首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Anthropogenic Dark Earth in Northern Germany - The Nordic Analogue to terra preta de Indio in Amazonia
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Anthropogenic Dark Earth in Northern Germany - The Nordic Analogue to terra preta de Indio in Amazonia

机译:德国北部的人为黑暗地球-亚马逊地区印地语的北欧模拟

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摘要

During an archaeological excavation of a Slavic settlement (10th/11th C. A.D.) in Briinkendorf (Wendland region in Northern Germany), a thick black soil (Nordic Dark Earth) was discovered that resembled the famous terra preta phenomenon. For the humid tropics, terra preta could act as model for sustainable agricultural practices and for long-term CO2-sequestration into terrestrial ecosystems. The question was whether this Nordic Dark Earth had similar properties and genesis as the famous Amazonian Dark Earth in order to find a model for sustainable agricultural practices and long term CO2-sequestration in temperate zones. For this purpose, a multi-analytical approach was used to characterise the sandy-textured Nordic Dark Earth in comparison to less anthropogenically influenced soils in the adjacent area in respect of ecological conditions (pH, electric conductivity, cation exchange capacity, amino sugar) and input materials. Total element contents (C, N, P, Ca, Mg, K, Na, Fe, Cu, K, Zn, Mn and Ba) were highly enriched in the Nordic Dark Earth compared to the reference soil. Faecal biomarkers such as stanols and bile acids indicated animal manure from omnivores and herbivores but also human excrements. Amino sugar analyses showed that Nordic Dark Earth contained higher amounts of microbial residues being dominated by soil fungi. Black carbon content of about 30 Mg ha(-1) in the Nordic Dark Earth was about four times higher compared to the adjacent soil and in the same order of magnitude compared to terra preta.
机译:在Briinkendorf(德国北部温德兰地区)的斯拉夫定居点(公元10/11)的考古发掘中,发现了一种类似于著名的terra preta现象的厚黑色土壤(北欧暗地球)。对于潮湿的热带地区,terra preta可以充当可持续农业实践和将二氧化碳长期封存到陆地生态系统的模型。问题是,这个北欧暗土是否具有与著名的亚马逊黑土相似的特性和起源,以便为温带地区的可持续农业实践和长期二氧化碳封存找到模型。为此,在生态条件(pH,电导率,阳离子交换能力,氨基糖)和环境条件方面,与邻区受人为影响较小的土壤相比,采用了多分析方法来表征具有沙质的北欧暗土。输入资料。与参考土壤相比,北欧暗土中的总元素含量(C,N,P,Ca,Mg,K,Na,Fe,Cu,K,Zn,Mn和Ba)高度富集。粪便生物标志物(例如甾烷醇和胆汁酸)表明杂食动物和草食动物的动物粪便,但也包括人类排泄物。氨基糖分析表明,北欧暗土中土壤微生物占主导地位的微生物残留量更高。北欧暗地球中约30 Mg ha(-1)的黑碳含量比邻近的土壤高约四倍,并且与terra preta的数量级相同。

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