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基于蒸发势和流动电势协同效应的自然水蒸发双重机制。

Dual mechanisms based on synergistic effects of evaporation potential and streaming potential for natural water evaporation.

作者信息

Gao Feng, Tu Jingjing, Qu Jiangying, Ge Jiawei, Yin Qian, Zang Yunhao, Zhong Weijun, Jiao Zhe

机构信息

Dongguan Key Laboratory of Low-Carbon Recycling and Utilization, School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523808, PR China.

Dongguan Key Laboratory of Low-Carbon Recycling and Utilization, School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523808, PR China.

出版信息

J Colloid Interface Sci. 2024 Jun;663:251-261. doi: 10.1016/j.jcis.2024.02.057. Epub 2024 Feb 7.

Abstract

Electricity generation by natural water evaporation generators (NWEGs) using porous materials shows great potential for energy harvesting, but mechanistic investigations of NWEGs have mostly been limited to streaming potential studies. In this study, we propose the coexistence of an evaporation potential and streaming potential in a NWEG using ZSM-5 as the generation material. The iron probe method, salt concentration regulation, solution regulation, and side evaporation area regulation were used to analyze the NWEG mechanism. Our findings revealed that a streaming potential formed as water flowed inside the ZSM-5 nanochannels, driven by electrodynamic effects that increased from the bottom to the top of the generator. In addition, an evaporation potential existed at the surface interface between ZSM-5 and water, which decreased from the bottom to the top as the evaporation height of the generator increased. The resulting open-circuit voltage (V) depended on the balance between the evaporation and streaming potentials, both of which were influenced by the evaporation enthalpy (E) or vapor pressure. Generally, a higher E or lower vapor pressure led to a lower evaporation potential and subsequently a lower V. A dual mechanism involving synergistic evaporation potential and streaming potential is proposed to explain the mechanism of NWEGs.

摘要

利用多孔材料的天然水蒸发发电机(NWEGs)发电在能量收集方面显示出巨大潜力,但对NWEGs的机理研究大多局限于液流电势研究。在本研究中,我们提出在以ZSM-5作为发电材料的NWEG中存在蒸发电势和液流电势共存的情况。采用铁探针法、盐浓度调节、溶液调节和侧面蒸发面积调节来分析NWEG的机理。我们的研究结果表明,由于电动力学效应,当水在ZSM-5纳米通道内流动时会形成液流电势,该效应从发电机底部到顶部逐渐增强。此外,在ZSM-5与水的表面界面处存在蒸发电势,随着发电机蒸发高度的增加,该电势从底部到顶部逐渐降低。由此产生的开路电压(V)取决于蒸发电势和液流电势之间的平衡,这两者都受蒸发焓(E)或蒸气压的影响。一般来说,较高的E或较低的蒸气压会导致较低的蒸发电势,进而导致较低的V。我们提出了一种涉及协同蒸发电势和液流电势的双重机制来解释NWEGs的机理。

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