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首页> 外文期刊>The Science of the Total Environment >Modeling assisted evaluation of direct electricity generation from waste heat of wastewater via a thermoelectric generator
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Modeling assisted evaluation of direct electricity generation from waste heat of wastewater via a thermoelectric generator

机译:建模辅助评估通过热电发电机从废水废热中直接发电

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摘要

The thermal energy represents a significant portion of energy potential in municipal wastewater and may be recovered as electricity by a thermoelectric generator (TEG). Converting heat to all-purpose electricity by TEG has been demonstrated with large heat gradients, but its application in waste heat recovery from wastewater has not been well evaluated. Herein, a bench-scale Bi2Te3-based waste heat recovery system was employed to generate electricity from a low temperature gradient through a combination of experiments and mathematical modeling. With an external resistance of 7.8 Ω and a water (hot side) flow rate of 75 mL min−1, a maximum normalized energy recovery of 4.5 × 10−4 kWh m−3was achieved under a 2.8 °C temperature gradient (ΔT). Model simulation indicated a boost in both power output and energy conversion efficiency from 0.76 mW and 0.13% at ΔT = 2.8 °C to 61.83 mW and 1.15% at ΔT = 25 °C. Based on the data of two-year water/air temperature obtained from the Christiansburg Wastewater Treatment Plant, an estimated energy generation of 1094 to 70,986 kWh could be expected annually with a saving of $163 to $6076. Those results have revealed a potential for TEG-centered direct electricity generation from low-grade heat towards enhanced resource recovery from wastewater and encouraged further exploration of this approach.
机译:热能在市政废水中占了很大一部分潜力,并且可以通过热电发电机(TEG)回收为电能。已经证明,通过TEG将热量转换为通用电力具有较大的热梯度,但尚未很好地评估其在废水废热回收中的应用。在本文中,通过实验和数学建模相结合,采用了基于台式Bi2Te3的余热回收系统,从低温梯度中发电。在7.8ofΩ的外部电阻和75(mL min-1的水(热侧)流速下,在2.8 C的温度梯度(ΔT)下实现了最大标准化能量恢复为4.5×10-4 kWh m-3。模型仿真表明,功率输出和能量转换效率都从ΔT= 2.8°C时的0.76 mW和0.13%提高到ΔT= 25°C时的61.83 mW和1.15%。根据从克里斯琴斯堡废水处理厂获得的两年水/空气温度数据,预计每年可产生1094至70,986 kWh的能源,可节省163至6076美元。这些结果表明,以TEG为中心的直接发电从低品位热向提高废水资源回收率具有潜力,并鼓励进一步探索这种方法。

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