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Effect of heat build-up on carbon emissions in chimato compost piles

机译:热量堆积对Chimato堆肥堆中碳排放的影响

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A study was conducted to determine impacts of heat build-up of chimato compost piles TD0, TD20, TD40, TD50, TD60, TD80 and TD100, made by blending maize stalks with 0, 20, 40, 50, 60, 80 and 100% Tithonia diversifolia, respectively, on carbon losses and emissions during composting. Compost piles temperatures that determined heat built-up were obtained from previous studies. Organic carbon and total carbon of chimato composts were determined using Kjeldahl method. Relatively, greater carbon reductions were observed in compost piles TD0, TD20, and TD40 (that experienced prolonged high thermophilic temperatures (temperature 60°C)) than compost piles TD50 and TD60 (that experienced a short-lived thermophilic temperatures (45≤60°C)). The prolonged high temperatures increased kinetic energy of chemical species CO2 and CH4 that became more volatile and probably escaped from the compost piles in large quantities resulting in significant carbon emissions. Relatively, short-lived heat built-up in TD50 and TD60 resulted in minimal carbon reduction, hence minimal carbon emissions. Therefore, chimato composts TD50 and TD60 significantly reduce compost pile carbon emissions (p=0.05, ɑ=0.001) and should be recommended to mitigate effects of climate change.
机译:进行了一项研究,以确定将玉米秸秆与0%,20%,40%,50%,60%,80%和100%混合后制成的Chimato堆肥TD0,TD20,TD40,TD50,TD60,TD80和TD100产生的热量的影响。 Tithonia diversifolia分别关于堆肥过程中的碳损失和排放。堆肥的温度决定了热量的积累,可从以前的研究中获得。使用凯氏定氮法测定了化学堆肥的有机碳和总碳。相对而言,堆肥TD0,TD20和TD40(经历了长时间的高温处理(温度> 60°C))观察到的碳减少量大于堆肥TD50和TD60(经历了短暂的高温处理(45≤60)的碳减少量) °C))。长时间的高温增加了化学物种CO2和CH4的动能,这些动能变得更加易挥发,并可能从堆肥堆中大量逸出,导致大量的碳排放。相对而言,TD50和TD60中短时间的热量积累导致碳减少量最小,因此碳排放量也最小。因此,Chimato堆肥TD50和TD60显着减少了堆肥的碳排放量(p = 0.05,ɑ= 0.001),因此建议减少气候变化的影响。

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