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Gasification technology assessment of sterile coal to clean electrical power generation.

机译:无菌煤的气化技术评估,以清洁发电。

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摘要

Sterile coal is a low-value residue associated to the coal extraction and mining activity. According to the type and origin of the coal bed configuration, sterile coal production can mainly vary on quantity, calorific value and presence of sulphur compounds. In addition, the potential availability of sterile coal within Spain is apparently high and its contribution to the local power generation would be of interest playing a significant role. The proposed study evaluates the availability and deployment of gasification technologies to drive clean electricity generation from waste coal and sterile rock coal, incorporating greenhouse gas emission mitigation systems, like CO2, H2S and NOx removal systems. It establishes the target facility and its conceptual basic design proposal. The syngas obtained after the gasification of sterile coal is processed through specific conditioning units before entering into the combustion chamber of a gas turbine. Flue gas leaving the gas turbine is ducted to a heat recovery steam generation boiler; the steam produced within the boilerdrives a steam turbine. The target facility resembles a singular Integrated Gasification in Combined Cycle (IGCC) power station. The evaluation of the conceptual basic design according to the power output set for a maximum sterile contribution, established that rates over 95% H2S and 90% CO2 removal can be achieved. Noticeable decrease of NOx compounds can be also achieved by the use of commercial technology. A techno-economic approach of the conceptual basic design is made evaluating the integration of potential unitsand their implementation within the target facility aiming toachieve clean power generation. The criterion to be compliant with the most restrictive regulation regarding environmental emissions is setting to carry out this analysis.
机译:无菌煤是与煤炭开采和开采活动相关的低价值残留物。根据煤层构造的类型和来源,无菌煤的生产主要取决于数量,热值和含硫化合物的存在。此外,西班牙境内无菌煤的潜在可用性显然很高,其对当地发电的贡献将发挥重要作用。拟议的研究评估了利用气化技术来驱动废煤和无菌岩煤清洁发电的技术,并结合了诸如CO2,H2S和NOx去除系统等温室气体减排系统。它确定了目标设施及其概念上的基本设计建议。无菌煤气化后获得的合成气在进入燃气轮机的燃烧室之前,通过特定的调节装置进行处理。离开燃气轮机的烟道气被输送到一个热回收蒸汽发生锅炉。锅炉内产生的蒸汽驱动蒸汽轮机。目标设施类似于联合循环气化(IGCC)电站。根据最大无菌贡献的功率输出对概念性基本设计进行评估,确定可以实现超过95%的H2S和90%的CO2去除率。通过使用商业技术也可以实现NOx化合物的显着减少。提出了概念性基础设计的技术经济方法,以评估潜在单元的集成及其在目标设施内的实现,以实现清洁发电。符合有关环境排放的最严格法规的标准正在着手进行此分析。

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