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Data on the current-voltage dependents of nickel hollow microspheres based thermo-electrochemical in alkaline electrolyte

机译:基于碱性电解质的镍中空微球的电流电压依赖性的数据

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摘要

Low-grade waste heat harvesting and conversion into electric energy is an important way of renewable energy development and thermo-electrochemical cells are promising devices to solve this problem. In this paper, we report original data on the current density and maximum output power dependents on voltage of the thermos-cells with nickel hollow microspheres electrodes and different electrolyte concentration (from 0.1 to 3.0 mol/l)which exhibit excellent hypothetical Seebeck coefficient and accordingly high open-circuit voltage values at low source temperature. The composition, microstructure and morphology of the hollow nickel microspheres based electrodes are included here. Because of the low cost of nickel based thermo-cells could be commercially feasible for harvesting low-quality thermal energy, in this connection, the raw data of measurements of their properties are given here.
机译:低级废热收获和转化为电能是可再生能源开发的重要方式,热电化学电池是有前途的设备来解决这个问题。在本文中,我们报告了电流密度和最大输出功率的原始数据在镍中空微球电极和不同电解质浓度(0.1至3.0mol / L)的电压上,其表现出优异的假设塞匹克系数,并因此低源极温度下的高开路电压值。这里包括中空镍微球的组成,微观结构和形态。由于基于镍的热电池的低成本可用于收获低质量的热能,因此在此连接中,在此处提供其性质的原始数据。

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