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SUB-BITUMINOUS COALS FIRED IN BOILER DESIGNED FOR BITUMINOUS COALS

机译:在为沥青煤设计的锅炉中发射的次烟煤

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In the last two decades there has been little capacity added to coal-based power plants. However, much of the existing plants had to comply with the Clean Air Act amendments. Using sub-bituminous coals has become an important solution for emissions compliance due to their unique constituents and combustion characteristics; these coals are often referred to as enviro coals. The considerable advantages of these coals, like Melawan, Adaro or PRB coals, is their low sulfur compared to typical bituminous coals, which makes its burning more economic as scrubbers or other SO_2 reduction technologies are not required. Low nitrogen and ash content as well as their high volatile matter are other advantages of these coals. Hence, firing sub-bituminous coals alone or as blends with bituminous coals is deemed economically attractive. Power generation plants were originally designed to operate on a particular bituminous coal. In order to fire sub-bituminous coals or their blends some modifications are required in the firing modes. These modifications may affect boiler reliability and as result to reduction of the power plant availability and hence increasing operation and maintenance cost. In order to prevent such undesirable effects we initiated a study to understand the influence of using sub-bituminous coals on the capacity, limitations of furnace size, heat transfer surfaces, firing systems, pulverizers, fans and airheaters. The present paper discusses issues connected with each of these issues on the combustion system. We also present recommendations for reliable burning of various sub-bituminous coals and their blends in a 575 MW tangentially-fired boiler. For example, we found that firing Indonesian sub-bituminous coals (Adaro and Melawan) considerably reduced NO_x (30% reduction) and SO_x (reduced to 200 mg/dNm~3@6%O_2) emissions without post combustion measures. We also tested various blends of sub-bituminous coals with bituminous coals and found positive and negative synergism in these blends with regard to NO_x emissions. We used in the present study a series of experiments in a test facility and computational fluid dynamic codes.
机译:在过去的二十年中,煤炭电厂已经增加了很少的容量。然而,大部分现有的工厂必须遵守清洁空气法案修正案。由于其独特的成分和燃烧特性,使用亚沥青煤已成为排放符合性的重要解决方案;这些煤通常被称为enviro煤。与Melawan,Adaro或PRB煤一样,这些煤的相当大的优点是它们的低硫与典型的沥青煤相比,这使得其燃烧更加经济的洗涤器或其他SO_2减少技术是不需要的。低氮和灰分含量以及它们的高挥发性物质是这些煤的其他优点。因此,单独烧制亚沥青煤或用沥青煤的混合物被认为是经济上吸引力的。发电厂最初设计用于在特定烟煤上操作。为了消灭亚烟煤或它们的混合物,在烧制模式下需要一些修改。这些修改可能会影响锅炉可靠性,结果可以减少电厂可用性,从而提高运行和维护成本。为了防止这种不良影响,我们开始研究使用亚沥青煤对容量,熔炉尺寸,传热表面,烧制系统,粉碎机,风扇和气体均方的影响的研究。本文讨论了与燃烧系统中的每个问题相关的问题。我们还提出了在575 MW切向锅炉中可靠地燃烧各种亚烟煤的可靠燃烧。例如,我们发现烧制印度尼西亚亚烟煤(Adaro和Melawan)显着降低了NO_X(减少30%)和SO_X(减少到200mg / DNM〜3 @ 6%O_2)排放,无燃烧措施。我们还通过沥青煤测试了各种亚烟煤煤,并在这些混合物中发现了NO_X排放中的正负协同作用。我们在本研究中使用了一系列实验,在测试设施和计算流体动态码中。

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