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Appraisal of complementarity of subsurface drip fertigation and conservation agriculture for physiological performance and water economy of maize

C.M. Parihar Hari Sankar Nayak Dipaka Ranjan Sena Renu Pandey Mahesh Gathala ML JAT (2023, [Artículo])

The Indo-Gangetic Plains (IGP) in north-west (NW) India are facing a severe decline in ground water due to prevalent rice-based cropping systems. To combat this issue, conservation agriculture (CA) with an alternative crop/s, such as maize, is being promoted. Recently, surface drip fertigation has also been evaluated as a viable option to address low-nutrient use efficiency and water scarcity problems for cereals. While the individual benefits of CA and sub-surface drip (SSD) irrigation on water economy are well-established, information regarding their combined effect in cereal-based systems is lacking. Therefore, we conducted a two-year field experiment in maize, under an ongoing CA-based maize-wheat system, to evaluate the complementarity of CA with SSD irrigation through two technological interventions–– CA+ (residue retained CA + SSD), PCA+ (partial CA without residue + SSD) – at different N rates (0, 120 and 150 kg N ha-1) in comparison to traditional furrow irrigated (FI) CA and conventional tillage (CT) at 120 kg N ha-1. Our results showed that CA+ had the highest grain yield (8.2 t ha-1), followed by PCA+ (8.1 t ha-1). The grain yield under CA+ at 150 kg N ha-1 was 27% and 30% higher than CA and CT, respectively. Even at the same N level (120 kg N ha-1), CA+ outperformed CA and CT by 16% and 18%, respectively. The physiological performance of maize also revealed that CA+ based plots with 120 kg N ha-1 had 12% and 3% higher photosynthesis rate at knee-high and silking, respectively compared to FI-CA and CT. Overall, compared to the FI-CA and CT, SSD-based CA+ and PCA+ saved 54% irrigation water and increased water productivity (WP) by more than twice. Similarly, a greater number of split N application through fertigation in PCA+ and CA+ increased agronomic nitrogen use efficiency (NUE) and recover efficiency by 8–19% and 14–25%, respectively. Net returns from PCA+ and CA+ at 150 kg N ha-1 were significantly higher by US$ 491 and 456, respectively than the FI-CA and CT treatments. Therefore, CA coupled with SSD provided tangible benefits in terms of yield, irrigation water saving, WP, NUE and profitability. Efforts should be directed towards increasing farmers’ awareness of the benefits of such promising technology for the cultivating food grains and commercial crops such as maize. Concurrently, government support and strict policies are required to enhance the system adaptability.

Net Returns Subsurface Drip Irrigation Subsurface Drip Fertigation CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA EFFICIENCY GRAIN NITROGEN PHOTOSYNTHESIS PHYSIOLOGY WATER SUPPLY CONSERVATION AGRICULTURE CONVENTIONAL TILLAGE FERTIGATION GROUNDWATER NITROGEN-USE EFFICIENCY WATER PRODUCTIVITY

La Pera: Área Natural Protegida que atesora alta biodiversidad en Chiapas, México

MARCO ANTONIO GARCIA JIMENEZ CANDELARIO CUNDAPÍ PÉREZ (2023, [Artículo])

En México, con la finalidad de preservar los ecosistemas naturales del país, la Comisión Nacional de Áreas Naturales Protegidas (CONANP) administra 185 áreas de carácter federal, mientras que la Secretaría de Medio Ambiente e Historia Natural (SEMAHN) en Chiapas, administra 28 de carácter estatal. Sin embargo, estas últimas son poco conocidas y es importante difundir la riqueza biológica que resguardan. La Pera, en Chiapas, alberga 1033 especies de flora y fauna, de las cuales 109 están protegidas por las normas nacionales, algunas son endémicas al estado y a México. Conocer la presencia de especies prioritarias en el área nos proporciona herramientas para la conservación de la reserva.

BERRIOZABAL CORREDOR BIOLOGICO ZOQUE ESPECIES PRIORITARIAS LOCALIDAD TIPO BIOLOGÍA Y QUÍMICA CIENCIAS DE LA VIDA BIOLOGÍA VEGETAL (BOTÁNICA) ECOLOGÍA VEGETAL ECOLOGÍA VEGETAL

Weed management and tillage effect on rainfed maize production in three agro-ecologies in Mexico

Simon Fonteyne Abel Jaime Leal González Rausel Ovando Ravi Gopal Singh Nele Verhulst (2022, [Artículo])

Maize (Zea mays L.) is grown in a wide range of agro-ecological environments and production systems across Mexico. Weeds are a major constraint on maize grain yield, but knowledge regarding the best weed management methods is lacking. In many production systems, reducing tillage could lessen land degradation and production costs, but changes in tillage might require changes in weed management. This study evaluated weed dynamics and rainfed maize yield under five weed management treatments (pre-emergence herbicide, post-emergence herbicide, pre-emergence + post-emergence herbicide, manual weed control, and no control) and three tillage methods (conventional, minimum and zero tillage) in three agro-ecologically distinct regions of the state of Oaxaca, Mexico, in 2016 and 2017. In the temperate Mixteca region, weeds reduced maize grain yields by as much as 92% and the long-growing season required post-emergence weed control, which gave significantly higher yields. In the hot, humid Papaloapan region, weeds reduced maize yields up to 63% and pre-emergence weed control resulted in significantly higher yields than treatments with post-emergence control only. In the semi-arid Valles Centrales region, weeds reduced maize yields by as much as 65%, but weed management was not always effective in increasing maize yield or net profitability. The most effective weed management treatments tended to be similar for the three tillage systems at each site, although weed pressure and the potential yield reduction by weeds tended to be higher under zero tillage than minimum or conventional tillage. No single best option for weed management was found across sites or tillage systems. More research, in which non-chemical methods should not be overlooked, is thus needed to determine the most effective weed management methods for the diverse maize production systems across Mexico.

Corn Integrated Weed Management Manual Weed Control CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA MAIZE WEED CONTROL MINIMUM TILLAGE ZERO TILLAGE

The past, the present, the future, and occupational self-efficacy: an attributions and cultural differences perspective

Daniel Arturo Cernas Ortiz (2023, [Artículo, Artículo])

This study´s objective was to examine empirical relationships between three dimensions of time perspective (future, present fatalistic, and past negative) and occupational self-efficacy. By surveying Mexican (n = 286) and U.S. (n = 272) respondents, we also tested the moderating role of culture. Regression analyses revealed that time perspective dimensions have significant associations with occupational self-efficacy, being future time perspective more potent than its past negative and present fatalistic counterparts. Moderation analyses indicated that none of the examined time perspective-self-efficacy relationships varied significantly between the U.S. and Mexico. Overall, this study suggests that relationships between time perspective and occupational self-efficacy vary according to different temporal dimensions, that future TP is key to develop occupational self-efficacy, and that cultural values may not exert a significant influence on the time perspective-occupational self-efficacy connection.

Perspectiva de tiempo autoeficacia diferencias culturales análisis de moderación CIENCIAS SOCIALES CIENCIAS SOCIALES Time perspective self-efficacy cultural differences moderation analysis

Metodología Value Stream Mapping (VSM) aplicada a procesos de perforación de pozos petroleros en México

Value Stream Mapping (VSM) methodology applied to oil well drilling processes in Mexico

NEMIAS VASQUES MORALES CARLOS BELISARIO CASTAÑEDA CASTAÑEDA (2023, [Artículo])

Con los cambios recientes en el sector energético a nivel mundial, la industria petrolera enfrenta retos importantes en la extracción de hidrocarburos, por lo que se ha priorizado la implementación de operaciones que permitan esta actividad de forma eficiente y optimizada. En este trabajo se analizará la aplicación de una de las herramientas del Lean Manufacturing, el VSM (Value Stream Mapping) con la finalidad de identificar posibles mejoras y disminución de tiempos no productivos en los procesos de perforación de pozos petroleros, de acuerdo a las experiencias previas en campos desarrollados en México. Se pretende demostrar que herramientas de análisis de eficiencia para la manufactura pueden adaptarse a industrias pesadas como la petrolera y en particular del área de perforación.

With recent changes in the energy sector worldwide, the oil industry faces significant challenges in the extraction of hydrocarbons, which is why the implementation of operations that allow this activity in an efficient and optimized manner has been prioritized. In this work, the application of one of the Lean Manufacturing tools, VSM (Value Stream Mapping) will be analyzed with the purpose of identifying possible improvements and reduction of non-productive times in the oil well drilling processes, according to experiences. previous ones in developed fields in Mexico. The aim is to demonstrate that efficiency analysis tools for manufacturing can be adapted to heavy industries such as the oil industry and in particular the drilling area.

Lean Operaciones Tiempos no productivos Operations Non-productive times INGENIERÍA Y TECNOLOGÍA CIENCIAS TECNOLÓGICAS OTRAS ESPECIALIDADES TECNOLÓGICAS OTRAS OTRAS

Utilización eficiente del agua de lluvia mediante el diseño y trazo hidrológico de terrenos en áreas de precipitación limitada

HECTOR GREGORIO CORTES TORRES JOSE JAVIER RAMIREZ LUNA (2013, [Documento de trabajo])

Antecedentes – Objetivos – Resultados: Desarrollo tecnológico para la desalación de agua salobre con generación híbrida de paneles solares y aerogeneradores; Desarrollo tecnológico para bombeo con energía fotovoltaica y eólica, empleando tanques elevados.

Escorrentía pluvial Uso eficiente del agua Productividad de las tierras Método de la línea clave Informes de proyectos INGENIERÍA Y TECNOLOGÍA