Lucía E. Escalante Ortíz
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Also affiliated: National University of Cajamarca (2022); Colegio de Postgraduados (1989); Instituto Nacional de Innovación Agraria (2023)
Formerly Arkansas Research Assistant, University of Arkansas through 2019.
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Lucía E. Escalante Ortíz's research has focused on agricultural systems, particularly concerning the impact of management practices on soil properties, nematode populations, and greenhouse gas emissions. Her work includes studies on wheat-soybean double-cropping systems and soybean-corn rotations in eastern Arkansas, investigating the effects of residue and water management, as well as conservation tillage and cover crops. Escalante Ortíz has also examined the relationships between soil characteristics, nematode densities, and soybean yield. Her publications extend to other areas, including research on nutra-beverage consumption in Peru and the effects of reproductive organ removal on plant development. Escalante Ortíz has a notable collaborator, Kristofor R. Brye, with whom she has co-authored publications.
Metrics
- h-index: 2
- Publications: 5
- Citations: 16
Positions
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Investigadora- Proyecto ProAgrobio 2022Instituto Nacional de Innovación Agraria Recursos Genéticos ORCID
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Profesora invitada 2020–2022Universidad Nacional de Cajamarca Escuela Académico Profesional de Agronomía ORCID
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DIRECTORA DE PRODUCCION AGRARIA 2021Gobierno Regional Amazonas DIRECCION REGIONAL AGRARIA - AMAZONAS ORCID
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Superivisora de propuestas productivas-PROCOMPITE 2020Gobierno Regional de Amazonas Desarrollo Económico ORCID
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Research Assistant 2018–2019Univeristy of Arkansas Crop, Soil, and Environmental Sciences ORCID
Selected Publications
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Reduced tillage and cover crop treatment effects on growing-season greenhouse gas emissions from a soybean-corn rotation on silt-loam soil in southeast Arkansas (2026)
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Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas (2026)
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Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil (2026)
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Relationships among Soil Properties, Nematode Densities, and Soybean Yield in a Long-Term, Double-Crop System in Eastern Arkansas (2023)
Collaboration Network
Top Collaborators
- Relationships among Soil Properties, Nematode Densities, and Soybean Yield in a Long-Term, Double-Crop System in Eastern Arkansas
- Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas
- Reduced tillage and cover crop treatment effects on growing-season greenhouse gas emissions from a soybean-corn rotation on silt-loam soil in southeast Arkansas
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Reduced tillage and cover crop treatment effects on growing-season greenhouse gas emissions from a soybean-corn rotation on silt-loam soil in southeast Arkansas
- Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas
- Reduced tillage and cover crop treatment effects on growing-season greenhouse gas emissions from a soybean-corn rotation on silt-loam soil in southeast Arkansas
- Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas
- Reduced tillage and cover crop treatment effects on growing-season greenhouse gas emissions from a soybean-corn rotation on silt-loam soil in southeast Arkansas
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Measurement Technique Effects on Greenhouse Gas Emissions from Conventionally Tilled, Furrow-Irrigated Soybean on a Silt-Loam Soil
- Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas
- Conservation tillage and cover crop effects on greenhouse gas emissions from furrow‐irrigated cotton in southeast Arkansas
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