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Study on synthesis and application of tetrabasic lead sulfate as the positive active material additive for lead-acid batteries

机译:硫酸盐铅硫酸盐作为铅酸蓄电池阳性活性物质添加剂的合成及应用研究

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Tetrabasic lead sulfate (4BS) was used as a positive active material additive for lead-acid batteries, which affirmatively affected the performance of the battery. Herein, tetrabasic lead sulfate was synthesized from scrap lead paste that was formed through the production process of the lead-acid batteries. This solves the disposing problem of the scrap lead paste that is challenging in the production of the lead-acid batteries. Scrap lead paste was first pre-treated and the 4BS with high purity and crystalline was synthesized by sintering at the temperature of 450°C and hold time of 7 h. As demonstrated by X-ray diffraction and scanning electron microscopy test and Material Studio software calculation, the purity of synthesized 4BS is higher than 98 wt%, small particles have pillar forms and are evenly distributed. Moreover, the synthesized 4BS of 1 wt% was added to the positive lead paste and then valve-regulated lead-acid battery was made after the pasting, curing and formation processes. The effectiveness of the lead-acid batteries after adding 4BS as crystal seeds was evaluated, and the 100% charge–discharge cycle life of the new battery (523 times) was about 1.4 times higher than that of general lead-acid batteries (365 times).
机译:用硫酸电池用硫酸四种铅硫酸盐(4Bs)作为阳性活性物质添加剂,这肯定地影响了电池的性能。这里,通过通过铅酸电池的生产过程形成的废铅浆料中合成了四种硫酸铅。这解决了在生产铅酸电池的生产中具有挑战性的废料引线浆料的处理问题。首先预处理废料铅浆,通过在450℃的温度下烧结并保持7小时的时间来合成具有高纯度和结晶的4bs。如X射线衍射和扫描电子显微镜测试和材料工作室软件计算所证明的,合成4BS的纯度高于98重量%,小颗粒具有柱形,均匀分布。此外,将1wt%的合成4Bs加入到正铅浆中,然后在粘贴,固化和形成过程之后制备阀调节的铅酸电池。评估了铅酸电池作为晶体种子加入4Bs后的有效性,新电池的100%充放电循环寿命比一般铅酸电池的电池(523次)高约1.4倍(365次)。

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