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Hybrid renewable energy with membrane distillation polygeneration for rural households in Bangladesh: Pani Para Village case study

机译:孟加拉国农村家庭采用膜蒸馏多联产的混合可再生能源:Pani Para Village案例研究

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Despite the country's rural electrification program, kerosene is the predominant source for lighting, and woody biomass is virtually the only the option available for cooking. Aside from this energy service challenges the rural population also struggles with unsafe drinking water in terms of widespread arsenic contamination of well water. Access to electricity, clean cooking gas, and safe drinking water services are genuine needs of the rural poor and are essential to improving welfare. These needs can be addressed individually or using an integrated approach. This study considers a holistic approach towards tackling both of these issues via integrated renewable energy-based polygeneration employed at the community level. The polygeneration unit under consideration provides electricity via a pV array and cow dung-fed digester, which in turn is coupled to a gas engine. Excess digester gas is employed for cooking and lighting, while waste heat from the process drives a membrane distillation unit for water purification. The system is sized to serve a community of 52 households (Pani Para, Faridpur District) with 14 kWe peak demand and 250 kWh/day primary electricity loads. Technical assessments and optimization have been conducted with HOMER. Results show that electricity demand can be met with such a system while simultaneously providing 0.4 m cooking fuel and 2-3 L pure drinking water per person per day. Cost estimates indicate that this approach is highly favorable to other renewable options.
机译:尽管该国实施了农村电气化计划,但煤油是照明的主要来源,而木质生物质实际上是唯一可用于烹饪的选择。除了能源服务面临的挑战外,农村居民还因井水中广泛的砷污染而与不安全的饮用水作斗争。电力供应,清洁的烹饪气体和安全的饮用水服务是农村贫困人口的真正需求,对于改善福利至关重要。这些需求可以单独解决,也可以使用集成方法解决。这项研究考虑了通过在社区一级采用基于可再生能源的综合多联产来解决这两个问题的整体方法。正在考虑中的多联产机组通过pV阵列和牛粪喂养的沼气池提供电力,沼气池又与燃气发动机相连。多余的消化器气体用于烹饪和照明,而过程中产生的废热则驱动膜蒸馏装置进行水净化。该系统的大小可为52个家庭(法里德布尔区的帕尼帕拉)的社区提供14 kWe的峰值需求和250 kWh /天的主用电负荷。 HOMER已进行了技术评估和优化。结果表明,使用这种系统可以满足电力需求,同时每人每天提供0.4 m的烹饪燃料和2-3 L的纯净饮用水。成本估算表明,这种方法对其他可再生能源方案非常有利。

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