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  1. 1 lut 2022 · Carbon dioxide nanobubbles can increase effective gas-transfer to solution and enhance buffering capacity given the stable suspension in water of CO 2 gas within nanobubbles and the existence of larger gas/water interface.

  2. 7 paź 2021 · Carbon dioxide is influential in regulating the pH in water; the amount of CO 2 in a solution is one way to determine the pH. The more CO 2 in water, the lower the pH. When pH levels drop due to increased levels of CO 2, it creates unstable aquatic environments, produces acid rain, and drives ocean acidification.

  3. 13 wrz 2019 · Water bodies with moderate to high alkalinity are well-buffered against wide daily swings in pH resulting from net removal of carbon dioxide by photosynthesis during daytime and return of carbon dioxide to the water by respiratory process at night when there is no photosynthesis.

  4. 9 cze 2020 · Alkalinity, the excess of proton acceptors over donors, plays a major role in ocean chemistry, in buffering and in calcium carbonate precipitation and dissolution. Understanding alkalinity dynamics is pivotal to quantify ocean carbon dioxide uptake during times of global change.

  5. 1 lut 2019 · The technology bubbles heated un-pressurised carbon dioxide or exhaust gases through wastewater in a bubble column, effectively destroying both bacteria and viruses.

  6. 5 lut 2013 · The study of the carbon dioxide system, the other buffers in seawater, and the so-called alkalinity of seawater has historically been a major focus of research by chemical oceanographers. The importance of this system is evident in the following considerations:

  7. 9 gru 2019 · The ocean’s chemistry is changing due to the uptake of anthropogenic carbon dioxide (CO2). This phenomenon, commonly referred to as “Ocean Acidification”, is endangering coral reefs and the...

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