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Changes in chemical properties during composting of spent pig litter at different moisture contents.

机译:不同含水量的废猪粪堆肥过程中化学性质的变化。

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摘要

An ordinary pig pen employing the pig-on-litter system was set-up and 40 pigs were placed inside. After 12 weeks, the pigs were removed from the pen and the spent litter was collected and piled up in an open shed for further composting and maturation. Three piles of the spent litter were set up with moisture content adjusted to 50% (Pile A), 60% (Pile B) and 70% (Pile C). During further composting, the changes in temperature and chemical properties of the piles were monitored. Results of the studyshowed that moisture content affected the changes in temperature and chemical properties (i.e. concentrations of NH+4-N, [NO-3 + NO-2]-N, C:N ratio, cation-exchange capacity [CEC], total and water extractable K and pH value) of the spent litter. Pile C,the pile adjusted to 70% moisture, had a delay in reaching peak temperature values and the temperature never dropped back to the ambient level. Piles A and B, the piles adjusted to 50 and 60% moisture content respectively, had similar changes in temperature and chemical properties and had faster decomposition rates than pile C suggesting that moisture content between 50 and 60% gave an efficient further composting of spent litter. The maturation of spent litter was accompanied by changes, with periods of composting in pH, total C, ash, various forms of N, CEC and C:N ratio. Results of the regression analysis showed a curvilinear relationship between these chemical parameters with period of composting and temperature. Moreover, changes in these chemicalparameters were either positively or negatively correlated with temperature.
机译:设置了一个普通的猪舍,采用了随地吐痰系统,将40只猪放进了里面。 12周后,将猪从猪舍中移出,收集用过的垃圾并堆放在开放的棚子中,以便进一步堆肥和成熟。设置三堆用过的垃圾,其水分含量分别调整为50%(A组),60%(B组)和70%(C组)。在进一步堆肥期间,监测堆的温度和化学性质的变化。研究结果表明,水分含量会影响温度和化学性质的变化(即NH + 4-N,[NO-3 + NO-2] -N的浓度,C:N比,阳离子交换容量[CEC],废料的总和(可提取的水的K和pH值)。 C堆(已将其调整为70%的湿度)延迟了达到峰值温度值的时间,并且温度从未回落到环境水平。分别调整为50%和60%含水量的A和B堆,其温度和化学性质变化相似,并且分解速度比C堆快,这表明50%和60%之间的含水量可以对废垃圾进行更有效的堆肥。 。废垃圾的成熟伴随着变化,包括堆肥期的pH,总碳,灰分,各种形式的氮,CEC和C:N比。回归分析结果表明,这些化学参数与堆肥时间和温度之间存在曲线关系。此外,这些化学参数的变化与温度呈正相关或负相关。

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