A kind of reduction regeneration agent of lead methanesulfonate electrolyte and the reduction regeneration method of lead methanesulfonate electrolyte

A technology of lead methane sulfonate and methane sulfonic acid, which is applied in regeneration fuel cells, aqueous electrolytes, electrolyte flow treatment and other directions, can solve the problems of dendrite breaking, affecting the battery cycle performance, and easy to fall off the electrolyte. The effect of extending cycle life, improving charge-discharge cycle efficiency and performance

Active Publication Date: 2020-10-09
HAOFA ENVIRONMENTAL PROTECTION TECH SHENZHEN CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At this time, in the lead methanesulfonate flow battery, there is a large amount of elemental Pb on the negative plate, and the generated dendrites contact the positive electrode to cause an open circuit phenomenon; while the charge and discharge cycle on the positive plate, the pole A large amount of PbO remains on the board 2 Precipitation, in the form of paste (α-PbO 2 Gradually transform into β-PbO 2 ), and it is easy to fall off into the electrolyte, thereby reducing the Pb in the electrolyte 2+ The concentration of the battery will inevitably affect the cycle performance of the battery, that is, the reduction of Coulomb and energy efficiency

Method used

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  • A kind of reduction regeneration agent of lead methanesulfonate electrolyte and the reduction regeneration method of lead methanesulfonate electrolyte
  • A kind of reduction regeneration agent of lead methanesulfonate electrolyte and the reduction regeneration method of lead methanesulfonate electrolyte

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Embodiment 1

[0030] A lead methanesulfonate electrolyte reduction regeneration agent, said lead methanesulfonate electrolyte reduction regeneration agent is an aqueous solution containing hydrogen peroxide and methanesulfonic acid, wherein the molar concentration of hydrogen peroxide is 9.567mol / L, the molar concentration of methanesulfonic acid is 0.102mol / L.

[0031] The preparation method of this lead methanesulfonate electrolyte reduction regeneration agent is: in the hydrogen peroxide aqueous solution that mass fraction is 30% (molar concentration is 9.794mol / L), adding a small amount of mass fraction is 70% (molar concentration is 9.794mol / L) 9.834mol / L) methanesulfonic acid aqueous solution, adjust the pH value to 1, record the amount of methanesulfonic acid aqueous solution added, and prepare a stable regenerant solution. In this reducing and regenerating agent, the molar concentration of hydrogen peroxide is 9.567mol / L, the molar concentration of methanesulfonic acid is 0.102mol / ...

Embodiment 2

[0033] The method for reducing and regenerating the lead methanesulfonate liquid flow battery electrolyte with reduced efficiency by utilizing the lead methanesulfonate electrolyte reduction regeneration agent of embodiment 1:

[0034] Assemble the positive and negative electrodes with an effective electrode area of ​​3cm 2 For a lead methanesulfonate flow battery with a positive and negative electrode spacing of 4 mm, prepare 200 ml of electrolyte ([Pb 2+ ] is 0.7mol / L, [H + ] is 1.0mol / L), the linear flow velocity of the electrolyte between the plates is 0.05m / s, and the experimental temperature is 298K. After charge and discharge of lead methanesulfonate flow battery several times, Pb2+ As the concentration decreases, the charge-discharge cycle efficiency decreases accordingly. In order to prolong the cycle life of the battery and improve the cycle performance of the battery, it is maintained and recycled. Specific steps are as follows:

[0035] Step 1: The above-mention...

Embodiment 3

[0043] The method for reducing and regenerating the lead methanesulfonate liquid flow battery electrolyte with reduced efficiency by utilizing the lead methanesulfonate electrolyte reduction regeneration agent of embodiment 1:

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Abstract

The invention discloses a reduction regeneration agent for a lead methanesulfonate electrolyte and a method for carrying out reduction regeneration on the electrolyte of a lead methanesulfonate flow battery which is short-circuited or is relatively low in efficiency by using the reduction regeneration agent. The reduction regeneration agent is a water solution containing H2O2 and CH3SO3H; and thereduction regeneration method comprises the following steps of detecting the molar concentration of remaining active Pb<2+> in the electrolyte of the lead methanesulfonate flow battery which is short-circuited or is relatively low in efficiency; calculating the additive amount of the reduction regeneration agent according to the concentration of the remaining active Pb<2+>; and injecting the reduction regeneration agent into the electrolyte, controlling the injection rate and completing reduction regeneration of the electrolyte when no obvious bubble is generated at a reflux inlet of a liquidstorage tank. According to the reduction regeneration agent and the reduction regeneration method, the condition that the concentration of the Pb<2+> in the electrolyte of the battery which is short-circuited or is relatively low in efficiency is restored to be close to an initial state can be achieved, thereby achieving the targets of improving the charge-discharge cycle efficiency of the batteryand prolonging the cycle life of the battery.

Description

technical field [0001] The invention relates to the technical field of lead methanesulfonate flow batteries, in particular to a reduction and regeneration agent for the electrolyte of lead methanesulfonate flow batteries and the use of the reduction regeneration agent for short-circuited or low-efficiency lead methanesulfonate A method for maintaining and restoring the electrolyte of the flow battery. Background technique [0002] The unique design of the lead methanesulfonate flow battery without a diaphragm and single flow has attracted much attention. During the charging process, the soluble Pb in the electrolyte 2+ React at the positive and negative electrodes to form PbO 2 and Pb solids, when discharged, PbO 2 and Pb are respectively reduced and oxidized to form soluble Pb 2+ Entering the electrolyte, this cycle completes the process of energy storage and energy use. Experiments have found that when the charge-discharge cycle exceeds 50 times, the Coulombic efficien...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M8/04276H01M8/18
CPCH01M8/04276H01M8/188H01M2300/0002Y02E60/50
Inventor 刘政赵健李远发蒋百铃计东东
Owner HAOFA ENVIRONMENTAL PROTECTION TECH SHENZHEN CO LTD
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