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Land use and household energy dynamics in Malawi

机译:马拉维的土地利用和家庭能源动态

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Interventions to mitigate household air pollution (HAP) from cooking with solid fuels often fail to take into account the role of access to freely available woodfuels in determining fuel choice and willingness to adopt clean cooking technologies, key factors in mitigating the burden of HAP. We use national-scale remote sensing data on land use land cover change, and population representative data from two waves of the Malawi Living Standards Measurement Survey to explore the relationship between land use change and the type of fuel households use, time spent collecting fuel, and expenditures on fuel, hypothesizing that land use dynamics influence household-level choice of primary cooking fuel. We find considerable heterogeneity with respect to regeneration and deforestation/degradation dynamics and evidence of spatial clustering. We find that regeneration of forests and woodlands increases the share of households that collect fuelwood, whereas deforestation and degradation lead households to purchase fuelwood. We also find that a relatively large share of land under woody savannah or degraded forest (versus fully stocked forest) increases fuel collection time. Areas with regeneration happening at broader scale experience increases in fuel expenditures. Our findings have implications for the spatial targeting of interventions designed to mitigate HAP.
机译:减少使用固体燃料烹饪而产生的家庭空气污染(HAP)的干预措施常常没有考虑到获取免费的木质燃料在确定燃料选择中的作用以及采用清洁烹饪技术的意愿,这是减轻HAP负担的关键因素。我们使用关于土地利用土地覆盖变化的国家级遥感数据,以及来自两次马拉维生活水平衡量调查的人口代表性数据,来探索土地利用变化与家庭燃料使用类型,收集燃料所花费的时间,和燃料支出,假设土地利用动态会影响家庭一级主要烹饪燃料的选择。我们发现在再生和毁林/退化动态以及空间聚类的证据方面存在很大的异质性。我们发现,森林和林地的更新增加了收集薪柴的家庭的比例,而森林砍伐和退化导致家庭购买了薪柴。我们还发现,在木质大草原或退化森林(相对于林木完好)下,相对较大的土地面积增加了燃料收集时间。在更大规模发生再生的地区,燃料消耗增加。我们的发现对旨在减轻HAP的干预措施的空间定位具有影响。

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