Department of Soil Science and Agricultural Chemistry, Dr. Rajendra Prasad Central Agricultural University, Pusa, Bihar, India.
Department of Soil Science and Agricultural Chemistry, Bihar Agricultural University, Sabour, Bhagalpur, Bihar, India.
J Air Waste Manag Assoc. 2023 Jul;73(7):553-567. doi: 10.1080/10962247.2023.2207504. Epub 2023 Jun 6.
Recycling organic waste can help the land be nourished, properly disposed of, and protected from the negative impacts of chemical fertilizers. Organic additions like vermicompost can help restore and preserve the quality of the soil, however, producing vermicompost of a high enough standard is difficult. This study was planned to prepare vermicompost by utilizing two different organic wastes viz. household waste and organic residue amended with rock phosphate and further evaluate their stability and maturity indices during vermicomposting for quality of produce. For this study, the organic wastes were collected and vermicompost was prepared by using earthworm () and with or without enriching with rock phosphate. Results showed that pH, bulk density, and biodegradability index were decreased and water holding capacity and cation exchange capacity was increased with the gradual progress of composting starting from 30 to 120 days of sampling/composting (DAS). Initially (upto 30 DAS) water-soluble carbon and water-soluble carbohydrate increased with rock phosphate enrichment. The population of the earthworms and enzymatic activities (CO evolution, dehydrogenase, and alkaline phosphatase) were also increased on enriching with rock phosphate and with the progression of the composting period. Rock phosphate addition (enrichment) also reflected the higher content of phosphorus (106% and 120% for household waste and organic residue, respectively) in the final product of vermicompost. The vermicompost prepared from household waste and enriched with rock phosphate showed greater maturity and stability indices. Overall, this can be concluded that the maturity and stability of vermicompost depend on the substrate used and improves on enriching with rock phosphate.: Our study concludes that the quality of vermicompost depends on different substrates, composting period, and enrichment with rock phosphate. The qualities of vermicompost were best found under household waste-based vermicompost enriched with rock phosphate. The efficiency of vermicomposting process using earthworms was found maximum for enriched and without enriched household-based vermicompost. The study also indicated that several stability and maturity indices are influenced by different parameters and hence cannot be determined by a single parameter. The addition of rock phosphate increased the cation exchange capacity, phosphorus content, and alkaline phosphatase. Nitrogen, zinc, manganese, dehydrogenase, and alkaline phosphatase were found higher under household waste-based vermicompost relative to organic residue-based vermicompost. All four substrates promoted earthworm growth and reproduction in vermicompost.
回收有机废物有助于滋养土地、妥善处理,并防止化肥带来的负面影响。像蚯蚓粪这样的有机添加物可以帮助恢复和保持土壤质量,然而,要生产出足够高标准的蚯蚓粪是很困难的。本研究计划利用两种不同的有机废物,即家庭废物和有机残渣,添加磷矿粉,进一步评估在蚯蚓堆肥过程中它们的稳定性和成熟度指数,以提高产品质量。为此,本研究收集了有机废物,并使用蚯蚓()制备了蚯蚓粪,其中一些添加了磷矿粉,一些没有添加。结果表明,pH 值、体密度和生物降解指数随着堆肥从 30 天到 120 天的逐渐进展而降低,而持水能力和阳离子交换能力则增加。最初(在 30 天内),随着磷矿粉的添加,水溶性碳和水溶性碳水化合物增加。在添加磷矿粉的情况下,蚯蚓的数量和酶活性(CO 释放、脱氢酶和碱性磷酸酶)也增加了,并且随着堆肥时间的延长而增加。磷矿粉的添加(富集)也反映了最终蚯蚓粪产品中磷的含量较高(家庭废物和有机残渣分别为 106%和 120%)。由家庭废物制备并富含磷矿粉的蚯蚓粪显示出更高的成熟度和稳定性指数。总的来说,这可以得出结论,即蚯蚓粪的成熟度和稳定性取决于所用的基质,并通过添加磷矿粉得到改善。:我们的研究得出结论,蚯蚓粪的质量取决于不同的基质、堆肥时间和磷矿粉的添加。在富含磷矿粉的家庭废物为基础的蚯蚓粪中发现了最好的质量。使用蚯蚓进行蚯蚓堆肥的效率在富化和未富化的家庭为基础的蚯蚓粪中达到最高。该研究还表明,一些稳定性和成熟度指数受不同参数的影响,因此不能仅通过单一参数来确定。磷矿粉的添加增加了阳离子交换能力、磷含量和碱性磷酸酶。与有机残渣为基础的蚯蚓粪相比,家庭废物为基础的蚯蚓粪中氮、锌、锰、脱氢酶和碱性磷酸酶含量较高。所有四种基质都促进了蚯蚓在蚯蚓粪中的生长和繁殖。