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Integration of thermo-vapor compressors with phenol and ammonia recovery process for coal gasification wastewater treatment system

机译:热蒸气压缩机与苯酚和氨回收工艺的集成,用于煤气化废水处理系统

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Current phenol and ammonia treatment process consumes a large amount of hot utilities to recover crude phenol and aqua ammonia, which includes 0.5 MPag steam (2.68 MW), 1.0 MPag steam (10.17 MW), and 2.5 MPag steam (1.97 MW) based on the benchmark treatment capacity of 100 t/h. This paper fixates on the further improvement of energy efficiency by process integration and innovation. A novel integrated process is proposed in this paper to abate utilities consumption. Two scenarios have been analyzed following the Grand Composite Curve. The results show that one of the new integrated processes performs better energy saving efficiency. It requires 53.7% (7.96 MWsteam) less hot utility consumption and 57.5% (6.86 MWcw) less cooling water consumption at the expense of 68.7% (662 kW(elec)) more electricity use, as suggested in simulation results. The estimated cost savings relevant to the improved process is 1.095 million US$/y, and the emission reduction is 5237 t CO2 e/y. (C) 2018 Published by Elsevier Ltd.
机译:当前的苯酚和氨气处理过程会消耗大量热能来回收粗制苯酚和氨水,其中包括0.5 MPag蒸汽(2.68 MW),1.0 MPag蒸汽(10.17 MW)和2.5 MPag蒸汽(1.97 MW)。基准处理能力为100吨/小时。本文着眼于通过流程集成和创新来进一步提高能源效率。本文提出了一种新颖的集成过程来减少公用事业的消耗。根据大综合曲线分析了两种情况。结果表明,新的集成工艺之一具有更好的节能效果。如模拟结果所示,它需要减少53.7%(7.96 MWsteam)的热电消耗和57.5%(6.86 MWcw)的冷却水消耗,但要多消耗68.7%(662 kW(elec))的电力。与改进工艺相关的估计成本节省为10.95百万美元/年,减排量为5237吨CO2 e / y。 (C)2018由Elsevier Ltd.发布

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