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EMISSION CONTROL OF SO_2 BY DRY COAL-CLEANING AND BIO-BRIQUETTE TECHNOLOGY

机译:干煤净化和生物压块技术控制SO_2的排放

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In China, the large amount of sulfur dioxide and dust discharged from the combustion of low-grade raw coal causes severe air pollution and acid rain. Therefore, the need to control the emission of such pollutants is urgent. It is well known that wet coal-cleaning technology is used to prepare clean coal from low-grade raw coal containing large amounts of sulfur and ash. However, this technology is not used in areas where water is scarce or severely polluted, because of the high cost of treating the wastewater. In an attempt to overcome this limitation, we studied an integrated technology, which combines dry coal-cleaning and bio-briquetting technologies, to prepare clean coal from low-grade raw coal. In the dry coal-cleaning method, refined coal was separated from ash and other minerals containing inorganic sulfur as pyrite by means of the differences in their electrostatic character. Most of the sulfur left in the refined coal was organic sulfur. The residual ash was fixed in combustion ashes of bio-briquettes made from coal, biomass, and slaked lime (Ca/S mole ratio =2) under pressure. By combining these two technologies, we were able to decrease the emission of sulfur dioxide and ash by 70~90 % compared to the combustion of raw coal.
机译:在中国,低级原煤燃烧过程中排放的大量二氧化硫和粉尘导致严重的空气污染和酸雨。因此,迫切需要控制此类污染物的排放。众所周知,湿煤清洁技术用于从含有大量硫和灰分的低级原煤中制备清洁煤。但是,由于处理废水的成本高昂,因此该技术不适用于缺水或严重污染的地区。为了克服这一限制,我们研究了一种综合技术,该技术结合了干煤清洁和生物制浆技术,可以从低品位原煤中制备清洁煤。在干煤清洁方法中,精炼煤通过其静电特性的差异与煤灰和其他含无机硫的黄铁矿矿物分离。精炼煤中残留的大部分硫是有机硫。残留的灰分在压力下固定在由煤,生物质和熟石灰(Ca / S摩尔比= 2)制成的生物石块的燃烧灰烬中。通过结合这两种技术,与燃烧原煤相比,我们可以将二氧化硫和灰分的排放量减少70〜90%。

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