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Development of a process for aqueous mineral carbonation on municipal solid waste incinerator bottom ash with recovery of useful chemicals

机译:开发在城市固体废物焚烧炉底灰水矿物碳酸化方法的开发,恢复有用的化学品

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We propose a cost-effective aqueous mineral carbonation process for municipal solid waste incinerator (MSWI) with using CO2 captured from MSWI flue gas. In this process, sodium bicarbonate (NaHCO3) and potassium chloride (KC1) are recovered. The former can be used as a neutralizing agent for acid gas treatment in the MSWI, which can contribute to reducing the operating cost of MSWI and also reducing the cost of the CO2 fixation to the bottom ash. First, the basis of a new mineral carbonation process was designed, and the system continuity was investigated by equilibrium simulations with data from salt crystallization tests. Then, the carbonation/extraction tests on bottom ash were performed, hi the result, the amount of CO2 fixed to ash is 0.12 tonnes CO2 per tonne of the ash, the dissolved rates of Na, K and CI were 48, 27 and 95 %, respectively. Though this process can sequester relatively small amount of CO2, which is 2,880 tonnes CO2 per year for the MSWI of the size of 230 thousand tonnes of waste per year, the cost of the process was calculated to be USS 58 (JPY 4,600) per tonne CO2 avoided, while the produced useful chemical, NaHCO3, might compensate the cost of the MSWI operations.
机译:我们为城市固体废物焚烧炉(MSWI)提出了一种经济高效的矿物碳酸化方法,使用MSWI烟气捕获的CO2。在该方法中,回收碳酸氢钠(NaHCO 3)和氯化钾(KC1)。前者可以用作MSWI中的酸性气体处理的中和剂,这有助于降低MSWI的运营成本,并降低了对底灰的CO2固定的成本。首先,设计了新的矿物碳化过程的基础,通过盐结晶试验的数据进行平衡模拟研究了系统连续性。然后,进行底灰的碳酸化/提取试验,优先,固定到灰分的CO 2的量为每吨灰分0.12吨CO 2,Na,K和Ci的溶解速率为48,27和95% , 分别。虽然这种过程可以螯合相对少量的二氧化碳,但每年的MSWI为每年2,880吨CO2,每年的浪费230万吨,计算成本是每吨58(日元4,600)二氧化碳避免,而生产的有用的化学品NaHCO3可能会补偿MSWI操作的成本。

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