Ko Han J, Kim Ki Y, Kim Hyeon T, Kim Chi N, Umeda M
Division of Environmental Science and Technology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
Waste Manag. 2008;28(5):813-20. doi: 10.1016/j.wasman.2007.05.010. Epub 2007 Jul 16.
The objective of this study was to evaluate a variety of maturity indices and heavy metal concentrations in the composting process. A full-scale study was performed on animal manures (dairy:beef:swine = 50%:30%:20%, w/w) mixed with sawdust using a self-screwed turner over a time period of 63 days. Several chemical compost characteristics and germination indices were monitored on samples collected weekly at a prototype composting facility. NH(4)-N concentrations decreased during the composting time, on the contrary NO(3)-N concentrations increased sharply after 30 days. As composting proceeded, the humic acids content increased from 1.45% to 2.70% of the organic carbon content, whereas the fulvic acids content decreased gradually. Temperature in the compost pile and concentration of NH(3) averaged 32.4 degrees C and 12.9 ppm at the initial composting phase and 69.5 degrees C and 47.3 ppm at the active bio-oxidation composting phase, respectively. Seed germination and germination index (GI) increased during the composting process, and the compost samples at the end of composting phase had GI values greater than 120. Among the composting processes, there were significant differences (p<0.05) in concentration of Zn, Cu and Pb in the compost. In conclusion, the suggested maturity parameter values and metal concentrations of composted animal manures can provide better understanding of maturation process of animal manure compost.
本研究的目的是评估堆肥过程中的各种成熟度指标和重金属浓度。使用自螺旋翻堆机对与锯末混合的动物粪便(奶牛:牛肉:猪 = 50%:30%:20%,w/w)进行了为期63天的全规模研究。在一个原型堆肥设施中,每周收集的样品上监测了几种化学堆肥特性和发芽指标。堆肥过程中NH(4)-N浓度下降,相反,NO(3)-N浓度在30天后急剧增加。随着堆肥的进行,腐殖酸含量从有机碳含量的1.45%增加到2.70%,而富里酸含量逐渐下降。堆肥初期堆肥堆中的温度和NH(3)浓度分别平均为32.4℃和12.9 ppm,在活性生物氧化堆肥阶段分别为69.5℃和47.3 ppm。堆肥过程中种子发芽和发芽指数(GI)增加,堆肥阶段结束时的堆肥样品GI值大于120。在堆肥过程中,堆肥中Zn、Cu和Pb的浓度存在显著差异(p<0.05)。总之,建议的堆肥动物粪便的成熟度参数值和金属浓度可以更好地理解动物粪便堆肥的成熟过程。