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Storing Carbon for Geologically Long Timescales to Engineer Climate

机译:长期存储碳到工程师的气候

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摘要

To re-establish global climate balance, it is necessary to remove large amounts of fossil carbon emitted by humans, which is currently located in the atmosphere and the upper ocean. Although great attention is given to technologies of capture, the ability to store immense tonnages of carbon stock for geologically long time periods, isolated from atmosphere and ocean interaction, is equally important. In this chapter, the multiple storage locations for carbon stocking on and below land, also within and below the ocean, are evaluated. The evaluation shows that carbon dioxide reduction (CDR) is useful for mitigation, but cannot balance the rate of new emissions from fossil fuel exploitation. Many CDR methods have large uncertainty in their quantity, life-cycle, global impact and engineered feasibility. Competition for biomass and land usage is inevitable. Pathways and reservoirs of carbon in the ocean are complex and interlocked. Engineered storage of carbon will also be expensive, resource intensive and cannot substitute for a greatly reduced usage of fossil carbon. Human industrial and economic activity must "move beyond hydrocarbons" to be sustainable beyond 2050.
机译:为了重新建立全球气候平衡,有必要清除人类排放的大量化石碳,这些化石碳目前位于大气层和上层海洋中。尽管人们对捕集技术给予了极大的关注,但与大气和海洋相互作用隔离开来的,能够在地质上长时间存储大量碳库的能力同样重要。在本章中,评估了陆地上和陆地以下以及海洋内部和之下的碳储存的多个存储位置。该评估表明,减少二氧化碳排放量(CDR)有助于缓解排放,但不能平衡化石燃料开采带来的新排放量。许多CDR方法在数量,生命周期,全球影响和工程可行性方面都存在很大的不确定性。生物量和土地利用的竞争是不可避免的。海洋中的碳的途径和储集层是复杂且相互联系的。工程化的碳存储也将是昂贵的,资源密集的,并且不能替代大大减少的化石碳的使用。人类的工业和经济活动必须“超越碳氢化合物”,才能在2050年以后实现可持续发展。

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