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Preparation of High Surface Area Activated Carbon from Cow Bone for the Development of Lead Carbon (Pb-C) Batteries for Hybrid Vehicle Applications

机译:从牛骨中制备高表面积活性炭,用于混合碳(PB-C)电池的铅碳(PB-C)电池

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Cow bone, a solid bio-waste found abundant in meat industry, is a threat to environment because of its non-degradable nature. This was converted into activated carbon (AC) by simple methods and characterized by nitrogen sorption at 77 K, SEM, XRD and FTIR. These AC had high S_(BET) of 2803 m~2/g and Vt = 1.126 cm~3/g, many micropores with the size of 0.3-0.7, 0.9-2.0, 2.5-4.0 and 4.4-10 nm including mesopores and macropores. These ACs were added to the negative active materials (NAM) to develop a Pb-C battery that can withstand the HRPSoC. Many batches of NAM with the addition of AC at various concentrations were made on 2V, 20 Ah Pb-C batteries and tested using simulation cycles like mDCAT, fleshing machine simulation, EUCAR and Simple CD cycles under HRPSoC. This battery achieved a higher cycle number of 109000 for mDCAT. The capacity turnover was 500 times more. This cost effective and eco-friendly method could be a promising candidate for energy storage.
机译:牛骨,肉类行业丰富的固体生物废物,是对环境的威胁,因为其不可降解的性质。通过简单的方法将其转化为活性炭(AC),并以77K,SEM,XRD和FTIR为特征。这些AC具有2803m〜2 / g和Vt = 1.126cm〜3 / g的高S_(BET),许多尺寸为0.3-0.7,0.9-2.0,2.5-4.0和4.4-10nm,包括中孔和4.4-10nm的微孔大孔。将这些ACS添加到负极活性材料(NAM)中以开发能够承受HRPSOC的PB-C电池。在2V,20 AH PB-C电池中制备许多批次的NAM,并在2V,20 AH PB-C电池上进行,并使用像MDCAT,肉体机模拟,桉树下的仿真循环进行测试,在HRPSOC下。该电池为MDCAT实现了较高的109000循环数。能力营业额越来越500倍。这种成本效益和生态友好的方法可能是储能的有希望的候选者。

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