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通过连续进料系统中的蚯蚓堆肥稳定不同的起始材料:化学和生物参数的变化。

Stabilization of different starting materials through vermicomposting in a continuous-feeding system: Changes in chemical and biological parameters.

机构信息

Department of Agro-Environmental Chemistry and Plant Nutrition, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences, Kamýcká 129, Prague 6-Suchdol, Czech Republic.

Department of Agro-Environmental Chemistry and Plant Nutrition, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences, Kamýcká 129, Prague 6-Suchdol, Czech Republic.

出版信息

Waste Manag. 2017 Apr;62:33-42. doi: 10.1016/j.wasman.2017.02.008. Epub 2017 Feb 16.

Abstract

In this study the feasibility of Eisenia andrei to digest great amount of wastes including horse manure (HM), apple pomace (AP), grape pomace (GP), and digestate (DG) was monitored through a continuous-feeding system. New layers of fresh material were gradually added to form an aged-profile of layers in order to understand the interaction between earthworms and microorganisms during vermicomposting. Thus, changes in chemical and biological parameters were evaluated for 240days. The earthworm population reached maximum values in 120 d-old-layer, which was related to an increase in overall microbial biomass, assayed as dehydrogenase activity, in all of the processed materials. The pH was generally alkaline or neutral in all of the materials. The electrical conductivity did not modify significantly during vermicomposting, except in the case of the processed GP, and DG. The stabilization, in all of the processed materials, was detected after 240 d of vermicomposting, as indicated the decline in the content of dissolved organic carbon (DOC). The N-NO content exhibited an enhanced in the processed HM and AP, while a generalized decreased was found in the GP, and DG materials in 240 d-old-layer. The decline in microbial biomass activity, in all processed substrates, was related to a decrease in the earthworm activity after 240 d of vermicomposting, indicating a high degree of stabilization. However, the β-glucosidase, phosphatase, protease, and o-diphenol oxidase activities were different according to the age of layers and type of processed material. The phytotoxicity test indicated that the end products of the processed AP and DG were chemically stable and enriched with nutrients in comparison with the HM and GP vermicompost. This fact indicates to stabilization (maturation) in the end product, which is important for its safe disposal as an organic nutrient-rich product.

摘要

在这项研究中,通过连续喂养系统监测了白纹伊蚊消化大量废物的可行性,包括马粪(HM)、苹果渣(AP)、葡萄渣(GP)和消化物(DG)。为了了解蚯蚓和微生物在蚯蚓堆肥过程中的相互作用,新鲜材料逐渐添加到新层中,形成一个老化层的轮廓。因此,在 240 天内评估了化学和生物参数的变化。蚯蚓种群在 120 天龄层达到最大值,这与所有处理材料中脱氢酶活性等整体微生物生物量的增加有关。所有材料的 pH 值通常为碱性或中性。除处理过的 GP 和 DG 外,电导率在蚯蚓堆肥过程中没有明显变化。所有处理材料在 240 天的蚯蚓堆肥后都达到了稳定状态,这表明溶解有机碳(DOC)含量下降。在处理过的 HM 和 AP 中,N-NO 含量增加,而在 GP 和 DG 材料中,240 天龄层的含量普遍下降。所有处理底物中微生物生物量活性的下降与 240 天的蚯蚓堆肥后蚯蚓活性的下降有关,这表明稳定程度很高。然而,根据层龄和处理材料的类型,β-葡萄糖苷酶、磷酸酶、蛋白酶和邻苯二酚氧化酶的活性不同。植物毒性试验表明,与 HM 和 GP 蚯蚓堆肥相比,处理过的 AP 和 DG 的终产物在化学上是稳定的,并且富含营养物质。这一事实表明,终产物的稳定(成熟)对于其作为有机富营养产品的安全处置非常重要。

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