James Space Web Telescope (JSWT)

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Every creature directly or indirectly depends on the green plants for food. To fulfill the requirements of food of every critter, the process of photosynthesis plays a vital part. The scientists have come to know the whole process of photosynthesis response. By the study of natural photosynthesis they've been working on artificial photosynthesis. This technology will have the double benefits of reducing carbon dioxide situations while also producing renewable energy. Scientists have proven that the technology is doable, but problems still lie in scaling up. However, their problems related to food and energy will be removed shortly, If their plan succeeds.
When a photosynthesis response takes place in the splint for green shops, the water is converted into oxygen. The capability to produce clean energy without generating any dangerous by- products, like greenhouse feasts, makes artificial photosynthesis an ideal energy source for the terrain. The conversion of oxygen and hydrogen from water may be a great content of exploration. Liquid hydrogen can be used as gasoline is used. This idea attracts the experimenters for working on Artificial photosynthesis.
A new method of using an artificial photosynthesis system to make methane would be up to ten times more efficient than natural photosynthesis. Which will require a lot of both money and labor to operate properly. This new system of artificial photosynthesis may bring humans one step closer to employing it in sufficient quantities to make the human being powerful. This artificial photosynthesis process could provide a stopgap for carbon dioxide free transportation to our next generation.
Money and labor are demanded to start any artificial process. If money and labor are used in the process of photosynthesis, then it can also be used on an industrial level. This also applies to the process of Artificial photosynthesis . Artificial photosynthesis in plants can be more efficient than natural photosynthesis because it can solve many energy related problems in the coming times. And if it becomes easy to produce biofuel from plants and algae, then in the coming time it can be used externally in vehicles i.e. engines.
To meet the deficit of food particulars, the use of artificial photosynthesis can be developed. Since this response can be carried out without sun, the products produced can also be made in the dark. Everyday green vegetables like cowpea, peppers, tomatoes, eggplant, tobacco, rice, canola and green peas can all be grown fluently at home in the dark using acetate.
Artificial photosynthesis as a chemical process mimics natural photosynthesis to reduce anthropogenic carbon dioxide, increase energy security, and give a sustainable global frugality. Artificial photosynthesis is a promising approach to reducing GHGs that uses carbon dioxide emitted from manufactures and power plants as a raw material for chemical products, using clean hydrogen produced from water using solar energy.
There can be problems with starting the process of artificial photosynthesis as well. The chemicals used for artificial photosynthesis are often insufficiently degradable in water, so they are less stable than photovoltaics in the long run. The hydrogen catalysts used in this process are actually sensitive to oxygen and are deactivated or degraded in its presence. In addition, photodamage can occur over time. The money and labor is not yet profitable enough to compete with fossil energy to make the energy commercial.