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用于测定地中海土壤中各种物理、化学和生化特性的近红外光谱法。

Near infrared spectroscopy for determination of various physical, chemical and biochemical properties in Mediterranean soils.

作者信息

Zornoza R, Guerrero C, Mataix-Solera J, Scow K M, Arcenegui V, Mataix-Beneyto J

机构信息

GEA (Grupo de Edafología Ambiental). Departamento de Agroquímica y Medio Ambiente, Universidad Miguel Hernández, Avda. de la Universidad s/n, 03202-Elche, Alicante, Spain.

出版信息

Soil Biol Biochem. 2008 Jul;40(7):1923-1930. doi: 10.1016/j.soilbio.2008.04.003.

Abstract

The potential of near infrared (NIR) reflectance spectroscopy to predict various physical, chemical and biochemical properties in Mediterranean soils from SE Spain was evaluated. Soil samples (n=393) were obtained by sampling thirteen locations during three years (2003-2005 period). These samples had a wide range of soil characteristics due to variations in land use, vegetation cover and specific climatic conditions. Biochemical properties also included microbial biomarkers based on phospholipid fatty acids (PLFA). Partial least squares (PLS) regression with cross validation was used to establish relationships between the NIR spectra and the reference data from physical, chemical and biochemical analyses. Based on the values of coefficient of determination (r(2)) and the ratio of standard deviation of validation set to root mean square error of cross validation (RPD), predicted results were evaluated as excellent (r(2)>0.90 and RPD>3) for soil organic carbon, Kjeldahl nitrogen, soil moisture, cation exchange capacity, microbial biomass carbon, basal soil respiration, acid phosphatase activity, β-glucosidase activity and PLFA biomarkers for total bacteria, Gram positive bacteria, actinomycetes, vesicular-arbuscular mycorrhizal fungi and total PLFA biomass. Good predictions (0.81<r(2)<0.90 and 2.5<RPD<3) were obtained for exchangeable calcium and magnesium, water soluble carbon, water holding capacity and urease activity. Resultant models for protozoa and fungi were not accurate enough to satisfactorily estimate these variables, only permitting approximate predictions (0.66<r(2)<0.80 and 2.0<RPD<2.5). Electrical conductivity, pH, exchangeable phosphorus and sodium, metabolic quotient and Gram negative bacteria were poorly predicted (r(2)<0.66 and RPD<2). Thus, the results obtained in this study reflect that NIR reflectance spectroscopy could be used as a rapid, inexpensive and non-destructive technique to predict some physical, chemical and biochemical soil properties for Mediterranean soils, including variables related to the composition of the soil microbial community composition.

摘要

评估了近红外(NIR)反射光谱法预测西班牙东南部地中海土壤中各种物理、化学和生化特性的潜力。在三年(2003 - 2005年期间)内对13个地点进行采样,获取了393个土壤样本。由于土地利用、植被覆盖和特定气候条件的差异,这些样本具有广泛的土壤特性。生化特性还包括基于磷脂脂肪酸(PLFA)的微生物生物标志物。采用带有交叉验证的偏最小二乘法(PLS)回归来建立近红外光谱与物理、化学和生化分析参考数据之间的关系。根据决定系数(r²)值以及验证集标准差与交叉验证均方根误差之比(RPD),对于土壤有机碳、凯氏氮、土壤湿度、阳离子交换容量、微生物生物量碳、基础土壤呼吸、酸性磷酸酶活性、β - 葡萄糖苷酶活性以及总细菌、革兰氏阳性细菌、放线菌、泡囊 - 丛枝菌根真菌和总PLFA生物量的PLFA生物标志物,预测结果被评估为优秀(r²>0.90且RPD>3)。对于可交换钙和镁、水溶性碳、持水量和脲酶活性,获得了良好的预测结果(0.81<r²<0.90且2.5<RPD<3)。原生动物和真菌的最终模型不够准确,无法令人满意地估计这些变量,仅允许进行近似预测(0.66<r²<0.80且2.0<RPD<2.5)。电导率、pH值、可交换磷和钠、代谢商以及革兰氏阴性细菌的预测效果较差(r²<0.66且RPD<2)。因此,本研究获得的结果表明,近红外反射光谱法可作为一种快速、廉价且无损的技术,用于预测地中海土壤的一些物理、化学和生化土壤特性,包括与土壤微生物群落组成相关的变量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef4a/3517214/38bcd2d7789d/nihms-57450-f0006.jpg

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