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  • 标题:Unveiling the Efficiency of Psychrophillic <i>Aporrectodea caliginosa</i> in Deciphering the Nutrients from Dalweed and Cow Manure with Bio-Optimization of Coprolites
  • 本地全文:下载
  • 作者:Tahir Sheikh ; Zahoor Baba ; Sadaf Iqbal
  • 期刊名称:Sustainability
  • 印刷版ISSN:2071-1050
  • 出版年度:2021
  • 卷号:13
  • 期号:10
  • 页码:5338
  • DOI:10.3390/su13105338
  • 语种:English
  • 出版社:MDPI, Open Access Journal
  • 摘要:There is an immense demand for vermicomposting employing psychrophilic vermiculture (<i>Aporrectodea caliginosa</i>) for management of wastes under the Himalayan ecosystem. Dalweed (weeds from the world-famous urban Dal Lake) and cow manure (CM) are cheaply and abundantly available bio resources in Kashmir valley. Dalweed (DW), disposed of in the heart of the city, ascribes unpleasant effects on tourism and the natural ecosystem. Initial substrate mixtures of DW and CM with different ratios (CM<sub>100</sub>, DW<sub>100</sub>, CM<sub>80</sub>:DW<sub>20</sub>, CM<sub>60</sub>:DW<sub>40</sub>, CM<sub>40</sub>:DW<sub>60</sub> and CM<sub>20</sub>:DW<sub>80</sub>) and castings harvested were analyzed for the following parameters: pH, TOC, TN, NO<sub>3</sub><sup>-</sup> P, K, Fe, Zn, C:N, C:P, and C:S ratio. The results of a 56day study revealed in consistency and disparity towards the bio-optimization of coprolites depending upon the type of waste residue and mixture ratio used. Treatments with medium to low dalweed residues (CM<sub>60</sub>:DW<sub>40</sub> followed by CM<sub>80</sub>:DW<sub>20</sub>) were found to be optimum and significantly primed chemical properties of castings using <i>A. caligenosa</i>. C:N, C:P, and C:S ratios showed a non-linear response with maximum decrease in C:N ratio by 35%, C:P ratio by 38% in CM<sub>100</sub>, and C:S ratio by 67% in DW<sub>100</sub>. Humification ratio, humification index, and percent humic acids were changed across all the treatments with the highest respective values of 21.33 ± 1.05, 11.33 ± 0.76, and 47.83 ± 0.76 for CM<sub>60</sub>:DW<sub>40</sub>. Results also showed that the earthworm population and biomass significantly increased with the highest respective increments of 57.53% and 74.88% in CM<sub>60</sub>:DW<sub>40</sub> over initial values. Moreover, the highest number of cocoons (95.67 ± 1.17) were recorded within CM<sub>60</sub>:DW<sub>40</sub> and the lowest in the control (43.33 ± 1.53). Dehydrogenase and fluorescein diacetate activities were inconsistent with the highest in CM<sub>40</sub>:DW<sub>60</sub> (64.64%) and CM<sub>20</sub>:DW<sub>80</sub> (63.54%) respectively over the initial substrates, while highest urease activity (74.40%) was observed from CM<sub>100</sub>. The results highlight the role of <i>A. caliginosa</i> in sustainable transformation of CM and DW with insightful, beneficial, and priming impacts on castings for its agronomic value.
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