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一种新型甲壳质来源的生物炭,对植物和土壤节肢动物具有内置的刺激作用。

A novel type of biochar from chitinous Hermetia illucens waste with a built-in stimulating effect on plants and soil arthropods.

机构信息

Institute of Agrophysics, Polish Academy of Sciences, Doświadczalna 4, 20-290, Lublin, Poland.

Analytical Laboratory, Faculty of Chemistry, Institute of Chemical Science, Maria Curie-Skłodowska University, M. Curie-Skłodowska Square 3, 20-031, Lublin, Poland.

出版信息

Sci Rep. 2023 May 23;13(1):8306. doi: 10.1038/s41598-023-35460-6.

Abstract

The breeding of insects generates waste in the form of insect excrement and feed residues. In addition, a specific chitinous waste in the form of insect larvae and pupae exuvia is also left. Recent research tries to manage it, e.g., by producing chitin and chitosan, which are value-added products. The circular economy approach requires testing new, non-standard management methods that can develop products with unique properties. To date, the possibility of biochar production from chitinous waste derived from insects has not been evaluated. Here we show that the puparia of Hermetia illucens are suitable for biochar production, which in turn exhibits original characteristics. We found that the biochars have a high nitrogen level, which is rarely achievable in materials of natural origin without artificial doping. This study presents a detailed chemical and physical characterization of the biochars. Moreover, ecotoxicological analysis has revealed the biochars' stimulation effect on plant root growth and the reproduction of the soil invertebrate Folsomia candida, as well as the lack of a toxic effect on its mortality. This predisposes these novel materials with already built-in stimulating properties to be used in agronomy, for example as a carriers for fertilizers or beneficial bacteria.

摘要

昆虫养殖会产生昆虫粪便和饲料残渣等形式的废物。此外,还会留下特定的几丁质废物,如幼虫和蛹的蜕皮。最近的研究试图对其进行管理,例如通过生产具有附加值的几丁质和壳聚糖来实现。循环经济方法需要测试新的、非标准的管理方法,这些方法可以开发具有独特性能的产品。迄今为止,尚未评估源自昆虫的几丁质废物生产生物炭的可能性。在这里,我们表明,Hermetia illucens 的蛹适合生产生物炭,而生物炭反过来又具有独特的特性。我们发现生物炭具有高氮水平,而在没有人工掺杂的天然材料中很少能达到这一水平。本研究对生物炭进行了详细的化学和物理特性分析。此外,生态毒理学分析表明,生物炭能刺激植物根系生长和土壤无脊椎动物 Folsomia candida 的繁殖,同时对其死亡率没有毒性作用。这使得这些具有内置刺激特性的新型材料有可能在农业中得到应用,例如作为肥料或有益细菌的载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1504/10206153/74586777ec5e/41598_2023_35460_Fig1_HTML.jpg

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