmental Biotechnology, and Climate Change. Dr. Al Souki’s interdisciplinary teaching and research experience enable him to link theoretical knowledge with field-based applications, fostering student engagement and scientific problem-solving skills relevant to contemporary ecological challenges.

🏅Awards: 

Dr. Karim Al Souki has been recognized for his impactful research and cross-border educational initiatives. He is the Principal Investigator or Supervisor on several prestigious projects funded by international agencies such as NATO Science for Peace and Security Programme, Interreg (IDEAL project), and Erasmus+, highlighting his leadership in environmental science and sustainability education. He received the UJEP Internal Grant Agency funding multiple times (2021–2023), supporting his innovative work on biochar and Miscanthus x giganteus in soil restoration. He was awarded the Usti nad Labem region grant for young researchers for his study on quinoa in polluted soils. His consistent success in securing competitive research grants attests to the scientific merit and societal relevance of his projects. These accolades recognize his commitment to ecosystem services, educational outreach, and environmental restoration, and affirm his role as a rising figure in applied environmental sciences and international academic collaboration.

🔬Research Focus:

Dr. Al Souki’s research centers on phytotechnology, bioremediation, biochar characterization, and ecosystem service enhancement in marginal and contaminated soils. He specializes in using Miscanthus x giganteus and quinoa to rehabilitate former military lands and toxic-element-polluted environments. His research integrates stable isotope analysis, DNA-based microbial community profiling, and plant physiological assessments to explore rhizospheric interactions, nutrient cycling, and carbon sequestration. His work on biochar, especially its physico-chemical and ecotoxicological properties, supports sustainable agricultural and water reuse practices. His active projects include NATO-funded studies on climate change mitigation and EU-supported educational modules for water sustainability in the Elbe/Labe basin. His interdisciplinary approach links environmental microbiology, plant ecophysiology, and green chemistry, targeting real-world environmental problems with practical, nature-based solutions. His goal is to bridge science and education to improve soil health, water quality, and resilience against climate change.

Publication Top Notes:

1. An overview of potentially toxic element pollution in soil around lead–zinc mining areas

2. A comprehensive evaluation of the environmental and health risks associated with the potential utilization of chars produced from tires, electro-waste plastics and biomass

3. Characterizations of ash derived from the crops’ waste biomass for soil improvement and assisted phytoremediation

4. A 6-year review status on soil pollution in coal mining areas from Europe

5. Extracted rapeseed meal biochar combined with digestate as a soil amendment: Effect on lettuce (Lactuca sativa L.) biomass yield and concentration of bioavailable element fraction in the soil

6. Miscanthus x giganteus stress tolerance and phytoremediation capacities in highly diesel contaminated soils

7. The influence of diesel contaminated soil on Miscanthus x giganteus biomass thermal utilization and pyrolysis products composition

8. Evaluation of Miscanthus × giganteus Tolerance to Trace Element Stress: Field Experiment with Soils Possessing Gradient Cd, Pb, and Zn Concentrations

9. Efficient Wastewater Treatment and Removal of Bisphenol A and Diclofenac in Mesocosm Flow Constructed Wetlands Using Granulated Cork as Emerged Substrate

10. Utilization of Biochar for Eliminating Residual Pharmaceuticals from Wastewater Used in Agricultural Irrigation: Application to Ryegrass