Lina Wu | Water Pollution Control | Innovative Research Award

Innovative Research Award

Lina Wu
Beijing University of Civil Engineering and Architecture, China

Lina Wu
Affiliation Beijing University of Civil Engineering and Architecture
Country China
Scopus ID 56127362500
Documents 26
Citations 670
h-index 13
Subject Area Water Pollution Control
Event Metallurgical Engineering Awards

Lina Wu is a researcher affiliated with Beijing University of Civil Engineering and Architecture in China whose reported research profile is associated with water pollution control. The available bibliometric information lists 26 documents, 670 citations, and an h-index of 13 in Scopus. These indicators provide a quantitative view of publication and citation activity, while the scientific significance of individual contributions is more appropriately assessed through the quality, relevance, methodology, and influence of the underlying research. [1]

Abstract

Lina Wu’s research profile is situated within the field of water pollution control, an interdisciplinary area concerned with understanding, preventing, monitoring, and treating contaminants in aquatic environments. Contemporary water-treatment research encompasses adsorption, membrane separation, advanced oxidation, biological treatment, resource recovery, and integrated treatment systems. [2] The reported Scopus record of 26 documents, 670 citations, and an h-index of 13 indicates a sustained body of scholarly output with measurable citation activity. The research area is relevant to environmental engineering and broader efforts to improve water quality and develop technically effective pollution-control approaches. [3]

Keywords

Water pollution control; wastewater treatment; environmental engineering; water quality; contaminant removal; adsorption; membrane processes; advanced treatment; sustainable water management; environmental remediation.

Introduction

Water pollution control is a multidisciplinary research domain addressing the removal or transformation of chemical, biological, and physical contaminants from water and wastewater. Increasingly complex pollutant mixtures have encouraged research into treatment technologies that combine high removal efficiency with operational reliability, resource efficiency, and reduced environmental impact. Reviews of emerging water-treatment technologies identify adsorption, membrane technologies, advanced oxidation, and other physicochemical processes as important components of modern treatment research. [2] [1]

Research Profile

The supplied research profile identifies Lina Wu with Beijing University of Civil Engineering and Architecture and the subject area of Water Pollution Control. The reported Scopus Author ID is 56127362500. The profile contains 26 indexed documents, 670 citations, and an h-index of 13. [1] These figures describe the indexed research record supplied for this recognition profile and may change as databases are updated, publications are indexed, and citation records are revised.

Research Contributions

Research in water pollution control commonly seeks to improve contaminant removal while addressing treatment cost, energy demand, material performance, process stability, and environmental sustainability. Established literature emphasizes the need for treatment strategies capable of addressing diverse pollutant classes and increasingly stringent water-quality requirements. [2] Research on adsorption and related separation approaches has also demonstrated the importance of material properties, pollutant chemistry, regeneration, and process conditions in determining treatment performance. [3]

Publications

The supplied information establishes the size and citation indicators of Lina Wu’s Scopus-indexed research record but does not provide a verified publication list, article titles, journal names, publication years, or individual DOI identifiers. Accordingly, individual publications are not attributed here without primary bibliographic verification. The Scopus author record can be consulted for the indexed publication portfolio. [2] [3] [4]

Research Impact

The reported total of 670 citations and h-index of 13 indicate that the indexed research output has received measurable scholarly attention. [1] Citation-based indicators are useful for describing research visibility but should be interpreted in relation to field, publication age, collaboration patterns, journal coverage, and citation practices. They should not be treated as a standalone measure of research quality or societal impact. [4] [5]

Award Suitability

The Innovative Research Award is intended to recognize research characterized by originality, methodological contribution, scientific relevance, and potential value to the wider research community. Lina Wu’s reported specialization in Water Pollution Control and the supplied bibliometric record provide relevant evidence of an established research profile. The reported 26 documents, 670 citations, and h-index of 13 demonstrate sustained scholarly activity within the indexed record. [1]

Conclusion

Lina Wu’s academic profile is associated with Water Pollution Control at Beijing University of Civil Engineering and Architecture in China. The supplied Scopus indicators report 26 documents, 670 citations, and an h-index of 13. [1] These metrics indicate an established indexed research record, while the broader significance of the work should be evaluated through the scientific content and contributions of the associated publications. Research in water pollution control remains important to the development of effective, efficient, and sustainable approaches for protecting water resources and managing contaminants.

References

  1. Elsevier. (n.d.). Scopus author details: Lina Wu, Author ID 56127362500. Scopus.
    https://www.scopus.com/pages/authors/56127362500
  2. L Wu, Y Zhang, J Yin, A Luo, et al. (2024). Achieving advanced nitrogen removal from mature landfill leachate in continuous flow system involving partial nitrification-anammox and denitrification.
    https://www.sciencedirect.com/science/article/pii/S0960852424002566
  3. L Wu, S Lu, F Ye, J Lu, X Liu, Y Tian. (2026). Multidimensional Differences and Driving Mechanisms of Bacterial Communities in Urban and Rural Rivers Across China.
    https://www.mdpi.com/2076-2607/14/6/1185
  4. X Qi, L Wu, J Xu, L Xiao, L Zhang. (2026). Rapid start-up and microbial community succession of a two-stage upflow anaerobic sludge blanket-anoxic/oxic coupled reactor system.
    https://link.springer.com/article/10.1007/s11783-026-2266-x
  5. L Wu, Y Liu, Y Tian, J Xu, et al. (2025). Innovative hybrid anaerobic ammonium oxidation system enhances nitrogen and sulfur elimination in landfill leachate treatment.
    https://www.sciencedirect.com/science/article/pii/S0960852425010223

Mohammad Mahdi Pazuki | Solar Desalination | Editorial Board Member

Editorial Board Member

Mohammad Mahdi Pazuki
K.N. TOOSI UNIVERSITY OF TECHNOLOGY, Iran

Mohammad Mahdi Pazuki
Affiliation K.N. TOOSI UNIVERSITY OF TECHNOLOGY
Country Iran
Scopus ID 59311024000
Documents 11
Citations 213
h-index 8
Subject Area Solar Desalination
Event Metallurgical Engineering Awards
ORCID 0009-0003-0923-7119

Mohammad Mahdi Pazuki is an academic researcher affiliated with K.N. TOOSI UNIVERSITY OF TECHNOLOGY, Iran, whose stated subject area is solar desalination. His research profile is associated with the application of solar energy and engineering approaches to desalination and sustainable water treatment. The available bibliometric information identifies 11 documents, 213 citations, and an h-index of 8 in the supplied Scopus profile data. The researcher is also identified through ORCID, providing a persistent digital identifier for scholarly activities and publications.
[1]

Abstract

Mohammad Mahdi Pazuki is an academic researcher at K.N. TOOSI UNIVERSITY OF TECHNOLOGY, Iran, with a stated research specialization in solar desalination. Solar desalination encompasses technologies that use solar thermal or photovoltaic energy to support processes for separating salts and other dissolved constituents from saline water. Current research in the field includes solar stills, solar-assisted thermal desalination, photovoltaic-powered reverse osmosis, membrane distillation, and integrated renewable-energy systems.[2][3]

Keywords

Mohammad Mahdi Pazuki; Solar desalination; Renewable energy; Water treatment; Desalination technologies; Membrane distillation; Sustainable water production; K.N. TOOSI UNIVERSITY OF TECHNOLOGY

Introduction

Solar desalination is an interdisciplinary research area connecting renewable energy, thermal engineering, membrane science, water treatment, and process optimization. The objective is to use solar energy to reduce reliance on conventional energy sources in processes that convert saline or brackish water into freshwater. Reviews of the field describe several technological pathways, including solar thermal systems, solar stills, photovoltaic-powered reverse osmosis, and solar-assisted membrane distillation.[4][5]

Research Profile

The supplied research profile identifies Mohammad Mahdi Pazuki with K.N. TOOSI UNIVERSITY OF TECHNOLOGY in Iran and associates his research subject area with solar desalination. The profile information supplied for this article lists Scopus Author ID 59311024000, 11 indexed documents, 213 citations, and an h-index of 8.[1][2]

Research Contributions

Based on the stated subject area, Pazuki’s scholarly profile is relevant to research concerning the engineering development and assessment of solar desalination systems. The broader field includes investigation of energy conversion, thermal processes, water production, membrane technologies, and system-level performance.[2][4]

Publications

The supplied Scopus information records 11 documents associated with the researcher’s author profile.[1]
This article does not attribute specific publication titles to Mohammad Mahdi Pazuki unless they are independently identified in the supplied source information. The following literature is included as contextual scholarship for the solar desalination research area rather than as a list of publications authored by Pazuki.

  • Jinjing Hu, Mohammad‐Mahdi Pazuki, et al. Biomimetic design of breathable 2D photothermal fabric with three‐layered structure for efficient four‐plane evaporation of seawater[2]

Research Impact

The supplied bibliometric profile reports 213 citations and an h-index of 8 across 11 documents.[1]
These metrics indicate that the researcher’s indexed publications have received measurable scholarly attention. Citation counts and h-index values are database-dependent indicators and should be interpreted in relation to field, career stage, publication history, indexing coverage, and the date on which the profile is consulted.

Award Suitability

Mohammad Mahdi Pazuki’s stated research specialization in solar desalination provides a relevant academic connection to the interdisciplinary scope of the Metallurgical Engineering Awards. Solar desalination involves engineering materials, thermal processes, membranes, surface properties, energy conversion, and system design, creating points of interaction with materials and engineering research.

Conclusion

Mohammad Mahdi Pazuki is identified in the supplied profile as a researcher at K.N. TOOSI UNIVERSITY OF TECHNOLOGY, Iran, working in the subject area of solar desalination. The available profile data reports 11 documents, 213 citations, and an h-index of 8, while the ORCID identifier provides an additional mechanism for scholarly identity management. Solar desalination remains an interdisciplinary field involving renewable energy, water treatment, thermal engineering, membranes, and sustainable process development. The research profile is therefore relevant to broader academic discussions concerning renewable-energy-enabled freshwater production and engineering approaches to sustainable water treatment.

References

  1. Elsevier. (n.d.). Scopus author details: Mohammad Mahdi Pazuki, Author ID 59311024000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59311024000
  2. MM Pazuki, MR Kolahi, M Ebadollahi, M Amidpour. (2024). Enhancing efficiency in an innovative geothermal poly-generation system for electricity, cooling, and freshwater production through integrated multi-objective optimization: A holistic approach to energy, exergy, and enviroeconomic effects.
    https://www.sciencedirect.com/science/article/pii/S0360544224036405
  3. H Xie, X Li, J Hu, MM Pazuki, et al. (2025). Honeycomb-inspired design of double-layer photothermal/electrothermal fabric for all-weather steam generation.
    https://www.sciencedirect.com/science/article/pii/S0011916425000542
  4. A Hakimi, MM Pazuki, M Salimi, M Amidpour, et al. (2024). Renewable energy and cryptocurrency: A dual approach to economic viability and environmental sustainability.
    https://www.cell.com/heliyon/fulltext/S2405-8440(24)15796-9
  5. H Ren, J Hu, MM Pazuki, et al. (2025). 2D cotton fabric coated with 3D chitosan/carbon-black aerogel for continuous efficient solar desalination.
    https://www.sciencedirect.com/science/article/pii/S1385894725041105

Aminur Rahman | Heavy Metal Removal | Best Researcher Award

Dr. Aminur Rahman | Heavy Metal Removal | Best Researcher Award

Assistant Professor at King Faisal University | Bangladesh

Dr. Aminur Rahman is a leading researcher in environmental biotechnology and microbiology, recognized for impactful work on heavy metal bioremediation, wastewater treatment, and antimicrobial resistance. His research integrates microbial genomics, bio-based adsorbents, and sustainable technologies to address critical environmental and public health challenges. With 40 peer-reviewed publications, 797 citations, and an h-index of 16 (Scopus), his scholarly contributions demonstrate strong productivity, quality, and global relevance. His work has advanced eco-friendly remediation strategies and informed applied solutions for contaminated water systems, positioning him as a highly deserving candidate for the Best Researcher Award.

Citation Metrics (Scopus)

800

500

250

50

0

Citations
797

Documents
40

h-index
16

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