苏南水稻土好氧与淹没条件下有机碳矿化差异

Rui-jun HAO , Zhong-pei LI , Yu-ping CHE
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引用次数: 7

摘要

水分状况对土壤有机碳的矿化起着至关重要的作用。采用室内培养试验研究了江苏常熟典型水稻土有机碳矿化动态。还研究了好氧和淹水条件下水稻土有机碳矿化的差异。结果表明:不同水分条件下有机碳日矿化量在整个培养期内存在显著差异,培养初期好氧条件下矿化量迅速下降,浸水条件下矿化量迅速上升,培养10 d后两者均保持不变。有机碳矿化差异主要出现在孵育初期,随着孵育时间的延长,差异逐渐减小。因此,在孵育后期,差异无显著性差异。好氧条件下土壤有机碳的呼吸强度、日矿化量和累积矿化量分别是淹没条件下的2.26 ~ 19.11倍、0.96 ~ 2.41倍和0.96 ~ 2.41倍。统计分析表明,微生物生物量碳和氮含量越高,好氧条件和淹没条件下呼吸强度差异越显著;微生物生物量氮和溶解有机碳含量越高,两种条件下土壤有机碳日矿化差异越显著。潜水条件下土壤微生物活性的降低是导致呼吸强度降低的主要原因,但有机碳矿化的降低也与整个孵化期内溶解有机碳的变化有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differences in Organic C Mineralization Between Aerobic and Submerged Conditions in Paddy Soils of Southern Jiangsu Province, China

Moisture regime plays a crucial role in the mineralization of soil organic carbon (SOC). In this paper, the dynamics of SOC mineralization in typical paddy soils of Changshu, Jiangsu Province, China, was investigated by incubation test in laboratory. The differences in SOC mineralization under aerobic and submerged conditions of paddy soils were also studied. Results showed that the daily mineralization of SOC under different moisture regimes was significantly different in the whole incubation period, at the beginning of the incubation, it decreased quickly under aerobic condition, but increased rapidly under submerged condition, and both remained constant after 10 d of incubation. The differences in SOC mineralization were found to be mainly at the beginning period of the incubation and decreased along with the incubation time. Thus, the difference was not significantly different at the later incubation period. The respiration intensity, daily and cumulative mineralization of SOC under aerobic condition was 2.26–19.11, 0.96–2.41, and 0.96–2.41 times than those under submerged condition, respectively. Statistic analyses showed that the higher the contents of microbial biomass carbon and nitrogen, the more significant difference in respiration intensity between aerobic and submerged conditions, but the higher the contents of microbial biomass nitrogen and dissolved organic carbon, the more significant difference in daily mineralization of SOC between the two conditions. The decrease in soil microbial activity under submerged condition was the main reason leading to the decrease in respiration intensity, but the decrease in SOC mineralization was also correlated with the changes in dissolved organic carbon over the whole incubation period.

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来源期刊
Agricultural Sciences in China
Agricultural Sciences in China AGRICULTURE, MULTIDISCIPLINARY-
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