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首页> 外文期刊>The Science of the Total Environment >Emissions from in-use residential wood pellet boilers and potential emissions savings using thermal storage
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Emissions from in-use residential wood pellet boilers and potential emissions savings using thermal storage

机译:使用热储存的使用中的居住木颗粒锅炉和潜在排放量的排放

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Effective biomass energy utilization for residential space heating relies on having combustion systems with both high efficiency and low emissions. European technology in wood pellet boilers was introduced into the United States over the past decade. However, these systems need to be designed and operated to minimize the emissions of air pollutants, particularly airborne particulate matter. One approach to minimize emissions is to improve system efficiency and limit the number of boiler cydes that include start-up and shut down periods where emission rates are higher by utilizing thermal storage as part of the boiler system. In this study, emissions from two 25 kW European-designed, but US. manufactured wood pellet boilers (PB and WPB) with thermal energy storage (TES) were measured in actual home operation using the EPA CTM-039 stack sampling method. These measurements allowed the estimation of the emissions reductions due to the presence of TES. PB had much higher emissions than WPB because PB had frequent local oxygen deficit-induced non-uniform combustion, which highlights the significance of periodic onsite oxygen tuning after the boiler installation. Particulate emissions were dominated by PM2.5 and the particles mainly consisted of low melting point, alkali compounds such as K2SO4, KCl, Na2SO4, CaCl2, etc. Both PM2.5, and polycyclic aromatic hydrocarbons (PAHs) emissions increased linearly with CO because they are products of incomplete combustion. Optimum boiler operating conditions were found with 12% flue gas oxygen content for both systems to achieve minimum CO emissions, which is 2% higher than the manufacturer's set-point of 10%. The potential emissions reductions by using a system with TES instead of a non-TES system were estimated under three scenarios. The results showed both significant gaseous and particulate matter emissions reductions that demonstrate that modern, high-efficiency wood pellet boilers with TES systems can produce heat with lower total emissions compared to non-TES systems. (C) 2019 Elsevier B.V. All tights reserved.
机译:有效的居住空间加热能量利用依赖于具有高效率和低排放的燃烧系统。在过去十年中,木颗粒锅炉的欧洲技术在美国引入了美国。然而,这些系统需要设计和操作以最小化空气污染物的排放,特别是空气颗粒物质。最小化排放的一种方法是提高系统效率,并限制包括通过利用作为锅炉系统的一部分的热存储而更高的启动和关闭时段的锅炉树木的数量。在这项研究中,来自欧洲25千瓦的排放,但我们。使用EPA CTM-039堆叠采样方法在实际的家用操作中测量具有热能储存(TES)的制造木颗粒锅炉(PB和WPB)。这些测量允许估计由于特斯的存在而减少排放。 PB的排放量高于WPB,因为PB频繁出现局部氧气缺陷诱导的不均匀燃烧,这突出了锅炉安装后周期性现场氧气调谐的重要性。颗粒物质排放由PM2.5支配,颗粒主要由低熔点,碱化合物如K2SO4,KCl,Na 2 SO 4,CaCl 2等组成.2.5和多环芳烃(PAHS)排放与CO线性增加,因为它们是不完全燃烧的产品。对于两种系统的12%烟气氧含量,发现最佳锅炉操作条件,以实现最小的CO排放,比制造商的设定点高2%。在三种情况下估计使用具有TES而不是非TES系统的系统的潜在排放减少。结果表明,与非TES系统相比,具有显着的气态和微粒物质排放减少,证明具有TES系统的现代高效木质颗粒锅炉可以产生较低的总排放量。 (c)2019年Elsevier B.V.保留所有紧身裤。

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