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首页> 外文期刊>Waste Management >Methane and carbon dioxide emission in a two-phase olive oil mill sludge windrow pile during composting
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Methane and carbon dioxide emission in a two-phase olive oil mill sludge windrow pile during composting

机译:堆肥过程中两相橄榄油厂污泥堆肥堆中甲烷和二氧化碳的排放

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摘要

The aim of this work was to make some preliminary evaluations on CO_2 and CH_4 emissions during composting of two-phase olive oil mill sludge (OOMS). OOMS, olive tree leaves (OTL) and shredded olive tree branches (OTB) were used as feedstock for Pile Ⅰ and Pile Ⅱ with a 1:1:1 and 1:1:2 v/v ratio, respectively. Each pile was originally 1.2 m high, 2.0 m wide and approximately 15.0 m long. Four 500 ml volume glass funnels were inverted and introduced in each pile, two in the core (buried 50-60 cm from the surface) and two near the surface under a thin 10-15 cm layer of the mixture. Thin (0.5 cm diameter) plastic, 80 cm long tubes were connected to the funnels. A mobile gas analyser (GA2000) was used to measure the composition (by volume) of O_2, CO_2 and CH_4 on a daily basis. The funnels were removed prior to each turning and reinserted afterwards. From each pair of funnels (core and surface) of both piles, one was kept closed between samplings. Two way ANOVA was used to test differences between piles and among the tubes. Post hoc Tukey tests were also used to further investigate these differences. There was a significant difference (at p < 0.001) in the two piles for all three gases. The average concentrations of O_2, CO_2 and CH_4 in Pile Ⅰ, from all four funnels was 16.86%, 3.89% and 0.25%, respectively, where for Pile Ⅱ the average values were 18.07%, 2.38% and 0.04%, respectively. The presence of OOMS in larger amounts in Pile Ⅰ (resulting in more intense decomposing phenomena), and the larger particle size of OTB in Pile Ⅱ (resulting in increasing porosity) are the probable causes of these significant differences. Samples from open funnels presented lower, but not significantly lower, O_2 composition (higher for CO_2 and CH_4) in comparison with closed funnels in both depths and both piles. Not significant were also the different mean gas compositions between core and surface funnels in the same pile.
机译:这项工作的目的是对两相橄榄油厂污泥(OOMS)堆肥过程中的CO_2和CH_4排放进行一些初步评估。 OOMS,橄榄叶(OTL)和切碎的橄榄树枝(OTB)分别以1:1和1:1:2的v / v比率用作Ⅰ和Ⅱ堆的原料。每个桩原先高1.2 m,宽2.0 m,长约15.0 m。将四个500ml体积的玻璃漏斗倒置并引入每堆中,两个漏斗放入芯中(距表面50-60cm埋没),并且在混合物的薄的10-15cm层下靠近表面两个。将薄的(直径为0.5厘米)塑料,80厘米长的试管连接到漏斗。使用移动式气体分析仪(GA2000)每天测量O_2,CO_2和CH_4的组成(按体积计)。在每次转弯之前将漏斗移出,然后重新插入。从两个桩的每对漏斗(岩心和地面)中,一个在采样之间保持封闭。两种方差分析用于测试桩之间和管之间的差异。事后Tukey测试也用于进一步研究这些差异。对于所有三种气体,两堆气体之间存在显着差异(p <0.001)。四个漏斗中桩Ⅰ的O_2,CO_2和CH_4的平均浓度分别为16.86%,3.89%和0.25%,而桩Ⅱ的平均值分别为18.07%,2.38%和0.04%。 Ⅰ号桩中大量存在OOMS(导致更强烈的分解现象),而Ⅱ号桩中OTB的较大粒径(导致孔隙率增加)是这些显着差异的可能原因。与在两个深度和两个堆中的封闭漏斗相比,从开放漏斗中抽取的样品呈现出较低但不显着较低的O_2组成(CO_2和CH_4较高)。同一堆堆芯和表面漏斗之间的平均气体组成也不同,这并不重要。

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