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Lab-Scale Assessment of Gaseous Emissions from Laying-Hen Manure Storage as Affected by Physical and Environmental Factors

机译:受物理和环境因素影响的蛋鸡粪存储气体排放的实验室规模评估

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摘要

Manure-belt (MB) and high-rise (HR) laying-hen houses are the two predominant housing types in the U.S. Compared with HR houses, MB houses have better indoor air quality and lower aerial emissions as a result of frequent (every 1 to 4 d) manure removal from the hen houses into separate manure storage. However, emissions from on-farm manure storage are integral parts of the whole-farm emissions and need to be quantified. This series of lab-scale studies assesses emission rates (ER) of ammonia (NH3) and greenhouse gases (CH4, CO2, and N2O) from stored laying-hen manure as affected by the following physical and environmental factors: air exchange rate (10 or 20 air changes per hour, or ACH), manure stacking configuration expressed as surface area to stack volume ratio (SVR at 2.5, 5, 10, or 20 m-1), air temperature (constant at 25°C or diurnal cyclic from 21°C to 32°C), manure moisture content (MC, 50% or 77%), and periodic addition of new manure to the existing stack. Results of the studies showed the following: (1) air exchange rate of 10 or 20 ACH had no apparent effects on the gaseous emissions; (2) SVR significantly affected emissions, with larger SVR leading to higher NH3 and CO2 ERs but lower CH4 ER on per kg manure basis; (3) emissions were positively related to air temperature; and (4) laying-hen manure with 77% MC had higher emissions than that with 50% MC. At the storage condition of 25°C air temperature, 20 ACH, every 2 d addition of 120 kg (5 cm thick layer) manure at 75% MC (equivalent to 2 d manure production of 682 laying hens) to the flat base area of 2.8 m2, the daily gaseous ERs per hen were 0.06 to 0.22 g NH3, 1.6 to 4.8 g CO2, and 7.4 to 32 mg CH4 (0.18 to 0.8 g CO2e). N2O concentrations from the stored manure were below the detection limit (0.03 ppm) of the measurement instrument; hence, N2O emission was omitted from the presentation.
机译:在美国,粪便带(MB)和高层(HR)蛋鸡房屋是两种主要的房屋类型。与HR房屋相比,MB房屋由于经常性的使用而具有更好的室内空气质量和较低的空气排放(每1个到4 d)从鸡舍中清除粪肥,进入单独的粪肥存储区。但是,农场粪便存储产生的排放是整个农场排放的组成部分,需要进行量化。这一系列实验室规模的研究评估了存储的蛋鸡粪肥中氨(NH3)和温室气体(CH4,CO2和N2O)的排放速率(ER),这些排放受到以下物理和环境因素的影响:空气交换率(10或每小时换气20次,或ACH),以表面积与烟囱体积之比(SVR为2.5、5、10或20 m-1)表示的肥料堆放配置,气温(恒定在25°C或昼夜循环) 21°C至32°C),肥料含水量(MC,50%或77%),并定期向现有烟囱中添加新肥料。研究结果表明:(1)10或20 ACH的空气交换率对气体排放没有明显影响; (2)SVR显着影响排放,较大的SVR导致每千克粪便中的NH3和CO2 ER升高,但CH4 ER降低; (3)排放与气温呈正相关; (4)MC含量为77%的产蛋鸡粪肥排放量高于MC含量为50%的产蛋鸡粪。在25°C的空气温度,20 ACH的储存条件下,每2 d在7%MC下将120 kg(5 cm厚的层)粪肥添加到25℃的平坦基础区域中,相当于2 d产生682只产蛋鸡。每只母鸡每天的气体ER为2.8 m2,为0.06至0.22 g NH3、1.6至4.8 g CO2和7.4至32 mg CH4(0.18至0.8 g CO2e)。储存粪便中的N2O浓度低于测量仪器的检测极限(0.03 ppm);因此,本报告中省略了N2O排放。

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  • 作者

    Li Hong; Xin Hongwei;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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