华电技术 ›› 2020, Vol. 42 ›› Issue (4): 84-88.

• CO2 捕集与利用 • 上一篇    

太阳能聚光光伏-余热碳捕集利用方式分析

  

  1. 南京师范大学 能源与机械工程学院,南京 210046
  • 出版日期:2020-04-25 发布日期:2020-05-15

Analysis of utilization modes combining concentrating photovoltaic power generation and photovoltaic residual heat driving carbon capture

  1. School of Energy and Mechanical Engineering,Nanjing Normal University,Nanjing 210046,China
  • Online:2020-04-25 Published:2020-05-15

摘要: 燃煤电站碳捕集是缓解全球温室效应的重要举措。燃煤电站燃烧后碳捕集技术的设备安装在电站尾部,改造、集成较为方便,但捕集过程能耗极高,单纯依靠电厂自身供能严重影响发电效率。在砷化镓聚光光伏电池的转化过程中存在大量余热,且余热温度大于钾基碳捕集热源温度,具有驱动钾基碳捕集反应的潜力。本研究提出了聚光光伏-余热碳捕集的光伏光热综合利用方式,建立聚光砷化镓-余热钾基碳捕集的能量转化模型,分析了光伏发电温度及辐照度对光伏发电及碳捕集性能的影响规律。将其集成于某600 MW亚临界燃煤电站:相较于单一燃煤碳捕集系统,集成系统发电效率提升 6.56百分点,总发电量提升约 50%;相较于单一光伏发电系统,集成系统的光伏发电效率降低4.49百分点,但额外增加碳捕集量380.82 t/h。本研究提出的余热利用方式缩小了碳捕集能耗对燃煤电站发电效率的影响,实现了太阳能在发电及碳减排上的双效利用,为太阳能高效梯级利用提供了新思路。

关键词: 光伏发电, 钾基CO2吸收剂, 光伏光热综合利用, 燃煤发电, 光伏余热, 碳捕集, 电站效率, 太阳能

Abstract: Carbon capture in coal-fired power stations is an important measure to alleviate the global greenhouse effect. The equipment for coal-fired power stations taking post-combustion carbon capture technology is generally placed at the tails of stations.It is conducive to the integration and transformation of existing power stations,but is of high energy consumption rate . Powering the carbon capture equipment soley by the coal-fired power stations will impact their power generation efficiencies. There is abundant residual heat in the conversion process of gallium arsenide(Ga-As)concentrated PV batteries,and the temperature is higher than that required as potassium-based carbon capture heat source,which shows potential in driving potassium-based carbon capture reaction. Therefore,this study proposes a comprehensive utilization method of concentrated photovoltaic power generation and carbon capture with residual heat,and explore the influence of PV operating temperature and irradiation on the performance of concentrated photovoltaic power generation and carbon capture,after establishing a model of energy conversion by Ga-As and one of carbon capture by potassium-based absorbent driven by residual heat. Applying it into a 600 MW subcritical coal-fired power station,compared it with a carbon capture system driven coal-fired power station,the power generation efficiency in the integrated system increased by 6.56 percentage points and its total power generation increased by 50% roughly.Compared it with a concentrated PV system,the efficiency of PV power generation is reduced by 4.49 percentage points,but the additional carbon capture per hour is increased by 380.82 t. The method proposed alleviates the impact of carbon capture energy consumption on the efficiency of coal-fired power stations,which realizes the solar energy dual usage of within power generation and carbon emission reduction,and provides a new idea for the efficient cascade utilization of solar energy.

Key words: photovoltaic power generation, potassium-based CO2 capture absorbent, comprehensive utilization of concentrated photovoltaic power and photovoltaic heat, coal-fired power generation, photovoltaic of residual heat, carbon capture, efficiency of coal-fired power station, solar power