首页> 外文期刊>Agricultural Sciences >Dynamics of Soil N&span&H&/span&&sup&+&/sup&&sub style="margin-left:-10px;"&4&/sub&-N and N&span&O&/span&&sup&-&/sup&&sub style="margin-left:-4px;"&3&/sub&-N in Rubber Plantation in Wenchang, South China
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Dynamics of Soil N&span&H&/span&&sup&+&/sup&&sub style="margin-left:-10px;"&4&/sub&-N and N&span&O&/span&&sup&-&/sup&&sub style="margin-left:-4px;"&3&/sub&-N in Rubber Plantation in Wenchang, South China

机译:土壤氮素&LT动力学;跨度> H< /跨度>< SUP&GT + LT; / SUP>&副风格= QUOT;利润率左:-10px;"> 4℃; /子> -N和N;跨度& o& / spm& - & / sp,&& / sup&& sup&& / sup&& 3& 3& 3& 3& 3& 3。

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摘要

In this study, the dynamics of soil available nitrogen in rubber plantations was studied to provide a basis for the sustainable management of soil nutrients in rubber plantations. Soil samples were collected from 0 - 20 cm and 21 - 40 cm depth of rubber plantations in Wenchang area of Hainan Province to determine the soil ammonium nitrogen and nitrate nitrogen in March, June, September and December. The results showed that the total available nitrogen in the rubber plantation soil was mainly composed of nitrate nitrogen (>57%), and this nitrate nitrogen was always the absolute composition advantage in the total available nitrogen composition, and this composition advantage did not change with the change of soil depth. Nitrate and ammonium nitrogen in rubber plantation soil showed obvious seasonal variation characteristics in 0 - 20 cm soil layer and 21 - 40 cm soil depth. With the seasonal time change, the contents of soil nitrate and ammonium nitrogen increased first and then decreased. Summer and autumn were the most active periods of soil nitrate and ammonium nitrogen. There was a significant positive correlation between soil nitrate nitrogen content and ammonium nitrogen content (r = 0.6532**). Based on the correlat ion between soil ammonium nitrogen content and nitrate nitrogen content, the content of ammonium nitrogen in soil can be estimated according to the amount of soil nitrate nitrogen.
机译:在这项研究中,研究了橡胶种植园中土壤含量氮的动态,为橡胶种植园中土壤养分的可持续管理提供了基础。在海南省文昌地区的0-20厘米和21至40cm的橡胶园中收集土壤样品,在3月,6月,9月和12月在3月确定土壤氮和硝酸盐氮。结果表明,橡胶园土壤中的总可用氮主要由硝酸氮(> 57%)组成,并且该硝酸盐氮始终是可用氮组合物中的绝对组成优势,并且该组合物优势不会随着改变土壤深度的变化。橡胶种植园土壤中的硝酸铵和铵氮在0 - 20厘米的土层和21-40厘米的土壤深度中显示出明显的季节变化特性。通过季节性时间变化,首先增加土壤硝酸盐和氮氮的含量,然后减少。夏季和秋季是土壤硝酸盐最活跃的硝酸铵和氮气。土壤硝酸盐氮含量和氮含量(R = 0.6532 **)之间存在显着的正相关性。基于土壤氮含量和硝酸氮含量之间的相关离子,可以根据土壤硝酸盐氮的量估计土壤中氮氮的含量。

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