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Chemical fixation of CO_2 in carbonates: Routes to valuable products and long-term storage

机译:化学固定碳酸盐中的CO_2:通往有价值产品和长期储存的途径

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Carbon dioxide emissions to the atmosphere can be reduced by chemical fixation in organic or inorganic carbonates. Many compounds can be commercially produced on an industrial scale using CO_2, allowing for turning a (nowadays problematic) waste gas into economic profit. Besides this, the carbonation of magnesium silicates and calcium silicates is an option for long-term storage of CO_2 at a capacity that exceeds that of other options for CO_2 storage by several orders of magnitude, with the inherent benefit that post-storage monitoring of the stored CO_2 is not necessary. The first part of this paper gives an overview of commercial carbonate chemical production routes that do (or in a near future can) make use of the CO_2 that is produced at a large scale from human activities. The second part addresses the process technology, market potential and other aspects of mineral carbonation for long-term CO_2 storage as an alternative for, for example, storage in underground aquifers.
机译:可以通过化学固定在有机或无机碳酸盐中来减少排放到大气中的二氧化碳。许多化合物可以使用CO_2以工业规模进行商业生产,从而可以将(当今有问题的)废气转化为经济利益。除此之外,硅酸镁和硅酸钙的碳化是长期储存CO_2的一种选择,其容量比其他CO_2储存的选项要高几个数量级,其固有的好处是可以对储存的二氧化碳进行监测。不需要存储CO_2。本文的第一部分概述了商业碳酸盐化学品的生产路线,这些路线确实(或在不久的将来可以)利用人类活动产生的大量CO_2。第二部分介绍了用于长期CO_2储存的矿物碳酸化的工艺技术,市场潜力和其他方面,例如,作为地下含水层中储存的替代方法。

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