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Preliminary design and cost estimate of a large scale field trial for Earth albedo modification with sulfur dioxide

机译:二氧化硫修饰地球反照率的大规模田间试验的初步设计和成本估算

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The injection of stratospheric aerosols is an effective and feasible solution to addressing the current speed the global climate change has taken. The current international goal that this research has set as a target is to remain below two degrees Celsius above preindustrial temperatures. With the lack of political will in addressing global warming, an initiative must be made to stabilize the global temperatures and sea level. Sulfur dioxide has been considered as it has proven to reduce the global temperatures when released through volcanic eruptions such as in the case of Mount Pinatubo. The sulfur dioxide in the atmosphere will create a reflectivity of the sunlight and prevent a percentage of the warmth from affecting the Earth's surface temperatures, modifying the Earth's albedo. To give a recommended amount of sulfur dioxide, simulations of injections of varying amounts were run to see the effects on global average temperature and sea level. This determines the necessary negative radiative forcing needed by sulfur dioxide to not only gradually reduce the current trend of the rising temperatures but to stabilize it to meet the target. The model results in this research indicate that the only way to achieve long-term stabilization is to both inject sulfuric aerosols into the stratosphere and regulate carbon dioxide emissions on an international level. This paper will outline the specific proposed method and amount of injections as well as a recommended demonstration and evaluation method to allow for a better understanding of how this system will behave if ever implemented.
机译:平流层气雾剂的注入是解决全球气候变化所采取的当前速度的一种有效可行的解决方案。这项研究设定的当前国际目标是将温度保持在比工业化前的温度高2摄氏度以下。由于缺乏解决全球变暖的政治意愿,因此必须采取措施稳定全球温度和海平面。人们已经考虑过二氧化硫,因为它已被证明可以通过火山喷发而释放出来,从而降低全球温度,例如皮纳图博火山。大气中的二氧化硫将产生阳光的反射率,并阻止一定比例的温暖影响地球表面温度,从而改变地球的反照率。为了给出推荐量的二氧化硫,对不同数量的注入进行了模拟,以了解其对全球平均温度和海平面的影响。这确定了二氧化硫所需的必要的负辐射强迫,不仅要逐渐降低当前升高的温度趋势,而且要使其稳定以达到目标。这项研究的模型结果表明,要实现长期稳定,唯一的方法就是既要向平流层注入硫磺气溶胶,又要在国际水平上调节二氧化碳的排放。本文将概述具体提出的方法和注射量,以及推荐的演示和评估方法,以使您更好地了解该系统在实施后的运行方式。

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