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The calcium looping cycle for large-scale CO_2 capture

机译:钙循环回路,用于大规模CO_2捕集

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The reversible reaction between CaO and CO_2 is an extremely promising method of removing CO_2 from the exhaust of a power station, generating a pure stream of CO_2 ready for geological sequestration. The technology has attracted a great deal of attention recently, owing to a number of its advantages: the relatively small efficiency penalty which it imposes upon a power station (estimated at 6-8 percentage points, including compression of the CO_2); its potential use in large-scale circulating fluidised beds (a mature technology, as opposed to the vastly upscaled solvent scrubbing towers which would be required for amine scrubbing); its excellent opportunity for integration with cement manufacture (potentially decarbonising both industries) and its extremely cheap sorbent (crushed limestone).rnUnfortunately, sorbent (CaO) derived from natural limestone markedly decreases in its reactivity over a number of cycles of reaction with CO_2. Much current and promising research involves the investigation of a number of different methods to either reduce the rate of decay in reactivity, to boost the long-term reactivity of the sorbent or to reactivate the sorbent. Technologies investigated include thermal pretreatment or chemical doping of natural sorbents and the production of artificial sorbents. Attrition of the limestone can be a problem during repeated cycling in, e.g. a circulating fluidised bed, and some of the strategies to enhance the long-term capacity of the limestone to take up CO_2 can increase attrition. Strategies to counteract attrition, such as pelletisation of highly reactive materials, have succeeded in reducing, though not eliminating, this problem. Each of these topics is reviewed in detail here, as are potential competing reactions with sulphurous compounds and the large-scale integration of the calcium looping cycle with both a power station and a cement works, including a number of assessments of the economics of the cycle.rnA number of pilot plants demonstrating the technology have been constructed around the world. No major problems have been encountered thus far, and so calcium looping technology is currently moving to the demonstration scale in a number of locations.
机译:CaO和CO_2之间的可逆反应是从发电厂的尾气中去除CO_2的极有希望的方法,可生成纯净的CO_2物流以用于地质隔离。由于其许多优点,该技术最近引起了广泛的关注:它对发电厂施加的效率损失相对较小(估计为6-8个百分点,包括压缩CO_2);其在大型循环流化床中的潜在用途(一项成熟的技术,与胺洗涤所需的规模较大的溶剂洗涤塔相反);它与水泥生产(可能使两个行业脱碳)整合的绝佳机会,以及极其便宜的吸附剂(压碎的石灰石)。不幸的是,在与CO_2反应的多个循环中,天然石灰石衍生的吸附剂(CaO)的反应性明显降低。许多当前和有希望的研究涉及对许多不同方法的研究,以降低反应性的衰减速率,提高吸附剂的长期反应性或重新活化吸附剂。研究的技术包括天然吸附剂的热预处理或化学掺杂以及人工吸附剂的生产。石灰石的磨耗在例如循环流化床,提高石灰石吸收CO_2长期能力的一些策略可能会增加损耗。对抗磨损的策略,例如高反应性材料的造粒,已经成功地减少了(但没有消除)这个问题。这些主题中的每一个都在这里进行了详细审查,潜在的竞争性反应包括与含硫化合物的竞争以及钙循环回路与发电厂和水泥厂的大规模整合,包括对循环经济性的许多评估.rn在世界各地已建造了许多示范技术的示范工厂。到目前为止,还没有遇到重大问题,因此钙套环技术目前正在许多地方推广到示范规模。

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