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A micro industry with closed energy and water cycles for sustainable rural development

机译:封闭能源和水循环的微型产业,促进农村可持续发展

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摘要

Sustainable development requires combining economic viability with energy and environment conservation and ensuring social benefits. It is conceptualized that for designing a micro industry for sustainable rural industrialization, all these aspects should be integrated right up front. The concept includes; (a) utilization of local produce for value addition in a cluster of villages and enhancing income of the target population; (b) use of renewable energy and total utilization of energy generated by co and trigeneration (combining electric power production with heat utilization for heating and cooling); (c) conservation of water and complete recycling of effluents; (d) total utilization of all wastes for achieving closure towards a zero waste system. Enhanced economic viability and sustainability is achieved by integration of appropriate technologies into the industrial complex. To prove the concept, a model Micro Industrial Complex (MIC) has been set up in a semi arid desert region in Rajasthan, India at village Malunga in Jodhpur district. A biomass powered boiler and steam turbine system is used to generate 100-200 KVA of electric power and high energy steam for heating and cooling processes downstream. The unique feature of the equipment is a 100-150 kW back-pressure steam turbine, utilizing 3-4 tph (tonnes per hour) steam, developed by M/s IB Turbo. The biomass boiler raises steam at about 20 barg 3 tph, which is passed through a turbine to yield about 150 kW of electrical power. The steam let out at a back pressure of 1-3 barg has high exergy and this is passed on as thermal energy (about 2 MW), for use in various applications depending on the local produce and resources. The biomass fuel requirement for the boiler is 0.5-0.75 tph depending on its calorific value. In the current model, the electricity produced is used for running an oil expeller to extract castor oil and the castor cake is used as fuel in the boiler. The steam is used in a Multi Effect Distillation (MED) unit for drinking water production and in a Vapour Absorption Machine (VAM) for cooling, for banana ripening application. Additional steam is available for extraction of herbs such as mint and processing local vegetables. In this paper, we discuss the financial and economic viability of the system and show how the energy, water and materials are completely recycled and how the benefits are directed to the weaker sections of the community.
机译:可持续发展需要将经济可行性与能源和环境保护相结合,并确保社会效益。它的概念是,为设计一个可持续的农村工业化的微型产业,所有这些方面都应该预先整合。该概念包括; (a)利用当地产品在一系列村庄中增值并增加目标人口的收入; (b)使用可再生能源,并同时利用热电联产和三联产发电的总能量(将电力生产与加热和冷却的热量利用相结合); (c)节约用水并完全回收废水; (d)全面利用所有废物,以实现向零废物系统的关闭。通过将适当的技术集成到工业园区中,可以提高经济可行性和可持续性。为了证明这一概念,在印度拉贾斯坦邦的一个半干旱沙漠地区的乔德普尔县Malunga村建立了一个微型工业综合体(MIC)模型。生物质动力锅炉和蒸汽轮机系统用于产生100-200 KVA的电力和高能蒸汽,用于下游的加热和冷却过程。该设备的独特之处是由M / s IB Turbo开发的100-150 kW背压蒸汽轮机,利用3-4 tph(吨/小时)的蒸汽。生物质锅炉以约20 barg 3 tph的速度产生蒸汽,该蒸汽通过涡轮机产生约150 kW的电力。背压为1-3 barg时释放出的蒸汽具有较高的火用能,并且会以热能(约2 MW)的形式继续传递,用于各种应用,具体取决于当地的产品和资源。锅炉的生物质燃料需求为0.5-0.75 tph,具体取决于其发热量。在当前模型中,产生的电力用于运行榨油机以提取蓖麻油,而蓖麻饼用作锅炉中的燃料。蒸汽用于生产饮用水的多效蒸馏(MED)装置和用于香蕉成熟的蒸汽吸收机(VAM)进行冷却。额外的蒸汽可用于提取草药(例如薄荷)和加工当地蔬菜。在本文中,我们讨论了该系统的财务和经济可行性,并展示了如何将能源,水和材料完全回收利用,以及如何将收益直接用于社区中较弱的部分。

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