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Historical use of water resources. Civil works evolution in Zacatecas state
Carlos Bautista-Capetillo Georgia González-Pérez Hiram Badillo-Almaraz (2021, [Artículo, Artículo])
Availability and demand are essential aspects for the human being when planning is made to provide water to the different sectors that may have need of it; still, the demand of suitable volume of water increases day by day, while the supply decreases gradually. In this inverse relationship, anthropogenic and environmental dynamics are decisive to guarantee the needs of the population, specifically due to the climatic transformations evidenced in recent decades. Throughout history, the state of Zacatecas has suffered the ravages of extreme environmental events, mainly those related to drought. Likewise, but on a lesser extent, severe floods have occurred that have caused socioeconomic damage. In this work, the climatic variations of temperature and precipitation and their influence on the evolution of hydraulic systems for the supply of drinking water in the municipality of Nochistlán de Mejía, Zacatecas are analyzed during the period 1930-2015.
drinking water supply historical development of waterworks climate and its transformations Abasto de agua potable desarrollo histórico de obras hidráulicas clima y sus transformaciones CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA
Nepal Seed And Fertilizer Project
Dyutiman Choudhary (2021, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA SEED SEED INDUSTRY PRIVATE SECTOR MAIZE RICE INTEGRATED SOIL FERTILITY MANAGEMENT COVID-19
Noel Ndlovu Vijay Chaikam Berhanu Tadesse Ertiro Biswanath Das Yoseph Beyene Charles Spillane Prasanna Boddupalli Manje Gowda (2023, [Artículo])
Grain Yield Low Soil Nitrogen CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA GRAIN NITROGEN SOIL CHEMICOPHYSICAL PROPERTIES MAIZE QUANTITATIVE TRAIT LOCI
Using homosoils for quantitative extrapolation of soil mapping models
Andree Nenkam Alexandre Wadoux Budiman Minasny Alex McBratney Pierre C. Sibiry Traore Gatien Falconnier Anthony Whitbread (2022, [Artículo])
Cubist Digital Soil Mapping Model-Based Validation Soil Spatial Variation Soil-Forming Factors CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA LAND USE ORGANIC CARBON SOIL SURVEYS SPATIAL VARIATIONS
Nepal Seed And Fertilizer Project
Dyutiman Choudhary (2022, [Objeto de congreso])
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA SEED FERTILIZERS SEED INDUSTRY PRIVATE SECTOR MAIZE RICE INTEGRATED SOIL FERTILITY MANAGEMENT COVID-19
Regis Chikowo Christian Thierfelder Marc Corbeels (2024, [Artículo])
Conservation agriculture (CA), combining reduced or no tillage, permanent soil cover, and improved rotations, is often promoted as a climate-smart practice. However, our understanding of the impact of CA and its respective three principles on top- and subsoil organic carbon stocks in the low-input cropping systems of sub-Saharan Africa is rather limited. This study was conducted at two long-term experimental sites established in Zimbabwe in 2013. The soil types were abruptic Lixisols at Domboshava Training Centre (DTC) and xanthic Ferralsol at the University of Zimbabwe farm (UZF). The following six treatments, which were replicated four times, were investigated: conventional tillage (CT), conventional tillage with rotation (CTR), no tillage (NT), no tillage with mulch (NTM), no tillage with rotation (NTR), and no tillage with mulch and rotation (NTMR). Maize (Zea mays L.) was the main crop, and treatments with rotation included cowpea (Vigna unguiculata L. Walp.). The soil organic carbon (SOC) concentration and soil bulk density were determined for samples taken from depths of 0–5, 5–10, 10–15, 15–20, 20–30, 30–40, 40–50, 50–75 and 75–100 cm. Cumulative organic inputs to the soil were also estimated for all treatments. SOC stocks at equivalent soil mass were significantly (p<0.05) higher in the NTM, NTR and NTMR treatments compared with the NT and CT treatments in the top 5 cm and top 10 cm layers at UZF, while SOC stocks were only significantly higher in the NTM and NTMR treatments compared with the NT and CT treatments in the top 5 cm at DTC. NT alone had a slightly negative impact on the top SOC stocks. Cumulative SOC stocks were not significantly different between treatments when considering the whole 100 cm soil profile. Our results show the overarching role of crop residue mulching in CA cropping systems with respect to enhancing SOC stocks but also that this effect is limited to the topsoil. The highest cumulative organic carbon inputs to the soil were observed in NTM treatments at the two sites, and this could probably explain the positive effect on SOC stocks. Moreover, our results show that the combination of at least two CA principles including mulch is required to increase SOC stocks in these low-nitrogen-input cropping systems.
CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA SOIL ORGANIC CARBON CONSERVATION AGRICULTURE EXPERIMENTATION CROP MANAGEMENT
Low thermal conductivity solar domestic water heater
MIGUEL ANGEL PORTA GANDARA JOSE LUIS FERNANDEZ ZAYAS JUAN FRANCISCO VILLA MEDINA NORBERTO CHARGOY DEL VALLE (2022, [Artículo])
"Solar domestic water heaters (SWH) with thermosyphon circulation are the most common commercial applications of solar energy in Mexico. They are also becoming popular in the rest of the world, given their simplicity, good economic returns, and sustainability. Traditionally the solar collector, the piping, and the storage tank are built of copper and steel. However, wáter quality in many parts of the Mexican Northwest has high mineral contents and, when heated, results in early metal pitting corrosion of SWH parts. Short-lived water heaters are bad promoters of the technology. In this work, a SWH thermoplastic Chlorinated Polyvinyl Chloride (CPVC) is built and tested under real operating conditions in La Paz, BCS, Mexico. The optimal design is detected with the aid of a suitable numerical model. Results reveal that a full SWH-CPVC can be technically and economically convenient for the weather conditions of the Northwestern states of Mexico."
Low thermal conductivity solar water heater CPVC solar water heater Solar water heater cooper pitting corrosion Thermosiphon circulation INGENIERÍA Y TECNOLOGÍA CIENCIAS TECNOLÓGICAS TECNOLOGÍA ELECTRÓNICA DISPOSITIVOS TERMOELÉCTRICOS DISPOSITIVOS TERMOELÉCTRICOS
Agricultura, agua y cambio climático en zonas áridas de México
SALVADOR EMILIO LLUCH COTA JUAN ALBERTO VELAZQUEZ ZAPATA César Nieto Delgado (2022, [Artículo])
"En este artículo se expone cómo a pesar de que la ciencia y la tecnología han permitido aumentar históricamente la productividad agrícola, hoy día existen grandes retos derivados del cambio climático y la crisis global de abastecimiento de agua. Se comentan algunas medidas de adaptación y manejo del recurso agua, con algunas referencias a nuestra realidad nacional, y se argumenta cómo el enfoque de Nexo, que implica la toma de decisiones sobre el uso del recurso agua de forma transectorial, representa una alternativa de adaptación al cambio climático."
Cambio climático, agricultura, agua, Nexo, adaptación Climate change, agriculture, water, nexus, adaptation CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA CIENCIAS DE LA TIERRA Y DEL ESPACIO CLIMATOLOGÍA CLIMATOLOGÍA REGIONAL CLIMATOLOGÍA REGIONAL
Geovanna Zárate Camargo (2024, [Tesis de maestría])
"Las temperaturas extremas, radiación solar intensa, vientos fuertes, humedad limitada y la baja fertilidad de los suelos desérticos dificultan la recuperación de zonas degradadas en zonas áridas. Uno de los fenómenos naturales más importantes de revegetación en zonas áridas son las islas de recursos, conformadas por algunos tipos de plantas que actúan como nodrizas, las cuales, bajo su dosel, desarrollan un microhábitat favorable para el establecimiento de otras especies que trabajan en conjunto con una larga comunidad de microorganismos que se encuentran en el suelo. Entre las plantas nodriza que se observan con más frecuencia en el Desierto de Sonora, se encuentran las especies del género Prosopis. Las islas de recursos conformadas por mezquites han demostrado tener un efecto positivo como planta nodriza en zonas áridas. Las contribuciones del mezquite son el aumento del contenido de N en el suelo, temperaturas moderadas en el suelo y la superficie, altos niveles de humedad, mayor actividad microbiana, entre otros aspectos que hacen posible los efectos de las islas de recursos. En este estudio se evaluaron diferentes indicadores de calidad de suelo en islas de recursos establecidas hace 19 años, como parte de un proyecto de revegetación de suelos degradados, distintivo del Desierto Sonorense. El objetivo de este estudio fue determinar si existe un gradiente con respecto a la distancia y profundidad, en la actividad microbiana y enzimática presente en suelos de islas de recursos, resultado de la interacción de mezquite amargo (Prosopis articulata), como planta nodriza y cardón (Pachycereus pringlei), como planta objetivo. Los resultados demostraron que existe un aumento la actividad enzimática y carbono asociado a biomasa microbiana del suelo perteneciente a estas islas, con mayores resultados en zonas próximas a la planta nodriza que en zonas sin su influencia, también se encontró un aumento en la capa superficial del suelo mostrando mayores valores en los indicadores de calidad y funcionalidad bajo el dosel de las islas de recursos. Lo anterior sugiere que el uso de estas islas de recursos es una potencial alternativa en la restauración de suelos degradados, favoreciendo el ciclaje de nutrientes en suelos degradados."
"At desert, the high temperatures, intense solar radiation, strong winds, limited water, and low fertility, determine how challenging will be the recovery of degraded soils in arid lands. One of the most important natural phenomena of revegetation in arid lands are the “resource islands”, that consist of some trees or bushes acting as nurse plants, which under their canopy, develop a beneficial microhabitat for the establishment of other plant species the work with an extensive community of microorganisms found in the soil. Among the most common nurse plants observed in the Sonoran Desert, is the genus Prosopis. The resource islands formed with mesquite have shown positive effects as nurse plant in arid lands. The principal contributions of mesquite are the increase of N in the soil, moderate temperatures on soil and topsoil, high moisture levels, increased microbial activity, among other aspects that make possible the effect of resource islands. In this study, different quality indicators were evaluated in resource islands established 19 years ago, as part of a project for revegetation in degraded soils, distinctive from the Sonoran Desert. The aim of this research was to explore whether there is a correlation between distance, depth, microbial activity, and enzymatic activity in the soil surrounding resource islands formed by the interaction between mesquite amargo (Prosopis articulata) as the nurse plant and cardon (Pachycereus pringlei) as the objective plant. The results demonstrated that there is an increase in the enzymatic activity and microbial biomass carbon from the soil under the canopy of the resource islands, with higher results in zones near the nurse plant than zones without its influence, furthermore, there was found an increase in the topsoil showing higher values in the soil quality and functionality indicators under the canopy of the resource islands. The above indicates that the use of these resource islands is a potential alternative in the degraded soil restoration, supporting the nutrient cycling in degraded soils."
suelo, ecología, revegetación, actividad enzimática, ciclaje de nutrientes soil, ecology, revegetation, enzymatic activity, nutrient cycling CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CIENCIAS AGRARIAS AGRONOMÍA FERTILIDAD DEL SUELO FERTILIDAD DEL SUELO
Jonathan Gabriel Escobar Flores (2019, [Artículo])
In arid ecosystems, desert bighorn sheep are dependent on natural waterholes, particularly in summer when forage is scarce and environmental temperatures are high. To detect waterholes in Sierra Santa Isabel, which is the largest area of desert bighorn sheep habitat in the state of Baja California, Mexico, we used the normalized difference vegetation index (NDVI) and normalized difference water index (NDWI) from Sentinel-2 satellite images. Waterhole detection was based on the premise that sites with greater water availability, where NDVI was higher, can be identified by their density of vegetation greenness. For the detected waterholes, we estimated the escape terrain (presence of cliffs or steep, rocky slopes) around each by the vector ruggedness measure to determine their potential use by desert bighorn sheep based on the animals’ presence as documented by camera traps. We detected 14 waterholes with the NDVI of which 11 were known by land owners and 3 were unrecorded. Desert bighorn were not detected in waterholes with high values of escape terrain, i.e., flat areas. Waterhole detection by NDVI is a simple method, and with the assistance and knowledge of the inhabitants of the Sierra, it was possible to confirm the presence each waterhole in the field. © 2019 Escobar-Flores et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Article, bighorn sheep, environmental aspects and related phenomena, environmental parameters, habitat, Mexico, nonhuman, normalized difference vegetation index, normalized difference water index, water availability, waterhole, animal, bighorn sheep, CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CIENCIAS AGRARIAS CIENCIA FORESTAL CIENCIA FORESTAL