首页> 外文期刊>Atmospheric environment >Measurements of GEM fluxes and atmospheric mercury concentrations (GEM, RGM and Hg~p) from an agricultural field amended with biosolids in Southern Ont., Canada (October 2004-November 2004)
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Measurements of GEM fluxes and atmospheric mercury concentrations (GEM, RGM and Hg~p) from an agricultural field amended with biosolids in Southern Ont., Canada (October 2004-November 2004)

机译:在加拿大安大略省南部(从2004年10月至2004年11月),用生物固体对农田进行的GEM通量和大气汞浓度(GEM,RGM和Hg〜p)的测量

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Five weeks of gaseous elemental mercury (GEM), reactive gaseous mercury (RGM) and particle bound mercury (Hg~p) concentrations as well as fluxes of GEM were measured at Maryhill, Ontario, Canada above a biosolids amended field. The study occurred during the autumn of 2004 (October-November) to capture the effects of cool weather conditions on the behaviour of mercury in the atmosphere. The initial concentration of total mercury (Hg) in the amended soil was relatively low (0.4 μgg~(-1) ± 10%). A micrometeorological approach was used to infer the flux of GEM using a continuous two-level sampling system with inlets at 0.40 and 1.25 m above the soil surface to measure the GEM concentration gradient. The required turbulent transfer coefficients were derived from meteorological parameters measured on site. The average GEM flux over the study was 0.1 ±0.2ng m~(-2)h~(-1)( ± one standard deviation). The highest averaged hourly GEM fluxes occurred when the averaged net radiation was highest, although the slight diurnal patterns observed were not statistically significant for the complete flux data series. GEM emission fluxes responded to various local events including the passage of a cold front when the flux increased to 2 ng m~(-2)h~(-1) and during a biosolids application event at an adjacent field when depositional fluxes peaked at -3ng m~(-2)h~(-1). Three substantial rain events during the study kept the surface soil moisture near field capacity and only slightly increased the GEM flux. Average concentrations of RGM (2.3±3.0 pgm~(-3)), Hg~p (3.0±6.2pg m~(-3)) and GEM (1.8±0.2 ng m~(-3)) remained relatively constant throughout the study except when specific local events resulted in elevated concentrations. The application of biosolids to an adjacent field produced large increases in Hg~p (25.8 pgm~(-3)) and RGM (21.7pgm~(-3)) concentrations only when the wind aligned to impact the experimental equipment. Harvest events (corn) in adjacent fields also corresponded to higher concentrations of GEM and Hg~p but with no elevated peaks in RGM concentrations. Diurnal patterns were not statistically significant for RGM and Hg~p at Maryhill.
机译:在加拿大安大略省玛丽希尔市的生物固体修正场上方,测量了五周的气态元素汞(GEM),反应性气态汞(RGM)和颗粒结合汞(Hg〜p)浓度以及GEM通量。该研究于2004年秋季(10月至11月)进行,目的是捕捉凉爽的天气条件对大气中汞行为的影响。改良土壤中总汞(Hg)的初始浓度相对较低(0.4μgg〜(-1)±10%)。使用连续两级采样系统通过微气象方法来推断GEM的通量,该系统的入口位于土壤表面以上0.40和1.25 m,以测量GEM浓度梯度。所需的湍流传递系数来自现场测得的气象参数。研究中的平均GEM通量为0.1±0.2ng m〜(-2)h〜(-1)(±一个标准偏差)。当平均净辐射最高时,出现了最高的平均每小时GEM通量,尽管对于完整的通量数据系列而言,观察到的轻微日变化在统计上并不显着。 GEM排放通量对各种局部事件作出响应,包括当通量增加到2 ng m〜(-2)h〜(-1)时冷锋通过,以及当沉积通量在-达到峰值时在相邻领域的生物固体施用事件中。 3 ng m〜(-2)h〜(-1)。研究期间发生了三场大雨,使表层土壤水分保持在田间持水量附近,而GEM通量仅略有增加。 RGM(2.3±3.0 pgm〜(-3)),Hg〜p(3.0±6.2pg m〜(-3))和GEM(1.8±0.2 ng m〜(-3))的平均浓度在整个过程中保持相对恒定。除非特定的局部事件导致浓度升高,否则进行此项研究。仅当风向影响实验设备时,将生物固体应用于邻近区域才会使Hg〜p(25.8 pgm〜(-3))和RGM(21.7pgm〜(-3))浓度大幅增加。相邻田间的收获事件(玉米)也对应于较高的GEM和Hg〜p浓度,但RGM浓度没有升高的峰值。在Maryhill,RGM和Hg〜p的昼夜模式没有统计学意义。

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