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Developments in the Nanostructured Calcium Silicate Technology for Preventing Silica Deposition and Opening New Business Opportunities

机译:用于防止二氧化硅沉积和开放新商机的纳米结构钙硅酸钙技术的开发

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The precipitation of silica from separated geothermal brine supersaturated in dissolved silica, and the formation of silica sinter deposits in pipes, heat exchangers and reinjection wells, remains a major problem in geothermal resource utilisation worldwide. The sinter compromises the heat energy recoverable in binary cycle electricity generation and increases equipment and field maintenance. Current approaches used to address the problem are not wholly satisfactory. In most cases the sinter formation persists. We are turning this major problem into an attractive operational and business opportunity. We are developing a proprietary technology to precipitate the dissolved silica species as a nanostructured calcium silicate hydrate (CaSil) material. The particle morphology and surface chemistry are distinctly different from silica and desirably the CaSil particles do not deposit on metal surfaces, thus preventing silica deposition and sinter formation. The technology has the potential to enable lower steam/water separation temperatures and lower brine exit temperatures in binary plant heat exchangers to be used, thereby enabling more heat energy to be extracted and hence electricity generated from a geothermal resource. There is no further propensity for silica to deposit in process equipment or in reinjection wells. This provides the opportunity for increased revenue and reduced maintenance costs for a geothermal resource owner and operator, and similarly increased revenue for an electricity generating company utilizing the resource. In addition, the inherent high surface area, pore volume, absorbent/adsorbent properties and surface reactivity for different CaSil products, facilitate the development of multiple potential applications and hence new CaSil-based business opportunities. These include "green fertilizers", environmental remediation of polluted surface, mine and industrial water streams, and performance enhanced printing paper and building products.
机译:来自溶解二氧化硅的分离的地热盐水中二氧化硅的沉淀,以及在管道,热交换器和再注口中形成二氧化硅烧结沉积物,仍然是全球地热资源利用的主要问题。烧结损害了二元循环发电中可恢复的热能,并增加设备和现场维护。用于解决问题的当前方法并不完全令人满意。在大多数情况下,烧结形成仍然存在。我们正在将这个主要问题转化为有吸引力的运营和商业机会。我们正在开发专有技术,以沉淀溶解的二氧化硅物质作为纳米结构硅酸钙水合物(Casil)材料。颗粒形态和表面化学与二氧化硅明显不同,并且理想地,Casil颗粒不沉积在金属表面上,从而防止二氧化硅沉积和烧结形成。该技术具有较低的蒸汽/水分离温度和较低盐水出口温度的待使用,从而能够提取更多的热能并因此从地热资源产生的电力。对于硅胶没有进一步的倾向,以在工艺设备或再注入孔中沉积。这为地热资源所有者和运营商的收入增加和降低了维护成本,以及利用资源的电力发电公司的收入同样增加了机会。此外,对不同Casil产品的固有高表面积,孔体积,吸收剂/吸附性能和表面反应性,促进了多个潜在应用的发展,从而促进了基于新的Casil的商机。这些包括“绿色肥料”,污染表面,矿山和工业水流的环境修复,以及性能增强的印刷纸和建筑产品。

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