Hacking the Planet
As the climate crisis intensifies, scientists are seriously considering geoengineering—deliberate, large-scale interventions in the Earth's natural systems to counteract global warming. One proposed method is solar radiation management, which involves injecting reflective aerosols into the stratosphere to block sunlight. Proponents argue this could rapidly cool the planet and buy time to transition away from fossil fuels. ( 1 ), critics warn of potential catastrophic side effects, such as disrupting global rainfall patterns, which could trigger droughts and famine in vulnerable regions.
Another approach is carbon dioxide removal, which aims to suck existing CO2 out of the atmosphere. Technologies range from massive air-filtering machines to fertilizing oceans to encourage algal blooms. While theoretically sound, scaling these technologies up to a meaningful level would be astronomically expensive and energy-intensive. ( 2 ), there is the fear of 'moral hazard'—that relying on technological fixes might reduce the political will to cut emissions at their source.
Given these immense risks and uncertainties, the governance of geoengineering is a critical issue. Who decides when and how to deploy these technologies? ( 3 ), international frameworks are urgently needed to ensure any deployment is transparent, equitable, and based on sound science, rather than unilateral action by a single nation or billionaire.
Q1空欄 (1) に入る語として最も適切なものを選択せよ
Q2空欄 (2) に入る語として最も適切なものを選択せよ
Q3空欄 (3) に入る語として最も適切なものを選択せよ
Hacking the Planet
As the climate crisis intensifies, scientists are seriously considering geoengineering—deliberate, large-scale interventions in the Earth's natural systems to counteract global warming. One proposed method is solar radiation management, which involves injecting reflective aerosols into the stratosphere to block sunlight. Proponents argue this could rapidly cool the planet and buy time to transition away from fossil fuels. ( 1 ), critics warn of potential catastrophic side effects, such as disrupting global rainfall patterns, which could trigger droughts and famine in vulnerable regions.
Another approach is carbon dioxide removal, which aims to suck existing CO2 out of the atmosphere. Technologies range from massive air-filtering machines to fertilizing oceans to encourage algal blooms. While theoretically sound, scaling these technologies up to a meaningful level would be astronomically expensive and energy-intensive. ( 2 ), there is the fear of 'moral hazard'—that relying on technological fixes might reduce the political will to cut emissions at their source.
Given these immense risks and uncertainties, the governance of geoengineering is a critical issue. Who decides when and how to deploy these technologies? ( 3 ), international frameworks are urgently needed to ensure any deployment is transparent, equitable, and based on sound science, rather than unilateral action by a single nation or billionaire.
Q1空欄 (1) に入る語として最も適切なものを選択せよ
Q2空欄 (2) に入る語として最も適切なものを選択せよ
Q3空欄 (3) に入る語として最も適切なものを選択せよ