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Application of renewable energy to provide safe water from deep tubewells in rural Bangladesh

机译:应用可再生能源从孟加拉国农村的深层管井提供安全水

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摘要

Renewable energy can potentially play a role in the supply of safe water in Bangladesh, where nearly 70% of the rural population does not have access to electricity. This paper examines the possible application of renewable energy for pumping water from geologically safe deep tubewells to overcome limitations in existing water technologies in the arsenic-contaminated villages in Bangladesh. Renewable energy, national grid electricity, and alternatives such as diesel engines have been considered as sources of power for both suction and submersible pumps in electrified and non-electrified villages. Three locally available renewable energy sources (human energy, biogas, and solar energy) have been assessed as power sources for reciprocating and submersible pumps. These renewable energy options have not been found cost competitive with the deep tubewells which run off the national grid in electrified villages. However, electricity generated from biogas has the potential to power submersible pumps in non-electrified villages. This paper discusses some financial mechanisms to promote capital-intensive energy options for deep tubewells in arsenic-affected rural areas.
机译:在孟加拉国,近70%的农村人口无法获得电力,可再生能源可能在安全水供应中发挥作用。本文研究了可再生能源在地质安全的深管井中抽水的可能应用,以克服孟加拉国受砷污染的村庄现有水技术的局限性。在电气化和非电气化村庄,可再生能源,国家电网电力以及诸如柴油发动机之类的替代品已被视为吸水泵和潜水泵的动力来源。已经评估了三种本地可再生能源(人力,沼气和太阳能)作为往复泵和潜水泵的动力源。尚未发现这些可再生能源的选择与在电气化村庄中穿越国家电网的深层管井相比具有成本竞争力。但是,沼气产生的电有潜力为非电气化村庄的潜水泵提供动力。本文讨论了一些金融机制,以促进受砷影响的农村地区深部管井的资本密集型能源选择。

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