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Are bacteria capable of precipitating magnesite?

机译:细菌能够沉淀菱镁矿吗?

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Laboratory experiments were conducted to investigate the possible (bio-) chemical pathways involved in the low-temperature nucleation of magnesite, MgCO _3. Two compounds known for their power to prevent hydrolysis (amorphous silica and magnesium trisilicate) were tested in contact with a slowly desiccating solution of magnesium bicarbonate. Amorphous silica gave rise to precipitates of nesquehonite instead of the more usual magnesium hydroxide carbonate, thereby illustrating its influence on hydrolysis. Magnesium tri-silicate led to Xray amorphous precipitates. The presence of reducing compounds, in particular the strongly reducing hydrogen gas, does not lead to the low-temperature nucleation of magnesite.
机译:进行了实验室实验,以研究菱镁矿MgCO _3低温成核过程中可能的(生物)化学途径。在缓慢干燥的碳酸氢镁溶液中测试了两种已知具有防止水解作用的化合物(无定形二氧化硅和三硅酸镁)。无定形二氧化硅产生了水松石的沉淀,而不是更常见的氢氧化镁碳酸酯,从而说明了其对水解的影响。三硅酸镁导致X射线无定形沉淀物。还原性化合物,特别是强还原性氢气的存在不会导致菱镁矿的低温成核。

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