Affiliation:
1. Instituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco SN, Centro, Temixco 62580, Mexico
Abstract
Within domestic food cooking, burning firewood in three-stone fires (TSF) is a common practice by more than 16 million users in the Mexican tropical climate region (CR-TR). This article aims to evaluate the implementation of improved firewood cookstoves (ICS) to replace TSF in the CR-TR by constructing firewood consumption scenarios covering 2018–2050. The results show that in CR-TR, with the implementation of ICS, the consumption of 354.95 PJ of firewood, 36.6 Mt of CO2e, 1.29 Mt of CO, and 163.78 kt of PM2.5 can all be avoided. The most important reduction in firewood consumption, CO2e emissions and CO and PM2.5 pollutants, occurs in exclusive firewood users and mixed users who utilize firewood as the primary fuel source, both of whom are low socioeconomic level in rural areas. Furthermore, most paying-for-firewood users often show negative mitigation costs and a high 50% IRR, while all non-paying-for-firewood users have mitigation costs ranging from 7.74 to 41.23 USD/tCO2e. At the end of the results section, we perform a sensitivity analysis of the relevant parameters, which complements this study. Therefore, implementing ICS will contribute to the solution of climate change, deforestation, and facilitate the formulation of sustainable development policies for the most vulnerable population sector of the Mexican CR-TR.
Funder
Desarrollo e implementación de alternativas energéticas sustentables en comunidades rurales de la Meseta Purépecha, Michoacán
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference50 articles.
1. REN21 (2021). Renewables 2021. Global Status Report, REN21 Secretariat.
2. IEA, IRENA, UNSD, World Bank, and WHO (2022). Tracking SDG7: The Energy Progress Report.
3. The Carbon Footprint of Traditional Woodfuels;Bailis;Nat. Clim. Chang.,2015
4. Scenario Analysis for Promoting Clean Cooking in Sub-Saharan Africa: Costs and Benefits;Dagnachew;Energy,2020
5. Biomass Cookstoves: A Review of Technical Aspects;Sutar;Renew. Sustain. Energy Rev.,2015