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首页> 外文期刊>Eurasian Soil Science >Soil Fertility Characteristics and Organic Carbon Stock in Soils of Vegetable Gardens Compared with Surrounding Arable Land at the Center of the Urban and Industrial Area of Ruhr, Germany
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Soil Fertility Characteristics and Organic Carbon Stock in Soils of Vegetable Gardens Compared with Surrounding Arable Land at the Center of the Urban and Industrial Area of Ruhr, Germany

机译:德国城市和工业区中心蔬菜花园土壤土壤肥力特性及有机碳股

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摘要

Soil fertility is the basis for production of high green mass, which has numerous essential benefits in urban areas. This study aimed to investigate the soil fertility of urban land. This was done by comparing soils from a vegetable garden and its surrounding arable land. A local brickwork dump was included. The soils were Hortisols, slightly stagnogleyic Luvisols, and a Regosol from sandy loamy silt. The location of the study was in the center of one of the world's largest urban, hard-coal mining and heavy industry areas, the Ruhr area in Germany. The investigations for identifying the characteristic features of the soil fertility involved determination of the profile horizons, texture, pH, bulk density, C/N ratio, content and stocks of organic carbon, total nitrogen, available phosphorus and potassium, and soil water by field capacity. As they are expected to become construction land, the sites were already in a derelict state. The results show that all three soil types had high fertility characteristics. However, the fertility of the garden soils was much greater than that of the local arable land. This was due to the strong and deep accumulation of organic carbon due to compost application. The available phosphorus and potassium contents and field capacity were also distinctly increased in the garden soils. The spatial distribution and distribution with depth of pH, bulk density, organic carbon, nitrogen, available phosphorus, and potassium were extremely heterogeneous among the individual garden soils. In contrast, in the arable land, they were uniform. The organic carbon accumulation in the dump was in the range of that of the garden soils, but the nutrient contents were lower. These results show that the diversity of properties of urban soils is much higher than that of arable soils. The dereliction of arable, garden, and dump soil and vegetation by bushes and trees also affect the soil properties. There should be greater awareness of the high fertility of urban soils, such as vegetable garden soils. Vegetable garden soils have a high potential for contributing to solving urban problems by producing high volumes of biomass and storing water. Therefore, it should be demanded that vegetable garden soils receive a high protection status, and they should not be used for the establishment of construction.
机译:土壤肥力是生产高绿色质量的基础,在城市地区具有许多必不可少的益处。本研究旨在调查城市土地的土壤肥力。这是通过比较来自菜园及其周围耕地的土壤来完成的。包括当地的砖砌转储。土壤是Hortisols,略带稳定的洛维斯醇,以及来自桑迪壤土淤泥的Regosol。该研究的位置是世界上最大的城市,硬煤矿和重型工业领域的中心,德国的鲁尔地区。确定土壤肥力特征的调查涉及确定曲线视野,质地,pH,散装密度,C / N比,含量,磷和钾的概念,含量,含量和土壤水域的概况容量。由于它们预计将成为建筑用地,该网站已经处于遗弃状态。结果表明,所有三种土壤类型都具有高生育特性。然而,花园土壤的生育率远大于局部耕地。这是由于堆肥应用引起的有机碳的强烈和深度积累。在花园土壤中,可用的磷和钾含量和田间容量也明显增加。具有深度pH,散装密度,有机碳,氮,可用磷和钾的空间分布和分布在各个园林土壤中是极其异质的。相比之下,在耕地中,它们是均匀的。倾卸中的有机碳积累在花园土壤的范围内,但营养物质含量较低。这些结果表明,城市土壤的性质的多样性远高于耕地土壤。灌木丛和树木的耕种,花园和倾倒土壤和植被的脱发也会影响土壤性质。应该更加了解城市土壤的高肥能力,如菜园园林土壤。菜园土壤具有促进通过生产大量生物质和储存水来解决城市问题的潜力。因此,应该要求蔬菜花园土壤获得高保护地位,不应用于建立建设。

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