Rajeshreebhye Mahadea Nemdharry | Environmental effects | Research Excellence Award
Mrs. Rajeshreebhye Mahadea Nemdharry at Mauritius Sugarcane Industry Research Institute (MSIRI) | Mauritius
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Slocum, S. K., & Tiger, J. H. (2010, May). Developing an assessment of sensitivity to and preference for forward and backward chaining strategies. Poster presented at the Association for Behavior Analysis International, San Antonio, TX.
Scheitauer, M. C., Tiger, J. H., Mevers, J. L., & Slocum, S. K. (2011, May). Assessing preference for choice-making opportunities with college students. Paper presented at the Association for Behavior Analysis International, Denver, CO.
Barlow, K., Tiger, J. H., Slocum, S. K., & Miller, S. J. (2011, May). Comparing mand-training efficiency with selection-based and topography-based communication systems. Poster presented at the Association for Behavior Analysis International, Denver, CO.
Scheitauer, M. C., Tiger, J. H., & Slocum, S. K. (2011, May). Descriptive and experimental evaluations of procedural fidelity failures of parents implementing differential reinforcement of alternative behavior in the treatment of problem behavior. Poster presented at the Association for Behavior Analysis International, Denver, CO.
Slocum, S. K., Miller, S. J., & Tiger, J. H. (2012, May). An evaluation of the blocking procedure to teach conditional discriminations to a child with autism. Paper presented at the Association for Behavior Analysis International, Seattle, WA.
Slocum, S. K., Zeug, N. M., Baker, C., Peters, K. P., Wunderlich, K. L., & Vollmer, T. V. (2013, May). A functional analysis of mild punishers for vocal stereotypy. Paper presented at the Association for Behavior Analysis International, Minneapolis, MN.
Slocum, S. K., Vollmer, T. R., Whitehouse, C. W., Peters, K. P., Phillips, C. L., Radonavich, K., & Lewis, M. H. (2014, May). Developing a novel treatment for rigid inflexible behavior. Paper presented at the Association for Behavior Analysis International, Chicago, IL.
Mr. Lei Jinyin is a Researcher at the Institute of Agricultural Resources and Environment, Ningxia Academy of Agriculture and Forestry Sciences. He specializes in soil and water conservation, salinity control, and the efficient utilization of agricultural water resources. With a Ph.D. in Soil and Water Conservation and Desertification Control from Northwest A&F University, Mr. Lei has conducted impactful studies on dryland farming, soil fertility, irrigation regimes, and viticulture in the Helan Mountain region. His leadership in national and regional research projects highlights his commitment to advancing sustainable agricultural practices, ensuring food security, and improving ecological resilience in arid regions.
Mr. Lei earned his doctorate in Soil and Water Conservation and Desertification Control from Northwest A&F University, following a bachelor’s degree in the same field from Inner Mongolia Agricultural University. His academic background equipped him with strong expertise in land degradation, water management, and sustainable agriculture.
He has advanced his career at the Ningxia Academy of Agriculture and Forestry Sciences, where he has served as Assistant Researcher, Associate Researcher, and now Researcher. He also broadened his perspective through a visiting research position at the University of Southern Queensland in Australia, which strengthened his international collaboration and expertise in agricultural resource management.
Mr. Lei has continuously enhanced his professional development through leadership in major research projects and collaborations. As principal investigator, he has studied soil organic carbon sequestration under changing hydrothermal conditions. He also directs projects focused on wine grape cultivation in the Helan Mountain region and contributes to studies on intercropping systems for maize and soybeans. His international research experience further expanded his outlook and collaborations. Through his project leadership, publications, and applied demonstrations, he has built expertise that integrates theory with practice, strengthening sustainable agriculture and environmental conservation while addressing the challenges of arid and semi-arid farming systems.D
Mr. Lei’s research centers on soil and water conservation, efficient water use in agriculture, and strategies for salinity control in arid regions. He investigates soil organic carbon sequestration, tillage methods, soil fertility, and crop productivity in water-limited environments. His studies include irrigation management for wine grapes in the Helan Mountain region, aimed at enhancing both yield and quality. He also works on intercropping techniques to improve land use efficiency and resilience. By integrating ecological knowledge with applied agricultural practices, his research contributes to sustainable farming models that support food production while protecting fragile environments in dryland areas.
Mr. Lei has authored influential works, including a monograph on land degradation and control in the Loess Plateau and several first-authored research papers on soil fertility, tillage, and irrigation. Although formal awards are not listed, his recognition is reflected through his leadership of key funded projects, impactful publications, and practical contributions to sustainable agriculture in Ningxia and beyond. His career progression from early-stage researcher to senior researcher, combined with international academic experience, demonstrates his dedication and scholarly impact. In conclusion, Mr. Lei’s achievements highlight his research leadership, valuable scientific contributions, and commitment to advancing sustainable agricultural development.
Title: Research on Land Degradation and Control in the Wind-Sand Area of the Northern Loess Plateau
Year: 2012
Title: Effects of Tillage Measures on Soil Aggregates and Crop Yield in Hilly Land of Southern Ningxia Mountains
Year: 2020
Title: Effects of Tillage Measures on Soil Nutrient Distribution and Fertilizer Utilization Efficiency in Sloping Farmland
Year: 2020
Title: Effects of Irrigation Regimes on Growth, Yield, and Quality of Wine Grapes in the Eastern Foothills of Helan Mountain
Year: 2021
Mr. Lei Jinyin’s career reflects steady growth from early-stage researcher to senior expert, marked by strong leadership in key projects, influential publications, and international collaboration. His contributions to soil and water conservation, irrigation management, and sustainable farming systems have provided both scientific insights and practical solutions for agriculture in arid regions. Although formal honors are not listed, his recognition lies in the lasting impact of his research, his role in advancing sustainable agricultural practices, and his commitment to ecological resilience. Overall, he stands out as a dedicated scholar contributing meaningfully to agricultural and environmental development.
Dr. Muhammad Wasim Haider 🎓 is a dedicated horticulture expert and educator currently serving as a Lecturer 🌱 at the Department of Horticultural Sciences, The Islamia University of Bahawalpur 🇵🇰. He holds a Ph.D. in Horticulture from the University of Agriculture, Faisalabad, with specialized experience in potato production, dormancy management, and vegetable value chains 🥔🍅. Fluent in Urdu, English, Punjabi, and Saraiki 🗣️, he has trained at USDA 🇺🇸 and actively mentors undergraduate to doctoral students 📘. His research is deeply rooted in sustainable crop improvement 🌿 and value chain development for community upliftment 🧑🌾.
📚 Ph.D. in Horticulture (Vegetable Sciences), University of Agriculture, Faisalabad (2012–2018)
📘 M.Sc. (Hons.) in Agriculture (Horticulture), UAF (2009–2011)
🎒 B.Sc. (Hons.) in Agriculture (Horticulture), UAF (2005–2009)
📍 Lecturer (BPS-18), Islamia University of Bahawalpur (2022–Present)
📍 Assistant Professor (IPFP), IUB (2021–2022)
🔬 Research Officer, ACIAR-funded Project on Vegetable Value Chains, UAF (2018–2020)
🇺🇸 Research Scholar, USDA Potato Breeding Project, USA (2016)
🧪 Research Scholar, UAF (2012–2018)
🧪 Postgraduate Researcher, UAF (2009–2011)
Dr. Muhammad Wasim Haider, a dedicated horticulture scientist and academic, is a highly deserving candidate for the Best Researcher Award owing to his significant contributions to sustainable vegetable production, potato research, and agricultural development. Currently serving as a Lecturer at the Department of Horticultural Sciences, The Islamia University of Bahawalpur, Dr. Haider has continuously demonstrated excellence in both research and academia. His academic journey is marked by a Ph.D. in Horticulture from the University of Agriculture, Faisalabad, and a portfolio of national and international research collaborations.
Dr. Haider has actively pursued international and national training to enhance his research and teaching capacities 🌍📚. His participation in the USDA’s potato breeding project through IRSIP 🇺🇸 has equipped him with advanced techniques in pollen handling, artificial pollination, and seed production 🌾. He has contributed significantly to ACIAR-funded programs, developing training modules and conducting extensive field research across Pakistan 🇵🇰. As an HEC-approved Ph.D. supervisor and reviewer for several renowned journals 📑🧠, he continues to stay updated with scientific innovations and agricultural strategies aimed at uplifting farming communities 👨🌾📈.
Dr. Haider’s research lies in the realm of Vegetable Science with a strong focus on potato dormancy, production improvement, and stress mitigation strategies 🥔💡. His studies explore sustainable solutions for enhancing yield and quality, including salinity tolerance, seed viability, and nutrient optimization 🌱💧. He is passionate about integrating biotechnological tools like plant tissue culture and hormone analysis (HPLC) into crop improvement 🔬🧬. With a keen interest in postharvest physiology and the vegetable supply chain, his goal is to bridge the gap between research and rural impact, ensuring better livelihoods through science 🚜📦.
🧠 HEC Approved Ph.D. Supervisor (2021–22)
🌐 Reviewer at top journals including Scientific Reports, BMC Plant Biology, European Journal of Potato Research
🎓 HEC Indigenous Ph.D. Fellowship (Phase II, Batch II, 2013–14)
🏅 Merit Scholarship during M.Sc. (Hons.), UAF (2010–11)
🌎 IRSIP Fellowship – Research Training at USDA, USA (2016–17)
📈 Impact of foliar application of seaweed extract on growth, yield and quality of potato (Solanum tuberosum L.) – 112 citations, 2012
🫑 Combined application of hot water treatment and methyl salicylate mitigates chilling injury in sweet pepper (Capsicum annuum L.) fruits – 54 citations, 2021
🥔 Potato tuber yield and quality in response to different nitrogen fertilizer application rates under two split doses in an irrigated sandy loam soil – 47 citations, 2019
🌱 Postharvest dormancy-related changes of endogenous hormones in relation to different dormancy-breaking methods of potato (Solanum tuberosum L.) tubers – 38 citations, 2022
🌶️ Postharvest Aloe vera gel coating application maintains the quality of harvested green chilies during cold storage – 33 citations, 2021
🍅 Assessment of various growth and yield attributes of tomato in response to pre-harvest applications of calcium chloride – 33 citations, 2012
🍊 The combined application of Arabic gum coating and γ-aminobutyric acid mitigates chilling injury and maintains eating quality of ‘Kinnow’ mandarin fruits – 28 citations, 2023
member of Dr. Farid’s research team at Boise State University, Iran
Dr. Zahra Taheri Sarteshnizi is a highly accomplished researcher and academic in the field of Water Engineering and Sciences, with a Ph.D. focused on Hydraulic Structures. Her research interests span various areas, including the erosion of cohesive beds by fluid flow, machine learning applications in environmental engineering, and the transport of organic chemicals and PFAS in sediment. Dr. Taheri Sarteshnizi has extensive teaching experience at multiple universities, covering a wide range of civil engineering subjects such as fluid mechanics, soil mechanics, and hydraulic design. Proficient in Python, GIS, MATLAB, and R, she has applied her skills to impactful research projects, including studies on wastewater effects on sediment properties and soil stabilization. With a solid academic background, an interdisciplinary approach to research, and a growing professional network, she is a promising candidate for recognition as a top researcher in her field.
professional profile
Dr. Zahra Taheri Sarteshnizi holds a Ph.D. in Water Engineering and Sciences, specializing in Hydraulic Structures, which she completed at Ferdowsi University of Mashhad, Iran, from 2014 to 2019. Her doctoral research focused on the impact of mixing urban refined wastewater and sediment flow on erosion threshold shear stress in water transmission networks. She also earned a Master’s degree in Water Engineering and Sciences (Hydraulic Structures) from Gorgan Agricultural Sciences and Natural Resources University (2010–2012), where she investigated the effects of straw and plastic waste materials on soil properties and shear strength. Dr. Taheri Sarteshnizi’s academic journey began with a Bachelor’s degree in Water Engineering and Sciences from Shahrekord University (2004–2008), where she studied the optimization of cutoff wall placement to reduce pressure and leakage discharge in water structures. Her diverse educational background has laid a strong foundation for her interdisciplinary research and teaching career.
Dr. Zahra Taheri Sarteshnizi has a robust professional experience that spans both academia and research. From 2017 to 2023, she served as an Adjunct Professor at Azad University of Shahrekord, where she taught various civil engineering courses, including statics, fluid mechanics, soil mechanics, and hydraulic systems. She also held teaching positions at Azad University of Farsan (2015–2020) and Payame Nour University (2012–2014). In addition to her teaching roles, Dr. Taheri Sarteshnizi has been actively involved in research projects, particularly focusing on hydraulic structures, wastewater impact on sediment properties, and soil stabilization techniques. Her work includes leading research teams and conducting experiments related to erosion and sediment behavior in water systems. Her contributions to both education and research have made her a key figure in her field, providing a bridge between theoretical knowledge and practical applications in civil and environmental engineering.
Dr. Zahra Taheri Sarteshnizi’s research interests are centered around key challenges in environmental and hydraulic engineering, with a particular focus on the erosion of cohesive beds by fluid flow and the impact of wastewater on sediment properties. Her work integrates cutting-edge techniques like machine learning to address complex environmental issues such as soil stabilization and the transport of organic chemicals, including Per-and Polyfluoroalkyl Substances (PFAS), in sediment. Additionally, she is interested in the fate and transport of contaminants in the vadose zone, which plays a critical role in water and soil management. Dr. Taheri Sarteshnizi’s interdisciplinary approach combines traditional hydraulic studies with modern computational tools, aiming to improve the sustainability and resilience of water infrastructure and environmental systems.
Dr. Zahra Taheri Sarteshnizi has made significant contributions to her field, earning recognition for her research and academic achievements. She has been honored with the Senior Fellow status from the Higher Education Academy in the United Kingdom, reflecting her commitment to excellence in higher education. Additionally, Dr. Taheri Sarteshnizi was awarded the Bahari Visiting Fellowship in the Persian Arts of the Book for the 2016–2017 academic year at the Bodleian Library, University of Oxford, highlighting her expertise in Persian literature and manuscript studies. Her research has been cited 148 times, indicating the impact and relevance of her work in the academic community.
Zahra Taheri Sarteshnizi has demonstrated exceptional expertise and dedication to her field through her academic achievements, interdisciplinary research interests, and teaching experience. She is well-qualified for the Best Researcher Award, particularly due to her ability to apply technical solutions to environmental challenges. By focusing on expanding her research output, building international collaborations, and increasing her public engagement, Zahra could further enhance her standing as a top-tier researcher in her field.