膨化料对牛粪堆肥过程中有机质降解的影响

M. Rana, M. A. Hashem, H. Murshed, M. Bhuiyan, M. M. Rahman
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引用次数: 4

摘要

本研究旨在了解堆肥过程中不同物料对牛粪的降解规律。为此,采用T1(干碎秸秆堆肥)、T2(干树叶堆肥)和T3(锯末堆肥)3种堆料进行堆肥试验,共3个重复。研究了不同时间间隔的干物质(DM)、有机质(OM)、灰分(灰分)、有机碳(OC)、总氮(TN)、粗纤维(CF)、碳氮比(C/N)和pH。结果表明,膨化物料对最终堆肥质量有显著影响。堆肥45 d后,DM含量以T3最高(48.17%),T2最低(38.36%)。T3的OM、OC和CF的还原率显著高于T1和T2 (p<0.01),在45 d的试验期中,各d间的差异也显著(p<0.01)。TN含量随着时间的增加逐渐降低。但各处理间全氮变化随时间间隔无显著差异。各处理间C/N差异极显著(P<0.01),且随着堆肥操作的推进,C/N逐渐增加。各处理的pH值变化不大,但在整个试验期内各处理的pH值变化趋势不一致。最后可以得出结论,CF和OM在t3的降解速率比T1和T2更快。这可能表明,锯末可以作为一种有效的填充材料,在牛粪堆肥过程中促进OM的降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of bulking materials on theorganic matter degradation during composting of cattle manure
This study aimed to understand the degradation pattern of cattle manure with different types of bulking materials during composting. For this purpose, a composting experiment was conducted with three bulking materials e.g., T1 (composting with dry chopped straw), T2 (composting with dry tree leaves) and T3 (composting with saw dust) with 3 replications. Parameters studied were dry matter (DM), organic matter (OM), ash, organic carbon (OC), total nitrogen (TN), crude fiber (CF), carbon nitrogen ratio (C/N) and pH at different days of intervals. Results showed that the bulking materials have a significant influence on the quality of the final compost. The highest DM content was observed in T3 (48.17%) and the lowest DM content was observed in T2 (38.36%) after 45 days of composting. There were significant (p<0.01) higher reduction rate of OM, OC and CF were found in T3 compared to T1 and T2 and the differences were also significant (p<0.01) among days intervals over 45 days of experimental period. TN content gradually decreases with the increase of time. But there was no significant difference in TN alteration among the treatments along with time intervals. There were significant differences (P<0.01) in C/N among treatments and a gradual increment of C/N was found with the advancement of the composting operation. There was a little change in pH of all the treatments but those treatments were not followed a trend during the total experimental period. Finally, it may be concluded that CF and OM degradation rate is faster in T3compared to T1 and T2. These might be indicated that saw dust might be used as an efficient bulking material that enhances OM degradation during composting of cattle manure.
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