首页> 外文会议>19th annual North American waste to energy conference >NOVEL GAS CLEANING WITH INTEGRATED ENERGY RECOVERY
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NOVEL GAS CLEANING WITH INTEGRATED ENERGY RECOVERY

机译:集成能源回收的新型天然气清洁

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High-energy recovery combined with low emissions to air and water was targeted when Jonkoping Energi planned their new Waste to Energy plant at Torsvik in Sweden. The plant is compliant with the new EU Industry Directive and the Waste Frame Directive R-formula, which defines energy recovery levels for recycle of energy. In total about 160 000 tons of municipal (40%) and commercial waste (60%) is annually converted into usable energy. The average heat value is 11,7 MJ/kg. The energy produced is a combination of electricity (14 MW_e) and heat (42 - 56 MWth, depending on electricity production). The heat is recovered both in a boiler and in a condenser. The flue gas condensing system is combined with a heat pump (10 MWth) to optimize the heat recovery rate. The plant is designed to fulfill the requirements set by the Swedish authorities, which are more stringent than the EU emission requirements. Some examples of the plant emissions to air guarantees: dust 5, HCl 5, SO_2 20, HF1, Hg 0,03, Cd+TI 0,05, other HM 0,5 all in mg/Nm~3 and dioxin 0,05 ng/Nm~3. The flue gas cleaning upstream of the condenser consists of a combination of a semi-dry system and a wet scrubber. The gas cleaning system operating range goes from 60 000 up to 127 000 Nm3/h depending on load and fuel heat value. The semi-dry system is carrying out the major part of the gas cleaning and is sufficient to comply withrnthe air regulations. However, in order to minimize the treatment of the condensate from the condenser the wet scrubber is installed after the semi-dry system and upstream the condenser. The blow down from the scrubber is reused within the plant. Thus the polishing scrubber secures minimal treatment of the condensate to comply with the local stringent limits, particular chlorides, before release to the recipient lake Munksjoen. Emissions to water were 2010 nitrogen 1,7 mg/l, Cl <3,6 mg/l, As 0,66 μg/l, Cd <0,07 μg/l, Cr <6 Mg/l, Cu 0,8 μg/l, Hg <0,4 μg/l, Ni <0,66 μg/l, Pb<1,2 Mg/l, TK1,3 μg/I, Zn<7,2 μg/l and PCDD/PCDF 0,0088 ng/l.rnIn the wet scrubber acid stage residual HCI and excess ammonia from the SNCR system are removed. The latter compound is important to capture in order to prevent eutrophication. The combination of a semidry and a wet system enables an optimization of the flue gas cleaning with regard to the different operating situations, taking into account seasonal demand variations as well as fuel alterations. The concept has demonstrated very low emissions combined with low consumption of lime. The possibility to optimize the flue gas cleaning performance is a prerequisite for minimal condensate treatment and optimal energy recovery. The paper will describe the system and the operating experiences.
机译:当Jonkoping Energi计划在瑞典Torsvik的新废物转化能源工厂计划时,目标是高能量回收并减少空气和水的排放。该工厂符合新的欧盟工业指令和废物框架指令R公式,该公式定义了能量回收的能量回收水平。每年总共约有16万吨市政废物(40%)和商业废物(60%)转化为可用能源。平均发热量为11,7 MJ / kg。产生的能量是电力(14 MW_e)和热量(42-56 MWth,取决于电力生产)的组合。在锅炉和冷凝器中回收热量。烟气冷凝系统与热泵(10 MWth)结合使用以优化热回收率。该工厂旨在满足瑞典当局设定的要求,该要求比欧盟的排放要求更为严格。工厂向空气中排放物的保证示例:粉尘5,HCl 5,SO_2 20,HF1,Hg 0.03,Cd + TI 0.05,其他HM 0.5均以mg / Nm〜3和二恶英0.05 ng / Nm〜3。冷凝器上游的烟道气净化系统由半干式系统和湿式洗涤器组成。气体净化系统的运行范围从60000升至127 000 Nm3 / h,具体取决于负载和燃料热值。半干式系统是气体清洁的主要部分,足以满足空气法规的要求。但是,为了使冷凝器冷凝水的处理减至最少,在半干式系统之后和冷凝器上游安装了湿式洗涤器。洗涤塔排出的污水可在工厂内重复使用。因此,抛光洗涤器在将冷凝液释放到接收者的Munksjoen湖之前,确保对冷凝液的处理最少,以符合当地的严格限值,特别是氯化物。到水的排放量为2010年氮1.7 mg / l,Cl <3.6 mg / l,As 0.66μg/ l,Cd <0.07μg/ l,Cr <6 Mg / l,Cu 0.8 μg/ l,Hg <0.4μg/ l,Ni <0.66μg/ l,Pb <1,2 Mg / l,TK1.3μg/ I,Zn <7.2μg/ l和PCDD / PCDF 0,0088 ng / l.rn在湿式洗涤器酸阶段,从SNCR系统中除去残留的HCl和过量的氨。为了防止富营养化,后一种化合物的捕获很重要。半干式和湿式系统的结合,可以考虑到季节性需求变化和燃料变化,针对不同的运行状况优化烟道气清洁。该概念已证明排放量极低,同时石灰消耗量也很低。优化烟气净化性能的可能性是最小化冷凝水处理和最佳能量回收的先决条件。本文将描述系统和操作经验。

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