利用蚯蚓技术处理农业工业木质纤维素废弃物及生产农艺有效蚯蚓堆肥

K. V. Prashija, K. Parthasarathi
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引用次数: 4

摘要

我们的目的是回收农业工业废弃物资源-压力污泥(PM)、甘蔗垃圾(ST)和生物甲烷化蒸馏废水(BE),并利用蚯蚓(Perionyx excavatus)生产农艺学有效的蚯蚓堆肥,以保持自然土壤的有机和可持续农业活动。因此,我们进行了一系列研究,将不同比例的PM-ST-BE (T1-1000g PM+0g ST+790ml BE)、(T2- 900g PM+100g ST+740ml BE)、(T3-800g PM+200g ST+696ml BE)、(T4-700g PM+ 300g ST+655ml BE)、(T5-600g PM+400g ST+625ml BE)和(T6-500g PM+500g ST+542ml BE)转化为蚯蚓堆肥。研究了蚯蚓的生长、繁殖、蚯蚓堆肥的恢复及其营养状况。各虫层均表现出较强的活性,其中T1和T3虫层活性最强,其余次之。这似乎是由于丰富的纤维素、OC、N、P、微生物活性、增强的持水能力和基材的适口性。蚯蚓堆肥的微生物活性、腐殖酸含量、氮磷钾含量、标准化pH值均高于普通堆肥和对照,OC、C-N、C-P比、木质素、纤维素、半纤维素和苯酚含量均下降。微生物酶活性的增加通过硝化作用、磷酸盐溶解作用和矿化作用增加了养分。蚯蚓堆肥中OC、C-N、C-P、木质素、纤维素、半纤维素和苯酚的降低是由于蚯蚓在堆肥过程中肠道微菌和蚯蚓的共同作用以及蚯蚓对这些内容物的生长和繁殖利用所致。最后,本研究提出了利用蚯蚓技术可持续利用木质纤维素废弃物生产和应用蚯蚓肥料的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Management of Agroindustrial Lignocellulosic Wastes through Vermitechnology and Production of Agronomic Valid Vermicompost
We aimed to recycle the agroindustrial waste resources - pressmud(PM), sugarcane trash (ST) and biomethanated distillery effluent(BE) and produced agronomic valid vermicompost using earthworm, Perionyx excavatus for maintaining natural soil organic and sustainable agricultural activity. Therefore, a series of studies were carried out to convert PM-ST-BE in different proportion vermibeds (T1-1000g PM+0g ST+790ml BE), (T2- 900g PM+100g ST+740ml BE), (T3-800g PM+200g ST+696ml BE), (T4-700g PM +300g ST+655ml BE), (T5-600g PM+400g ST+625ml BE) and (T6-500g PM+500g ST+542ml BE) into vermicompost. The study was to examine the activity of earthworm- growth, reproduction, vermicompost recovery and its nutrient status. The pronounced and better worm activity was found in all vermibeds, especially more in T1 and T3 vermibeds followed by others. This seems to be due to rich cellulose, OC, N, P, microbial activity, enhanced water holding capacity and palatability of the substrates. Enhanced microbial activity, humic acid content, NPK, normalized pH, declined OC, C-N, and C-P ratio, lignin, cellulose, hemicellulose and phenol in vermicompost than normal compost and control. The increased microbial-enzymatic activities contribute an increase in nutrients through nitrification, phosphate solubilization and mineralization. Reduction of OC, C-N, C-P ratio, lignin, cellulose, hemicellulose and phenol in the vermicompost are due to combined action of gut microflaura and earthworm during the vermicomposting process and utilization of these contents by the worm for their growth and reproduction. Finally, our study recommended for the production and application of vermifertilizer from lignocellulosic wastes using vermitechnology for sustainable activity.
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