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CAPMIX-Deploying Capacitors for Salt Gradient Power Extraction

机译:用于盐梯度功率提取的CAPMIX部署电容

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The process of mixing sea and river water can be utilised as a power source. At present, three groups of technology are established for doing so; i) mechanical; Pressure Retarded Osmosis PRO, ii) electrochemical reactions; Reverse ElectroDialysis (RED) and Nano Battery Electrodes (NBE) and iii) ultra capacitors; Capacitive Double Layer Expansion (CDLE) and Capacitors charge by the Donnan Potentials (CDP). The chemical potential for salt gradient power systems is only limited by the feed solution concentrations and is the same for all types of salt power branches, but the electric work to the grid, however, relies on the route of conversion and means chosen therein. The CAPMLX project is a joint project to develop and explore ultra capacitors for doing so. Ultra-capacitor materials can interact with sea and river water in order to be deployed as an electricity source. The author consortium is currently exploring two routes to extract the potential free energy from mixing sea and river water by such means. These two routes are the Capacitive Double Layer Expansion (CDLE) and Capacitors charge by the Donnan Potentials (CDP), which are both recently reported, since 2009. The denominator of the two processes is the porous carbon capacitors constituting the capacitors where the chemical energy is converted into electric energy (current). The CDP differs from the CDLE mainly because it includes the use of membranes in addition to the capacitor materials.
机译:混合海和河水的过程可用作电源。目前,建立了三组技术; i)机械;压力延迟渗透渗透性Pro,II)电化学反应;反向电渗析(红色)和纳米电池电极(NBE)和III)超电容器;电容性双层膨胀(CDER)和电容器由DONNAN电位(CDP)充电。盐梯度动力系统的化学电位仅受进料溶液浓度的限制,并且对于所有类型的盐功率分支是相同的,但是电网的电气工作依赖于转换途径和所选择的途径。 CAPMLX项目是一个开发和探索超电容器的联合项目。超电容器材料可以与海洋和河流相互作用,以便部署为电源。作者联盟目前正在探索两条路线,以通过这种方式从混合海洋和河流中提取潜在的自由能量。这两条路线是由2009年开始的唐纳电位(CDP)的电容双层膨胀(CDEL)和电容器,这些电容(CDP)都是最近报道的。这两个过程的分母是构成化学能量的电容器的多孔碳电容器转换成电能(电流)。 CDP与CDLE不同,主要是因为它包括除电容器材料之外的使用。

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