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网络信息时代的快速发展,以移动电话手机为代表的通讯设备迅猛发展,人们换手机的频率也越来越快,因此产生了大量的废旧手机电池。为了解废旧手机电池的回收利用情况,本研究主要通过对居民就废旧手机电池的处理方式进行了调查和统计,针对泸州市废旧手机电池的处理现状,提出相应的管理措施和回收利用的对策。 相似文献
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Lithium-ion batteries with relatively narrow operating temperature range have provoked concerns regarding the safety of LIBs. In this work, a series of experiments were conducted to explore the thermal runaway (TR) behaviors of charging batteries in a high/low temperature test chamber. The effects of charging rates (0.5 C, 1 C, 2 C, and 3 C), and ambient temperature (2 °C, 32 °C and 56 °C) are comprehensively investigated.The results indicate that the cell exhibited greater thermal hazard at the high charging rate and ambient temperature conditions. As the charging rate increased from 0.5 C to 3 C, more lithium intercalated in the anode prompt the TR triggered in advance, the TR onset temperature decreased from 297.5 °C to 264.7 °C. In addition, the charging time decreased with the elevated ambient temperature, resulting in a relatively higher TR onset temperature and lower maximum temperature, and the average TR critical time declined by 115–143 s. Finally, the TR required less heat accumulation with increasing of charging rate and ambient temperature, and the heat generation of side reaction played a substantial role that accounted for approximately 54%∼63%. These results provide an insight into the charging cell thermal runaway behaviors in complex operation environments and deliver valuable guidance for improving the safety of cell operation. 相似文献
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目的建立基于实测环境载荷的热电池等效加速贮存试验技术,掌握其在环境载荷作用下的性能退化规律。方法在分析热电池组成和所受环境载荷情况的基础上,分析热电池的主要失效模式,设计基于实测环境数据的等效加速贮存试验,开展热电池等效加速贮存试验,分析热电池性能和热图像的变化情况,利用粒子滤波算法对电池剩余电容量进行预测。结果随加速循环次数(时间)的增加,热电池的电容量下降。热图像表明,热电池经过等效加速贮存试验后,其放电过程表面温度要高于初始放电表面温度。粒子滤波算法能够有效模拟电容量的退化过程,电池剩余电容量预测结果与试验结果误差在10%以内。结论等效加速贮存试验得到了热电池的性能退化规律,从而为热电池的贮存试验提供一种解决方案。 相似文献
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The amount of used lead acid batteries rises along with the rapid development of battery manufacture in China. The battery manufacture and recycling industry has developed sharply in these recent 5 years. The annual production of secondary lead from used lead acid batteries in China increased rapidly to 1.5 million tonnes (MT) in 2013, making china the world's largest secondary lead producer. Secondary lead enterprises are mainly located in the middle and eastern regions of China, with a legal production capacity of 3 MT/year. Environmental pollution problems began to happen frequently from 2009. After 2011, the government began to put in efforts to promote pollution control, eliminate outdated production capacity, support advanced production and technology innovation research, and has achieved remarkable results. However, the main existing problems are that the proportion of secondary lead production is only 30% of the total lead production, no formal recycling network has been established and the overall level of industrial technology and equipment is outdated. Compared with developed countries, this paper predicts that, secondary proportion will reach 44% in 2015 and 60% in 2028. Finally some countermeasures are given to the recycling mode and technology promotion. 相似文献
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Two strains of Pseudomonas species (B2 and D5)selected from an array of lead solubilizing and accumulatingbacteria obtained from the effluent contaminated soil samples of abattery manufacturing factory were studied. Increase in pH between 4.0 and 6.0 favoured the growth of isolates: Peaklog10 cfu mL–1 values of 7.1, 7.5 and 8.5 wereobtained at pH 4, 5 and 6, respectively.Cell bound lead concentrations for B2 (0.34 mg mL–1)and D5 (0.30 mg mL–1) obtained by direct contact withPbs were greater than lead concentrations of 0.89 and 0.25 mg mL–1 for B2 and D5, respectively,obtained in dialyzed cultures. These cell bound lead concentration in undialyzed cultures were alsogreater than lead concentrations of 0.03 and 0.07 mg mL–1 for B2 and D5 in culture supernatants. Glucose addition did nor improve lead accumulation in the isolates.Exploitation of such isolates for the biotreatment of lead ladeneffluent was conducted. 相似文献
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基于循环特性的镍氢和锂离子电池环境影响机制分析 总被引:1,自引:1,他引:0
为了了解镍氢电池和锂离子电池在生产、使用、废弃或回收过程中的环境影响,建立了一种简单快速的二次电池环境影响机制分析方法。通过生命周期评价(LCA)方法,采用Eco-indicator99体系,综合考虑电池循环容量衰减和循环次数的影响,建立了二次电池环境影响机制分析模型,并运用此模型对两种实验用二次电池(镍氢电池和锂离子电池)的环境影响机制进行了研究。结果表明:1)在所选取的两种二次电池当中,锂离子(Li-ion)电池的环境影响明显比镍氢(Ni-MH)电池的低;2)随着循环次数的增加Li-ion电池环境影响衰减比Ni-MH电池的明显,即随着使用循环次数的增加,Li-ion电池对环境的影响会降低到更多。综合来说,所选取的Li-ion电池比Ni-MH电池更具环境可持续性。文中所提出的环境影响机制分析模型同样可以应用于其他二次电池,以期为环境友好型二次电池的开发提供帮助。 相似文献