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Mechanisms Regulating Composting of High Carbon to Nitrogen Ratio Grass Straw

机译:高碳氮比秸秆堆肥调控机理

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Utilization of high C:N ratio farm residues is difficult because of its low value and bulk. Composting is an ideal method for upgrading the residue, however, it was not thought possible without co-composting to lower the C to N ratio to 30 to 1 or lower. We have successfully composted grass straw with a C:N of 50 to 1 using existing farm machinery and normal precipitation (115 cm y~(-1) and occurs primarily between October and June). After turning and densification in the field, composting conditionswere achieved with the rapid growth of thermophilic microorganisms. During laboratory incubations of the grass straw, bacteria ranged from 10~8-10~9 g~(-1) grass straw. Actinomycetes numbered 10~8 g~(-1) grass straw. Fungi ranged from 10~6-10~7 propagules g~(-1) grass straw. Microbial biomass C during composting represented four to six percent of total grass straw C. A significant amount of lignin C, 25 percent, was degraded during mesophilic decomposition while 39 percent was degraded during thermophilic decomposition The acid insoluble lignin fraction became highly oxidized and accumulated N. The decomposed lignin C, N, H and O concentrations were similar to humic substances in soil. These data indicate that extensive lignin degradation occurred. Asimulation of microbial production indicated that the microbial biomass was more efficient at mesophilic than at thermophilic temperatures.
机译:高C:N比例的农场残留物由于其价值低且体积大而难以使用。堆肥是提纯残渣的理想方法,但是,如果没有共同堆肥将C / N比例降低到30:1或更低,这是不可能的。我们已经使用现有的农业机械和正常的降水量(115 cm y〜(-1),主要发生在10月到6月之间)成功地将C:N为50:1的草秸秆堆肥了。经过田间翻车和致密化处理后,嗜热微生物的快速生长达到了堆肥条件。在实验室吸管中,细菌的范围为10〜8-10〜9 g〜(-1)。放线菌编号为10〜8 g〜(-1)草。真菌的繁殖量为10〜6-10〜7克g〜(-1)草秆。堆肥过程中的微生物生物量C占草秸秆C总量的4%至6%。在中温分解过程中,大量的木质素C(25%)被降解,而在嗜热分解过程中被降解39%酸不溶性木质素部分被高度氧化并累积N分解后的木质素C,N,H和O浓度类似于土壤中的腐殖质。这些数据表明发生了广泛的木质素降解。微生物产生的模拟表明,中温微生物温度比嗜热温度更有效。

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