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Energy efficiency improvement of a Kraft process through practical stack gases heat recovery

机译:通过实际的烟道气热回收提高牛皮纸工艺的能效

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摘要

A process scheme for the optimal recovery of heat from stack gases considering energy and technical constraints has been developed and applied to an existing Kraft pulping mill. A system based on a closed loop recirculation of hot oil is used to recover the heat from stack gases and distribute it to the appropriate cold streams. The recovery of heat from stack gases is part of an overall optimization of the Kraft mill. Tools such as Pinch Analysis and exergy analysis are used to evaluate the process streams. The results indicate that 10.8 MW of heat from stack gases can be reused to heat process streams such as the deaerator water, hot water, drying filtrates, and black liquor. A simulation model of the recirculation loop has been developed to determine the specifications of the recovery system. The total heat exchanger surface area required by the system is 3460 m~2, with a hot oil recirculation temperature of 137℃. The anticipated total investment is $10.3 M, with a payback time of 1.8 years.
机译:考虑到能源和技术限制,已经开发了一种从烟道气中最佳回收热量的工艺方案,并将其应用于现有的牛皮纸制浆厂。使用基于热油闭环再循环的系统从烟道气中回收热量并将其分配到适当的冷物流中。从烟道气中回收热量是硫酸盐厂整体优化的一部分。夹点分析和火用分析等工具可用于评估工艺流程。结果表明,来自烟道气的10.8兆瓦热量可再用于加热工艺流,例如脱气器水,热水,干燥的滤液和黑液。已经开发出再循环回路的仿真模型,以确定回收系统的规格。系统所需的总热交换器表面积为3460 m〜2,热油循环温度为137℃。预计总投资为1,030万美元,投资回收期为1.8年。

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