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Surface roughness affects early stages of silica scale formation more strongly than chemical and structural properties of the substrate

机译:表面粗糙度影响二氧化硅垢形成的早期阶段,比基材的化学和结构性能更强烈地强烈

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Precipitation of amorphous silica (SiO2) in geothermal power plants has been shown to occur via homogeneous nucleation in the separated water as well as heterogeneous nucleation on pre-existing surfaces. While the factors facilitating homogeneous nucleation are well known, the effect of surface properties on the heterogeneous pathway are less well understood. We investigated the precipitation of amorphous silica onto different surfaces by placing coupons of opal (= mirroring previously deposited silica), volcanic glass (= common reservoir rocks) and corrosion-resistant carbon steel (= geothermal pipelines) inside the pipelines of the Hellisheioi power plant (SW-Iceland) where they were in contact with a silica-supersaturated geothermal liquid (800 ppm SiO2, 60-120 degrees C) for up to 10 weeks. Our results showed that the similarities in chemical composition and structure of opal and volcanic glass to the amorphous silica were less important in facilitating nucleation than the rough surface of the carbon steel. However, once the nuclei had formed, their growth was independent of the surface material and only controlled by deployment length, temperature and the concentration of monomeric silica in the separated water. Thus, over time a continuous, botryoidal silica layer formed on all coupons. This suggests that surface properties are not crucial in developing better mitigation strategies against amorphous silica scaling.
机译:已经证明了地热发电厂中的无定形二氧化硅(SiO2)的沉淀,通过在分离的水中的均匀成核以及在预先存在的表面上的异质成核来发生。虽然众所周知,虽然促进均匀成核的因素是众所周知的,但是表面性质对异质途径的影响较小。我们通过将蛋白石(=镜像先前沉积的二氧化硅),火山玻璃(=常见的储层岩石)和耐腐蚀碳钢(=地热管道)放置在地狱里的电厂的管道内,研究了非晶二氧化硅的沉淀到不同的表面上(SW-冰岛)在其中与二氧化硅 - 超饱和地热液体(800ppm SiO2,60-120c)接触,最多10周。我们的研究结果表明,非晶二氧化硅的化学成分和蛋白石和火山玻璃结构的相似性在促进含量比碳钢的粗糙表面方面不太重要。然而,一旦形成细胞核,它们的生长就与表面材料无关,并且仅通过分离的水中的展开长度,温度和单体二氧化硅的浓度控制。因此,随着时间的推移,在所有优惠券上形成连续的肉白硅层。这表明表面特性对于开发针对无定形二氧化硅缩放的更好的缓解策略而言并不至关重要。

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