Muhammad Usman | Soil Science | Editorial Board Member

Dr. Muhammad Usman | Soil Science | Editorial Board Member

University of Agriculture Faisalabad | Pakistan

Muhammad Usman is a soil scientist and emerging environmental researcher whose work focuses on soil contamination, heavy metal dynamics, nanoparticles in agriculture, salinity tolerance, and sustainable crop production systems. He holds a PhD in Soil Science from the University of Agriculture Faisalabad, where he also earned his MSc (Hons.) and BSc (Hons.) in Agriculture with specialization in Soil Science. with publications appearing in Chemosphere, Environmental Research, Environmental Pollution, Journal of Hazardous Materials, Plants, Phyton, and Arabian Journal of Geosciences. His research contributions include investigating Cd bioavailability, biochar amendments, nano-fertilizers, salinity stress mitigation, and nutrient dynamics in major crops such as wheat, rice, maize, and lettuce. Professionally, he has served as a Teaching Assistant at the Institute of Soil and Environmental Sciences (UAF) and has industry experience as a Technical Fertilizer Advisor with FMC United Pvt. Ltd. He has attended multiple national and international trainings and received the prestigious ICOBTE-ICHMET 2023 Conference Scholarship for Junior Scientists in Germany. Usman actively contributes to scientific publishing as an editorial board member and peer reviewer. He aims to advance sustainable agriculture through innovative soil management solutions and environmentally safe technologies.

Profiles: Scopus | Orcid

Featured Publications

Shaghaleh, H., Akram, T., Zia-ur-Rehman, M., Usman, M., Alhaj Hamoud, Y., Rizwan, M., Alharby, H. F., Alamri, A. M., Alharbi, B. M., & Abdulmajeed, A. M. (2025). Acid-modified biochar mitigates salt stress in maize by enhancing nutrient availability and antioxidant defense system under variable salt-affected soils. Journal of Soil Science and Plant Nutrition.

Muhammad Zia-ur-Rehman, Usman, M., Ahmed, R., Ahmad, A., Akram, T., Maqsood, A., & Aslam, H. (2025). Precision input management for reducing resource wastage and enhancing production efficiency. Agriculture Toward Net Zero Emissions.

Ali, A. A., Lamlom, S. F., El-Sorady, G., Elmahdy, A. M., Abd Elghany, S. H., Usman, M., Alamri, A., Shaghaleh, H., Alhaj Hamoud, Y., & Abdelghany, A. M. (2024). Boosting resilience and yields in water-stressed sunflower through coordinated irrigation scheduling and silica gel applications. Heliyon,.

Alhaj Hamoud, Y., Shaghaleh, H., Zia-ur-Rehman, M., Rizwan, M., Umair, M., Usman, M., Ayub, M. A., Riaz, U., Alnusairi, G. S. H., & Alghanem, S. M. S. (2024). Cadmium and lead accumulation in important food crops due to wastewater irrigation: Pollution index and health risks assessment. Heliyon.

Alhaj Hamoud, Y., Zia-ur-Rehman, M., Kakakhel, I. A. M., Usman, M., Rizwan, M., Shaghaleh, H., Mohiuddin, G., Alzahrani, Y. M., Alharby, H. F., & Alsamadany, H. (2024). Comparative effects of micron-sized silicon sources and Si nanoparticles on growth, defense system and cadmium accumulation in wheat (Triticum aestivum L.) cultivated in Cd-contaminated soil. Environmental Technology & Innovation,

Utpol Kumar | Soil Science | Best Researcher Award

Dr. Utpol Kumar | Soil Science | Best Researcher Award

Soil Resource Development Institute | Bangladesh

Dr. Utpol Kumar is a soil scientist with a PhD in Soil Science (Bangladesh Agricultural University, 2022), and earlier MSc (Horticulture, BAU, 2001) and BSc Agriculture (BAU, 1996). He has ~19 years of professional experience with the Soil Resource Development Institute (SRDI), Bangladesh, in roles spanning field-based soil survey & mapping, soil fertility monitoring, fertilizer & soil health card preparation, quality control of fertilizers, and extension/training work for sustainable agriculture. His research interest centers on sustainable and conservation agriculture (including residue retention), integrated nutrient management, soil classification and soil health, land and resource use mapping, and the influence of climatic change on soil fertility. He has authored over 10 international and 6 national peer-reviewed journal articles (among many other publications such as books, bulletins, proceedings), with a current h-index of 4, total citations of 47, and peer-review article count of 6. Awards include selected international trainings (e.g. “Writing for impact” at Murdoch University, agricultural project management in India) and successful projects in food security & soil component work. In conclusion, Dr. Kumar’s work contributes substantially to understanding and improving soil health and sustainable agricultural productivity in the South Asian tropics; his combination of field, laboratory, training and publication work positions him as a capable researcher-practitioner impacting both policy and farmer practice.

Profiles: Scopus | Orcid

Featured Publications

Maniruzzaman, M., Cheng, M., Eiti Mony, A. M., Islam, M. A., Kumar, U., Islam, M. J., Nasreen, S. S., Akhter, S., Jahiruddin, M., & Bell, R. W. (2025). Conservation agriculture increases system yield and improves phosphorus balance in rice-based intensive cropping systems. Soil Use and Management.

Kumar, U., Cheng, M., Islam, M. J., Maniruzzaman, M., Nasreen, S. S., Haque, M. E., Akhter, S., Jahiruddin, M., Bell, R. W., & Jahangir, M. M. R. (2025). Are recommended fertilizer rates able to maintain nutrient balance in soil and optimize crop profit in intensive rice-based crop rotations: Evidence from a 20-year study. Journal of Soil Science and Plant Nutrition.

Kumar, U. (2025, January 2). Are recommended fertilizer rates able to maintain nutrient status and balance in soil and optimize crop profit in intensive rice-based crop rotations: Evidence from a 20-year study [Conference abstract]. In Global Symposium on Soil Information and Data: Measure, Monitor, Manage.

Maniruzzaman, M., Cheng, M., Islam, A., Kumar, U., Islam, J., Nasreen, S. S., Haque, E., Akhter, S., Jahiruddin, M., & Bell, R. (2024). Conservation agriculture increases phosphorus pools and stock in the top 30 cm of soil: A three-year study on a subtropical legume–rice rotation. Soil Use and Management.

Kumar, U., Cheng, M., Islam, M. J., Maniruzzaman, M., Nasreen, S. S., Haque, M. E., Hossain, M. B., Jahiruddin, M., Bell, R. W., & Jahangir, M. M. R. (2024). Retention of crop residue increases crop productivity and maintains positive sulfur balance in intensive rice-based cropping systems. Journal of Soil Science and Plant Nutrition.