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SOIL ORGANIC MATTER AND ENVIRONMENTAL PROTECTION ORGANISCHE BODENSUBSTANZ UND UMWELTSCHUTZ

机译:土壤有机物和环境保护有机土壤的物质和环境保护

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摘要

The importance of the soil organic matter (SOM) in the environmental protection, particularly its relation to the global carbon and nitrogen cycle come increasingly into the foreground. The evaluation of the influence of SOM on the environment requires the knowledge of optimal SOM content. Several authors estimated the necessary amount of primary organic matter (POM) for preservation of the optimal SOM content in soil on basis of the results from 10 long-term field experiments at eight different locations. An average demand for farmyard manure (FYM) was determined to be 10 t.ha~(-1) a~(-1). The difference in the organic carbon content between the unfertilized variant and the optimum fertilized variant ranged between 0.11 % C_(org) on a sandy soil and 0.51 % C_(org) on loess black soil. A higher level of organic fertilization brings no yield advantages and it is connected with higher N-losses. The utilization of FYM nitrogen is around 30% lower in comparison with mineral N. The reduction of the CO_2concentration in the atmosphere by means of carbon sequestration in mineral soils is practically impossible. The input of primary organic matter to soil exceeds by large C quantity which can be accumulated.
机译:土壤有机质(SOM)在环境保护中的重要性,特别是其与全球碳氮循环的关系日益成为人们关注的焦点。评估SOM对环境的影响需要了解最佳SOM内容。几位作者根据在八个不同地点进行的10个长期田间试验的结果,估计了为保持土壤中最佳SOM含量所需的初级有机物(POM)的量。确定的农家肥平均需求量为10吨公顷(-1)a〜(-1)。未施肥的变种与最佳施肥的变种之间的有机碳含量差异在沙土上为0.11%C_(org)与黄土黑土上为0.51%C_(org)。较高水平的有机施肥不会带来产量优势,并且会导致较高的氮损失。与矿物N相比,FYM氮的利用率低约30%。通过碳固存在矿物土壤中来减少大气中的CO_2浓度实际上是不可能的。向土壤中输入的原始有机物超过了可累积的大量C量。

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