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用各种共混材料对皆伐树木的木片进行好氧堆肥。

Aerobic composting of chips from clear-cut trees with various co-materials.

作者信息

Suzuki Takeshi, Ikumi Yoshio, Okamoto Syo-Taro, Watanabe Ikuo, Fujitake Nobuhide, Otsuka Hiroo

机构信息

Faculty of Agriculture, Kobe University, 1-1 Rokkodai-cho, Nada-ku, Kobe 657-8501, Japan.

出版信息

Bioresour Technol. 2004 Nov;95(2):121-8. doi: 10.1016/j.biortech.2004.02.020.

Abstract

Swollen chips made from trees felled during clear-cutting were composted with various organic and inorganic materials in an aerobic composting reactor for 5 months and then piled for 5 months. The organic materials included chicken feces, urea, nitrogenous lime (calcium cyanamide, manure), and material rapidly composted from food garbage in 24-h bacterial fermentation, while the inorganic materials were coal ash and volcanic ash. In this paper, we first attempt to estimate the quality and degree of maturity of each compost from its chemical properties. Furthermore, we try to calculate the maturity of the fermented wood chip composts from their mixture ratio of the initial materials by multiple linear regression analysis. We measured changes in the C/N ratio, nitrate nitrogen (NO3-N) content, percentage of humic acid in the alkali soluble fraction (PQ), cation exchange capacity, pH, and EC during the composting period. The degrees of maturity of the composts were estimated via a plant growth test using Chinese cabbage. We found that the CN ratio, NO3-N concentration, and PQ were suitable for estimating the degree of maturity of wood chip composts. For maturity, the CN ratio should be less than 14, the PQ more than 66.2, and the NO3-N concentration more than 853 mgkg-1. We devised an equation to estimate the degree of maturity after 10 months by a multiple linear regression analysis from the mixing ratio of wood chips and the co-composted materials. From the multiple linear regression analysis, the above three indices of compost maturity could be estimated from the mixing ratio of the initial materials. This equation should enable us to determine the degree of compost maturity after 10 months based on the initial mixing ratio.

摘要

在有氧堆肥反应器中,将皆伐作业中砍伐树木制成的膨胀木屑与各种有机和无机材料进行堆肥处理5个月,然后再堆放5个月。有机材料包括鸡粪、尿素、含氮石灰(氰氨化钙、粪肥)以及在24小时细菌发酵过程中由食物垃圾快速堆肥而成的材料,而无机材料则是煤灰和火山灰。在本文中,我们首次尝试根据其化学性质来估算每种堆肥的质量和成熟度。此外,我们试图通过多元线性回归分析,根据发酵木屑堆肥初始材料的混合比例来计算其成熟度。我们测量了堆肥期间碳氮比、硝态氮(NO3-N)含量、碱溶性组分中腐殖酸的百分比(PQ)、阳离子交换容量、pH值和电导率的变化。通过使用大白菜的植物生长试验来估算堆肥的成熟度。我们发现,碳氮比、NO3-N浓度和PQ适用于估算木屑堆肥的成熟度。对于成熟度而言,碳氮比应小于14,PQ应大于66.2,NO3-N浓度应大于853mg/kg。我们通过多元线性回归分析,根据木屑和共堆肥材料的混合比例,设计了一个方程来估算10个月后的成熟度。通过多元线性回归分析,可以根据初始材料的混合比例估算出上述三个堆肥成熟度指标。这个方程应该能使我们根据初始混合比例确定10个月后的堆肥成熟度。

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