Pacifique Madibi | Remote Sensing | Innovative Research Award

Innovative Research Award

Pacifique Madibi
Clark University, United States

Pacifique Madibi
Affiliation Clark University
Country United States
Google Scholar ID ZLbnlJ0AAAAJ
Documents 5
Citations 10
h-index 2
Subject Area Remote Sensing
Event Global Innovation Technologist Awards
ORCID 0009-0001-1081-6631

Pacifique Madibi is a researcher affiliated with Clark University whose scholarly work is situated in remote sensing, geographic information systems (GIS), land-cover mapping, and tropical forest environmental monitoring. The available publication record demonstrates an applied research orientation toward using Earth-observation data to examine land-use dynamics and environmental change in the Democratic Republic of the Congo (DRC). [1]

Abstract

The research profile of Pacifique Madibi reflects the application of remote sensing and GIS techniques to environmental and land-use questions in tropical landscapes. His publications address forest dynamics, mangrove conservation, agricultural land detection, and methods for distinguishing human-induced land changes. These studies employ satellite imagery and spatial analysis to support evidence-based understanding of landscape transformation. [2] [3]

Keywords

Remote sensing; geographic information systems; GIS; land-cover dynamics; tropical forests; mangroves; Landsat; environmental monitoring; land-use change; spatial analysis.

Introduction

Remote sensing provides repeatable observations for monitoring landscapes across large geographic areas, while GIS enables the integration, classification, and spatial interpretation of environmental information. Madibi’s research applies these approaches to geographically and ecologically important regions of the DRC, where agricultural expansion, urban growth, mining, and other pressures can alter forest and coastal ecosystems. [4]

Research Profile

The documented profile comprises five research documents, ten citations, and an h-index of two. The principal subject area is Remote Sensing, with closely related work in GIS, forest ecology, land-cover classification, and environmental change detection. The research is characterized by geographically focused case studies and the use of satellite-derived information for environmental assessment.

Research Contributions

  • Development of GIS approaches for distinguishing agricultural and mining-related land changes in protected tropical forest areas. [1]
  • Mapping and temporal assessment of mangrove land-cover dynamics in the Moanda Mangrove Marine Park. [2]
  • Application of Landsat imagery for automated detection and mapping of shaded cocoa fields in tropical forest environments. [3]
  • Assessment of demographic growth and urban expansion in relation to forest dynamics around Kikwit. [4]

Publications

GIS Methods to Distinguish Between Land Changes from Smallholder Agriculture and Mining in a Time Series for a Tropical Protected Area Forest, Land, published September 2, 2026. [1]

Mapping the land cover dynamics of the Moanda Mangrove Marine Park in Central Kongo Province, DRC from 2002 to 2020, Pirineos, December 30, 2024. [2]

Détection automatique et cartographie des champs de cacaoyers sous-ombrage en zone forestière tropicale à l’aide d’images Landsat dans la Province de l’Ituri en République Démocratique du Congo, Revue africaine d’environnement et de d’agriculture, March 11, 2022. [3]

Research Impact

The research contributes to environmental monitoring by demonstrating how remotely sensed imagery and GIS can support the identification and interpretation of landscape change. Its geographic emphasis on the DRC provides context-specific evidence relevant to forest conservation, agricultural monitoring, mangrove management, and land-use planning. The documented citation count is ten, with an h-index of two, indicating an emerging research impact profile.

Award Suitability

The Innovative Research Award category is academically relevant to Madibi’s profile because the documented studies apply geospatial technologies to practical environmental research problems. In particular, the integration of satellite imagery, temporal land-cover analysis, and GIS-based differentiation of land-use processes represents a coherent methodological theme. [1] [2]

Conclusion

Pacifique Madibi’s documented research profile centers on remote sensing and GIS applications for environmental and land-use assessment. His publications collectively demonstrate sustained attention to tropical forest, mangrove, agricultural, and urban landscape dynamics. These contributions provide a suitable scholarly basis for consideration under an innovative research recognition framework.

References

  1. Madibi, P. (2026). GIS Methods to Distinguish Between Land Changes from Smallholder Agriculture and Mining in a Time Series for a Tropical Protected Area Forest. Land, 15(9), 1630.
    https://doi.org/10.3390/land15091630
  2. Madibi, P. (2024). Mapping the land cover dynamics of the Moanda Mangrove Marine Park in Central Kongo Province, DRC from 2002 to 2020. Pirineos.
    https://doi.org/10.3989/pirineos.2024.179.346
  3. Madibi, P. (2022). Détection automatique et cartographie des champs de cacaoyers sous-ombrage en zone forestière tropicale à l’aide d’images Landsat dans la Province de l’Ituri en République Démocratique du Congo. Revue africaine d’environnement et de d’agriculture.
    https://www.rafea-congo.com/?pages=article&id=162
  4. Madibi, P. (2021). Impact de la croissance démographique et de l’expansion urbaine sur la dynamique forestière des zones environnantes de la ville de Kikwit en République Démocratique du Congo. Revue Africaine d’Environnement et d’Agriculture.
    Research publication record
  5. ORCID. (n.d.). Pacifique Madibi, ORCID record.
    https://orcid.org/0009-0001-1081-6631
  6. Global Innovation Technologist Awards. (n.d.). Official award website.
    innovationtechnologist.com

Yilian Liao | Earth and Planetary Sciences | Innovative Research Award

Innovative Research Award

Yilian Liao  
Peking University, China

Yilian Liao
Affiliation Peking University
Country China
Scopus ID 59897784500
Documents 2
Citations 2
h-index 1
Subject Area Earth and Planetary Sciences
Event Global Innovation Technologist Awards

Yilian Liao is affiliated with Peking University and works within the field of Earth and Planetary Sciences. The research record highlighted here includes the 2025 article Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision, published in Tectonics with Umar Farooq Jadoon, Baochun Huang, Muhammad Waqar Azeem, Ahsan Ali Khan, Tehseen Zafar, and Hongliang Lu. The article examines paleomagnetic evidence from the western Tethyan Himalaya and its implications for reconstructing the India–Asia collision history. [1]

Abstract

The featured study investigates Jurassic and Eocene paleomagnetism in the western Tethyan Himalaya to clarify the timing and geodynamic development of the India–Asia collision. The research analyzes the Samanasuk and Shekhan formations and distinguishes between remagnetized and primary magnetic signals. The study reports that the Jurassic Samanasuk Formation underwent chemical remagnetization around 40 Ma, whereas the Eocene Shekhan Formation retains primary remanence. The resulting paleolatitudinal estimates support a multistage model for India–Asia convergence and provide evidence relevant to Himalayan–Tibetan tectonic reconstruction. [1] [2]

Keywords

  • Paleomagnetism
  • Tethyan Himalaya
  • India–Asia collision
  • Rock magnetism

Introduction

The Tethyan Himalaya constitutes a northern continental component of the India Plate and is central to understanding the Cenozoic development of the Himalayan–Tibetan orogen. Paleomagnetic observations can provide constraints on ancient latitude, plate movement, and collision chronology, although secondary magnetization can complicate geological interpretation. [2]

The featured 2025 Tectonics article addresses this problem through analysis of Jurassic and Eocene formations in the western Tethyan Himalaya. Its findings contribute to discussion of whether India–Asia convergence occurred as a single event or through multiple tectonic stages. [1]

Research Profile

The available profile identifies Yilian Liao with Peking University and the Earth and Planetary Sciences subject area. The Scopus record supplied for this recognition profile lists 2 documents, 2 citations, and an h-index of 1. These bibliometric indicators represent the supplied record and should be interpreted in relation to publication age, field norms, collaboration patterns, and database coverage.

Research Contributions

The featured publication contributes paleomagnetic evidence for reconstructing the western Tethyan Himalaya during the Jurassic and Eocene. The authors report a positive fold test and distinguish a chemically remagnetized Jurassic signal from primary Eocene remanence. The study estimates a paleolatitudinal difference of approximately 12.6° ± 5.5° between the Tethyan Himalaya and the India Craton around 50 Ma, an observation interpreted in the context of a multistage India–Asia collision model. [1]

Publications

Jadoon, U. F., Huang, B., Azeem, M. W., Liao, Y., Khan, A. A., Zafar, T., & Lu, H. (2025). Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision.

Research Impact

The research has relevance to paleomagnetism, regional tectonics, and reconstruction of the India–Asia collision. By separating primary remanence from later chemical remagnetization, the study illustrates the importance of evaluating magnetic reliability before using paleomagnetic data for plate-reconstruction models. Its reported paleolatitudinal constraints provide a quantitative basis for examining stages of convergence between the Indian and Asian continental domains. [1] The supplied Scopus record reports 2 citations for the researcher profile, while the featured article itself is separately indexed in scholarly databases. [3]

Award Suitability

For the Innovative Research Award category associated with the Global Innovation Technologist Awards, the featured work provides a documented example of research addressing a defined geological and geodynamic problem through paleomagnetic analysis. Its relevance to Earth and Planetary Sciences, methodological focus, quantitative paleolatitudinal results, and contribution to interpretations of the India–Asia collision provide reasonable scholarly grounds for consideration. Award suitability, however, remains subject to the formal eligibility and evaluation criteria of the awarding organization.

Conclusion

Yilian Liao’s research profile is represented here through a peer-reviewed contribution to paleomagnetic and tectonic research concerning the western Tethyan Himalaya. The 2025 Tectonics article provides evidence distinguishing remagnetization from primary magnetic signals and develops paleolatitudinal constraints relevant to models of India–Asia convergence. [1] Within the supplied bibliometric record, the publication represents a focused contribution to Earth and Planetary Sciences and a relevant basis for academic recognition.

References

  1. Jadoon, U. F., Huang, B., Azeem, M. W., Liao, Y., Khan, A. A., Zafar, T., & Lu, H. (2025). Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision.
  2. Peking University Institutional Repository. (2025). Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision.
  3. Elsevier. (n.d.). Scopus author details: Yilian Liao, Author ID 59897784500. Scopus.
    https://www.scopus.com/pages/authors/59897784500
  4. American Geophysical Union. (2025). Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision. Tectonics, 44(8).
  5. Jadoon, U. F., Huang, B., Azeem, M. W., Liao, Y., Khan, A. A., Zafar, T., & Lu, H. (2024). Jurassic and Eocene Paleomagnetism in the Western Tethyan Himalaya: Implications for the India-Asia Collision [Dataset]. Dryad.
    https://doi.org/10.5061/dryad.2rbnzs7z9