Academy of Land Resource and Environment, Jiangxi Agricultural University, Nanchang 330045, China; Key laboratory of Poyang Lake Watershed Agricultural Resources and Ecology of Jiangxi Province, Nanchang 330045, China.
Academy of Land Resource and Environment, Jiangxi Agricultural University, Nanchang 330045, China; Key laboratory of Poyang Lake Watershed Agricultural Resources and Ecology of Jiangxi Province, Nanchang 330045, China.
Sci Total Environ. 2018 Jun 1;626:235-243. doi: 10.1016/j.scitotenv.2018.01.087. Epub 2018 Feb 19.
Revealing the spatio-temporal distribution of soil nitrogen (N) contributes to N management and prevention of N pollution. The objective of this work is to study the spatio-temporal distribution of soil N and their driving factors in the topsoil (0-20 cm) of farmland in Yugan county, China in 1982 and 2012. Data were collected from 200 sampling sites of the second national soil survey in Yugan in 1982 and 423 sampling sites of the soil testing and formula fertilization project in 2012. On average total N (TN) and available N (AN) significantly increased from 1.50 g kg and 153.04 mg kg in 1982 to 1.58 g kg and 179.75 mg kg in 2012, respectively. The distance of spatial autocorrelation for TN increased from 2.79 to 6.18 km and from 2.97 to 18.00 km for AN from 1982 to 2012. The nugget/sill ratio for TN (0.472 in 1982 and 0.581 in 2012) indicated that soil TN driving by natural characteristics in 1982 to human activities in 2012. The nugget/sill ratio for soil AN (0.471 in 1982 and 0.688 in 2012) indicated that soil AN is more influenced by human activities. The major factors driving the spatio-temporal distribution of soil N was N application rate. To promote the sustainable development of agriculture and eco-environment, we should improve the awareness of farmers on chemical fertilizers (particularly N) and the level of N fertilizer management, increase the use of manure and organic fertilizer and facilitate rational fertilization by farmers.
揭示土壤氮(N)的时空分布有助于进行 N 管理和预防 N 污染。本研究旨在研究中国余江县农田表土(0-20cm)中土壤 N 的时空分布及其驱动因素,研究数据来源于 1982 年余江县第二次全国土壤普查的 200 个采样点和 2012 年测土配方施肥项目的 423 个采样点。平均而言,总氮(TN)和有效氮(AN)分别从 1982 年的 1.50g/kg 和 153.04mg/kg 显著增加到 2012 年的 1.58g/kg 和 179.75mg/kg。TN 的空间自相关距离从 1982 年的 2.79km 增加到 2012 年的 6.18km,AN 的空间自相关距离从 1982 年的 2.97km 增加到 2012 年的 18.00km。TN 的 nugget/sill 比(1982 年为 0.472,2012 年为 0.581)表明,1982 年土壤 TN 主要受自然特征驱动,而 2012 年则主要受人类活动驱动。AN 的 nugget/sill 比(1982 年为 0.471,2012 年为 0.688)表明,土壤 AN 受人类活动的影响更大。驱动土壤 N 时空分布的主要因素是氮肥施用量。为促进农业和生态环境的可持续发展,应提高农民对化肥(特别是 N)的认识和氮肥管理水平,增加有机肥和农家肥的使用,促进农民合理施肥。