Búsqueda avanzada


Área de conocimiento




15 resultados, página 1 de 2

Agroecology can promote climate change adaptation outcomes without compromising yield in smallholder systems

Sieglinde Snapp Yodit Kebede Eva Wollenberg (2023, [Artículo])

A critical question is whether agroecology can promote climate change mitigation and adaptation outcomes without compromising food security. We assessed the outcomes of smallholder agricultural systems and practices in low- and middle-income countries (LMICs) against 35 mitigation, adaptation, and yield indicators by reviewing 50 articles with 77 cases of agroecological treatments relative to a baseline of conventional practices. Crop yields were higher for 63% of cases reporting yields. Crop diversity, income diversity, net income, reduced income variability, nutrient regulation, and reduced pest infestation, indicators of adaptative capacity, were associated with 70% or more of cases. Limited information on climate change mitigation, such as greenhouse gas emissions and carbon sequestration impacts, was available. Overall, the evidence indicates that use of organic nutrient sources, diversifying systems with legumes and integrated pest management lead to climate change adaptation in multiple contexts. Landscape mosaics, biological control (e.g., enhancement of beneficial organisms) and field sanitation measures do not yet have sufficient evidence based on this review. Widespread adoption of agroecological practices and system transformations shows promise to contribute to climate change services and food security in LMICs. Gaps in adaptation and mitigation strategies and areas for policy and research interventions are finally discussed.

CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CLIMATE CHANGE CROPS FOOD SUPPLY GAS EMISSIONS GREENHOUSE GASES FARMING SYSTEMS AGROECOLOGY FOOD SECURITY LESS FAVOURED AREAS SMALLHOLDERS YIELDS NUTRIENTS BIOLOGICAL PEST CONTROL CARBON SEQUESTRATION LEGUMES

The fate of rice crop residues and context-dependent greenhouse gas emissions: Model-based insights from Eastern India

Sonam Sherpa virender kumar Andrew Mcdonald (2024, [Artículo])

Crop residue burning is a common practice in many parts of the world that causes air pollution and greenhouse gas (GHG) emissions. Regenerative practices that return residues to the soil offer a ‘no burn’ pathway for addressing air pollution while building soil organic carbon (SOC). Nevertheless, GHG emissions in rice-based agricultural systems are complex and difficult to anticipate, particularly in production contexts with highly variable hydrologic conditions. Here we predict long-term net GHG fluxes for four rice residue management strategies in the context of rice-wheat cropping systems in Eastern India: burning, soil incorporation, livestock fodder, and biochar. Estimations were based on a combination of Tier 1, 2, and 3 modelling approaches, including 100-year DNDC simulations across three representative soil hydrologic categories (i.e., dry, median, and wet). Overall, residue burning resulted in total direct GHG fluxes of 2.5, 6.1, and 8.7 Mg CO2-e in the dry, median, and wet hydrologic categories, respectively. Relative to emissions from burning (positive values indicate an increase) for the same dry to wet hydrologic categories, soil incorporation resulted in a −0.2, 1.8, or 3.1 Mg CO2-e change in emissions whereas use of residues for livestock fodder increased emissions by 2.0, 2.1, or 2.3 Mg CO2-e. Biochar reduced emissions relative to burning by 2.9 Mg CO2-e in all hydrologic categories. This study showed that the production environment has a controlling effect on methane and, therefore, net GHG balance. For example, wetter sites had 2.8–4.0 times greater CH4 emissions, on average, than dry sites when rice residues were returned to the soil. To effectively mitigate burning without undermining climate change mitigation goals, our results suggest that geographically-target approaches should be used in the rice-based systems of Eastern India to incentivize the adoption of regenerative ‘no burn’ residue management practices.

Soil Carbon Rice Residue Burning Life Cycle Assessment CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA SOIL CARBON RICE LIFE CYCLE GREENHOUSE GASES CLIMATE CHANGE

Desarrollo de metodologías de laboratorio para la detección de contaminantes emergentes y su identificación en cuerpos de agua (agua sedimento) y en aguas residuales (en influente, efluente y los de PTAR)

MARTHA AVILÉS FLORES GABRIELA ELEONORA MOELLER CHAVEZ NORMA RAMIREZ SALINAS (2012, [Documento de trabajo])

El presente trabajo consiste, en la implementación de metodologías de: microcistina LR por cromatografía de ultra alta resolución; nonilfenol por cromatografía gases espectrometría de masas y surfactantes por espectrofotometría de ultravioleta visible. El proyecto presente tiene además la validación de las metodologías de análisis de fármacos (Amoxicilina, Gemfibrozil, Acido Clofíbrico) y Hormonas (Estrona, 17 ß-estradiol, α-etinil estradiol) con muestras reales en la Cuenca Balsas en épocas de estiaje y de lluvias, específicamente en el río Atoyac uno de los ríos más importantes y donde se desarrollan una variada gama de actividades, evaluándose la probable presencia de fármacos en los sistemas de tratamiento de agua residual en influente y efluente.

Informes de proyectos Análisis del agua Cromatografía de gases Espectrometría de masa Contaminantes emergentes Tratamiento de aguas residuales Río Atoyac, Puebla Río Atoyac, Tlaxcala INGENIERÍA Y TECNOLOGÍA

Desarrollo de metodologías por cromatografía de gases para la identificación y cuantificación de compuestos orgánicos clorados en aguas residuales y municipales

MARTHA AVILÉS FLORES NORMA RAMIREZ SALINAS (2011, [Documento de trabajo])

Introducción – Fuentes de contaminantes emergentes – Fuentes puntuales – Fuentes no puntuales – Problemática de los fármacos en aguas residuales – Compuestos farmacéuticos reguladores de lípidos – Fármacos veterinarios – Objetivo – Metodología – Implementación de las metodologías – Resultados – Discusión – Conclusiones – Anexos – Bibliografía.

Industria farmacéutica Cromatografía de gases Compuestos orgánicos clorados Contaminantes emergentes Fuentes puntuales de contaminación Fuentes no puntuales de contaminación Informes de proyectos INGENIERÍA Y TECNOLOGÍA

Sustainable maize intensification through site-specific nutrient management advice: Experimental evidence from Nigeria

Miet Maertens Oyakhilomen Oyinbo Tahirou Abdoulaye Jordan Chamberlin (2023, [Artículo])

There is growing evidence on the impacts of site-specific nutrient management (SSNM) from Asia. The evidence for Sub-Saharan Africa (SSA), where SSNM developments are more recent and where conditions concerning soil fertility and fertilizer use differ importantly from those in Asia, is extremely scarce. We evaluate a SSNM advisory tool that allows extension agents to generate fertilizer recommendations tailored to the specific situation of an individual farmer’s field, using a three-year randomized controlled trial with 792 smallholder farmers in the maize belt of northern Nigeria. Two treatment arms were implemented: T1 and T2 both provide SSNM information on nutrient use and management, but T2 provides additional information on maize price distributions and the associated variability of expected returns to fertilizer use. We estimate average and heterogenous intent-to-treat effects on agronomic, economic and environmental plot-level outcomes. We find that T1 and T2 lead to substantial increases (up to 116%) in the adoption of good fertilizer management practices and T2 leads to incremental increases (up to 18%) in nutrient application rates, yields and revenues. Both treatments improve low levels of nutrient use efficiency and reduce high levels of greenhouse gas emission intensity, after two years of treatment. Our findings underscore the possibility of a more gradual and sustainable intensification of smallholder agriculture in SSA, as compared with the Asian Green Revolution, through increased fertilizer use accompanied by improved fertilizer management.

Randomized Controlled Trial CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA TECHNOLOGY ADOPTION AGRICULTURAL EXTENSION GREEN REVOLUTION FERTILIZERS GREENHOUSE GAS EMISSIONS

Saneamiento de cuerpos de agua e impacto sobre la emisión de gases de efecto invernadero: primera fase.

Anne M. Hansen DANGELO ANTONIO SANDOVAL CHACON (2019, [Documento de trabajo])

El objetivo del proyecto es evaluar experimentalmente y mediante modelación, las cargas externa (CE) e interna (CI) de carbono (C) en un cuerpo de agua. El sitio seleccionado para la realización de esta investigación, es la presa Valle de Bravo. La presa forma parte del sistema Cutzamala que suministra 345 Mm3 de agua potable para uso residencial e industrial tanto a la Ciudad como al Estado de México.

Carbono Gases del efecto invernadero Recursos hídricos CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA

Review of Nationally Determined Contributions (NCD) of Kenya from the perspective of food systems

Tek Sapkota (2023, [Documento de trabajo])

Agriculture is one of the fundamental pillars of the 2022–2027 Bottom-up Economic Transformation Plan of the Government of Kenya for tackling complex domestic and global challenges. Kenya's food system is crucial for climate change mitigation and adaptation. Kenya has prioritized aspects of agriculture, food, and land use as critical sectors for reducing emissions towards achieving Vision 2030's transformation to a low-carbon, climate-resilient development pathway. Kenya's updated NDC, as well as supporting mitigation and adaptation technical analysis reports and other policy documents, has identified an ambitious set of agroecological transformative measures to promote climate-smart agriculture, regenerative approaches, and nature-positive solutions. Kenya is committed to implementing and updating its National Climate Change Action Plans (NCCAPs) to present and achieve the greenhouse gas (GHG) emission reduction targets and resilience outcomes that it has identified.

CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CLIMATE CHANGE GREENHOUSE GAS EMISSIONS FOOD SYSTEMS LAND USE CHANGE AGRICULTURE POLICIES DATA ANALYSIS FOOD WASTES

Agua y cambio climático

RENE LOBATO SANCHEZ (2018, [Libro])

El objetivo de este estudio es realizar una estimación preliminar de los gases de efecto invernadero generados por los habitantes de las cabeceras municipales que conforman la cuenca del río Apatlaco, en el estado de Morelos para el periodo 2015-2017, para establecer una línea base. Los diez municipios que conforman la cuenca son: Huitzilac, Cuernavaca, Jiutepec, Temixco, Emiliano Zapata, Xochitepec, Jojutla, Tlaltizapán, Puente de Ixtla y Zacatepec.

Cambio climático Recursos hídricos Riesgos ambientales Gases efecto invernadero Aguas residuales CIENCIAS FÍSICO MATEMÁTICAS Y CIENCIAS DE LA TIERRA

Review of Nationally Determined Contributions (NCD) of Vietnam from the perspective of food systems

Tek Sapkota (2023, [Documento de trabajo])

Over the past decades, Vietnam has significantly progressed and has transformed from being a food-insecure nation to one of the world’s leading exporters in food commodities, and from one of the world’s poorest countries to a low-middle-income country. The agriculture sector is dominated by rice and plays a vital role in food security, employment, and foreign exchange. Vietnam submitted its updated Nationally Determined Contributions (NDC) in 2022 based on the NDC 2020. There is a significant increase in greenhouse gas (GHG) emission reduction, towards the long-term goals identified in Vietnam’s National Climate Change Strategy to 2025, and efforts are being made to fulfil the commitments made at COP26. The Agriculture Sector is the second-largest contributor of GHG emissions in Vietnam, accounting for 89.75 MtCO2eq, which was about 31.6 percent of total emissions in 2014. Rice cultivation is the biggest source of emissions in the agriculture sector, accounting for 49.35% of emissions from agriculture. The total GHG removal from Land Use, Land Use Change and Forestry (LULUCF) in 2014 was -37.54 MtCO2eq, of which the largest part was from the forest land sub-sector (35.61 MtCO2eq), followed by removal from croplands (7.31 MtCO2eq) (MONRE 2019).

CIENCIAS AGROPECUARIAS Y BIOTECNOLOGÍA CLIMATE CHANGE GREENHOUSE GAS EMISSIONS FOOD SYSTEMS LAND USE CHANGE AGRICULTURE POLICIES DATA ANALYSIS