Carbon Capturing Technology: A Step for Sustainable Future

Waseem Sajjad
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Abstract

Humans have liberated more than two thousand gigatons of carbon dioxide into atmosphere, since the Industrial revolt took place. (A gigaton is a billion metric tons.) There is a sturdy cover of air around our planet. This thick air-tight blanket captures the heat of the earth we find today. CO2 is the main greenhouse gas which controls the temperature of atmosphere. Since 1880, due to increasing carbon percentage in atmosphere Earth temperature is increased by 2° Fahrenheit. If we don’t change anything, the effects of climate change as forest fires, the stifling heat waves, and sea level rise will continue to become severe. Here's the big, important thing about CO2: this is a greenhouse gas. That means CO2 in the atmosphere works to trap heat near Earth. It helps the Earth to hold on to some of the energy it receives from the Sun so that all the energy that comes from it does not return to space. If it were not for the effects of global warming, the oceans would be extremely solid. Earth would not be as beautiful a planet blue and green as life. Therefore, CO2 and other greenhouse gases are good to a certain level. An increase in CO2 concentration can help plants to grow faster. But CO2 is so good at trapping heat from the Sun, that even a small increase in CO2 in the atmosphere could cause the Earth to warm up even more. Currently, we’re using some techniques as Bio-energy with Carbon Capture and Storage (BECCS), Direct Air Capture, Carbon Mineralization, and Ocean-based Concepts. But these are not very cost-effective. For instance, direct air capture costs about $94- $232 per metric ton. It’s not very productive, some researchers have found a way to convert CO2 into useful fuel. The purified carbon could also be used to make methanol, carbon nanofibers, or diesel fuel. But again, fuel formed this way is expensive than naturally available resources. It can cost around $94 and $232 per metric ton. Here is the possible solution to minimize this cost in our report. So, that we may get a sustainable environment for future generations at the least possible cost.
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碳捕获技术:迈向可持续未来的一步
自从工业革命发生以来,人类已经向大气中释放了超过两万亿吨的二氧化碳。(十亿吨是十亿公吨。)我们的星球周围有一层坚固的空气。这层厚厚的气密毯吸收了今天地球的热量。二氧化碳是控制大气温度的主要温室气体。自1880年以来,由于大气中碳含量的增加,地球温度上升了2华氏度。如果我们什么都不改变,气候变化的影响,如森林火灾、令人窒息的热浪和海平面上升,将继续变得严重。这是关于二氧化碳最重要的一点:它是一种温室气体。这意味着大气中的二氧化碳会在地球附近捕获热量。它帮助地球保存一些从太阳接收到的能量,这样所有来自太阳的能量就不会返回到太空。如果没有全球变暖的影响,海洋将是极其坚硬的。地球将不会是一个美丽的星球,蓝色和绿色的生命。因此,二氧化碳和其他温室气体在一定程度上是好的。二氧化碳浓度的增加可以帮助植物生长得更快。但是二氧化碳非常善于吸收太阳的热量,即使大气中二氧化碳的少量增加也会导致地球变暖得更多。目前,我们正在使用一些技术,如生物能源与碳捕获和储存(BECCS)、直接空气捕获、碳矿化和基于海洋的概念。但这些都不是很划算。例如,直接捕捉空气的成本约为每公吨94至232美元。虽然效率不高,但一些研究人员已经找到了一种将二氧化碳转化为有用燃料的方法。纯化后的碳还可以用来制造甲醇、碳纳米纤维或柴油燃料。但是,以这种方式形成的燃料比自然资源更昂贵。每公吨的成本在94美元到232美元之间。在我们的报告中,以下是最小化该成本的可能解决方案。因此,我们可以以最小的成本为子孙后代创造一个可持续发展的环境。
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