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Economics of trigeneration in a kraft pulp mill for enhanced energy efficiency and reduced GHG emissions

机译:牛皮纸制浆厂三联产的经济效益,可提高能源效率并减少温室气体排放

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摘要

The potential to liberate steam production capacity for power generation has been assessed using actual energy consumption data and the recorded seasonal consumption fluctuations for a kraft pulp mill. The revenues from power production are compared with possible energy savings, achieved through enhancement of the process efficiency using an absorption heat pump (AHP). Bunker oil, wood bark and black liquor, the fuels used, have very different costs and heating values. The net present value (NPV) was used with a simple payback time (SPB) for the comparison of three cases: (ⅰ) power production from liberated steam capacity using a cogeneration unit, (ⅱ) maximised energy savings using an AHP and (ⅲ) power production combined with heat upgrading and cold production using a trigeneration unit. The results show economic viability of all options investigated. The stand-alone AHP achieves the shortest SPB time, whereas the trigeneration option reaches the highest NPV and therefore the best overall economics.
机译:已使用实际能耗数据和牛皮纸制浆厂记录的季节性消耗波动来评估释放蒸汽发电能力的潜力。通过使用吸收式热泵(AHP)提高过程效率,将发电的收益与可能的节能进行了比较。船用燃料油,木皮和黑液具有不同的成本和热值。净现值(NPV)与简单的投资回收期(SPB)一起用于三种情况的比较:(ⅰ)使用热电联产装置从释放的蒸汽量中发电,(ⅱ)使用AHP最大限度地节省能源,以及(ⅲ )发电,并使用三代发电机组进行热力提升和冷力生产。结果显示了所研究的所有方案的经济可行性。独立的AHP可实现最短的SPB时间,而三代发电选项可实现最高的NPV,因此具有最佳的整体经济性。

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