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首页> 外文期刊>Journal of Cleaner Production >Impact of solid waste treatment from spray dryer absorber on the levelized cost of energy of a coal-fired power plant
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Impact of solid waste treatment from spray dryer absorber on the levelized cost of energy of a coal-fired power plant

机译:喷雾干燥器吸收器处理固体废物对燃煤电厂能源平均成本的影响

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摘要

Coal-fired power plants with semi-dry flue gas desulfurization (semi-dry FGD) system produce daily tones of ashes contaminated with calcium sulphite. To turn this solid waste useful (e.g. to the cement industry) and avoid landfill disposal, the present study suggests a semi-dry FGD solid waste treatment unit, that promotes the dry oxidation of calcium sulfite to calcium sulfate. Sizing of main equipment using pilot-plant and patents data allows economic evaluation of capital expenditure, operational and maintenance costs, and sale of the treated residue, which permits estimation of levelized cost of energy to assess the impact of the technology on the electricity price of a power plant using the proposed solid waste treatment unit. As base case, a Brazilian coal-fired power plant facing decision making process on semi-dry FGD waste destination is selected. Results demonstrate that the semi-dry FGD, without the solid treatment unit, has total levelized cost of energy increased in 0.56% (from 94.44 to 94.97 $/MWh) resulting from solids waste disposal. If the treated semi-dry FGD waste was transferred (at zero revenue) as additive to a cement industry, the levelized cost of energy of the power plant would remain approximately unchanged. This is because the increase of 0.51$/MWh resulting from the investment and operation and maintenance cost of the treatment unit is compensated by the decrease of 0.53$/MWh, in virtue of the avoided waste disposal costs. However, if the commercialization as raw material of the treated semi-dry FGD waste is considered, a reduction of 2.83 $/MWh (similar to 3%) on the levelized cost of energy (to 92.14 $/MWh) would occur. In both cases, the proposed treatment unit shows small impact on the total power plant levelized cost of energy, besides solving the solid management problems of landfill saturation, land use and costs related to landfill maintenance. Thus, it is adequate to implement the semi-dry FGD waste treatment unit on the power plant in question. The conclusion can be extended to plants with similar design and economic parameters. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有半干烟气脱硫(半干烟气脱硫)系统的燃煤电厂每天都会产生被亚硫酸钙污染的灰烬。为了使这种固体废物有用(例如对水泥工业)并避免垃圾填埋,本研究提出了一种半干的烟气脱硫固体废物处理装置,该装置可促进亚硫酸钙的干式氧化为硫酸钙。利用中试工厂和专利数据确定主要设备的尺寸,可以对资本支出,运营和维护成本以及处理后的残渣进行经济评估,从而可以估算平均能源成本,以评估技术对电价的影响。使用建议的固体废物处理单元的发电厂。作为基础案例,选择了一个巴西燃煤电厂,该电厂要对半干烟气脱硫废物目的地进行决策。结果表明,由于没有固体处理装置,半干烟气脱硫的总平准化能源成本因固体废物处置而增加了0.56%(从94.44美元/ MWh增加到94.97美元/ MWh)。如果将处理后的半干烟气脱硫废料(零收入)作为添加剂转移到水泥行业,则电厂的平均能源成本将保持大致不变。这是因为,由于避免了废物处理成本,由处理单元的投资以及运行和维护成本导致的0.51 $ / MWh的增加被0.53 $ / MWh的减少所补偿。但是,如果考虑将已处理的半干烟气脱硫废料作为原料商业化,则可将平均能源成本降低至2.83 $ / MWh(约3%)(降至92.14 $ / MWh)。在这两种情况下,拟议的处理单元对电厂总平准化的能源成本影响不大,除了解决了垃圾填埋场饱和度,土地使用和与垃圾填埋场维护相关的成本等固体管理问题。因此,在所讨论的电厂上安装半干烟气脱硫废物处理装置就足够了。结论可以推广到具有相似设计和经济参数的工厂。 (C)2017 Elsevier Ltd.保留所有权利。

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