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Analysis of influencing factors on soil Zn content using generalized additive model

机译:广义加性模型分析土壤锌含量的影响因素

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Soil zinc (Zn) plays a crucial role in plant growth, but excessive accumulation in the environment may lead to air, water and soil pollution. It is affected by various chemical, environmental and spatial factors. Therefore, it is important to identify the factors influencing Zn content in the landscape. The main motivation for this study is to determine the suitability of a generalized additive model (GAM) to describe change in soil Zn content due to influencing factors. A total of 1497 soil nutrient samples were collected in Fangshan District, Beijing, China. Organic matter (OM), available phosphorus (AP), available potassium (AK), alkali-hydrolyzed nitrogen (AHN) and slowly available potassium (SAK) are considered. The relationship between Zn, nutrients and geographic location (latitude & longitude) is investigated using the GAM. More precisely, the Akaike information criterion (AIC) is used to select influencing factors on Zn content and cross-validated to avoid overfitting of the multivariate model. The results show that Zn content reaches its maximum at latitude 39.8°N and longitude 115.9°E. Zinc content increases as AP increases to 150?mg/kg. When OM content is greater than 90?g/kg, Zinc content decreases with an increase in OM content. Factors that affected Zn content, in descending order of significance derived from deviance explained and adjustment coefficient of determination (Adj.R2) were AP, latitude, AHN, AK and OM. Moreover, the interactions between latitude and longitude, AHN and AP, OM and AK have significant impact on Zn.
机译:土壤锌(Zn)在植物生长中起着至关重要的作用,但环境中的过量积累可能导致空气,水和土壤污染。它受各种化学,环境和空间因素的影响。因此,确定影响景观中锌含量的因素很重要。这项研究的主要动机是确定通用加成模型(GAM)的适用性,以描述由于影响因素引起的土壤锌含量的变化。在北京房山区,总共收集了1497个土壤养分样品。考虑了有机物(OM),有效磷(AP),有效钾(AK),碱解氮(AHN)和缓慢可用钾(SAK)。使用GAM研究了锌,养分与地理位置(纬度和经度)之间的关系。更准确地说,使用Akaike信息标准(AIC)来选择影响锌含量的因素,并进行交叉验证以避免多元模型的过度拟合。结果表明,Zn含量在北纬39.8°E和东经115.9°E达到最大值。锌含量随着AP增至150?mg / kg而增加。当OM含量大于90μg/ kg时,锌含量随OM含量的增加而降低。影响锌含量的因素,从解释的偏差和确定的调整系数(调整R2)开始,以显着性降序排列,分别为AP,纬度,AHN,AK和OM。此外,经纬度,AHN与AP,OM和AK之间的相互作用对Zn有显着影响。

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