...
首页> 外文期刊>Journal of Environmental Quality >Denitrification: An Important Pathway for Nitrous Oxide Production in Tropical Mangrove Sediments (Goa, India)
【24h】

Denitrification: An Important Pathway for Nitrous Oxide Production in Tropical Mangrove Sediments (Goa, India)

机译:反硝化:热带红树林沉积物中一氧化二氮生产的重要途径(印度果阿)

获取原文
获取原文并翻译 | 示例

摘要

Net nitrous oxide production and denitrification activity were measured in two mangrove ecosystems of Goa, India. The relatively pristine site Tuvem was compared to Divan which is prone to high nutrient input Stratified sampling at 2-cm intervals within the 0- to 10-cm depth range showed that N2O production at both the locations decreased with depth Elevated denitrification activity at Divar resulted in maximum production of up to 1 95 nmol N2O-N g(-1) h(-1) at 2 to 4 cm. which was three times higher than at Tuvem Detailed investigations to understand the nut or pathway contributing to N2O production performed at Tuvem showed that Incomplete denitrification was responsible for up to 43 to 93% of N2O production. Nitrous oxide production rates closely con elated to nitrite concentration (n = 15, = 0 47, p < 0 05) and denitrifier abundance (r = 0.55, p < 0 05), suggesting that nitrite utilization by microbial activity leads to N2O production Nitrous oxide production through nitrification was below detection, affirming that denitrification is the major pathway responsible for production of the greenhouse gas. Net N2O production in these mangrove systems are comparatively higher than those reported from other natural estuarine sediments and therefore warrant mitigation measures
机译:在印度果阿的两个红树林生态系统中测量了净一氧化二氮生产和反硝化活性。比较原始的Tuvem产区与Divan较容易发生的养分输入,在0至10厘米深度范围内以2厘米为间隔进行分层采样显示,两个位置的N2O产量均随深度降低而降低Divar的反硝化活性升高在2至4厘米时最多可产生1 95 nmol N2O-N g(-1)h(-1)的最大产量。这是Tuvem的三倍。了解Tuvem进行N2O产生的坚果或途径的详细调查表明,不完全反硝化作用占N2O产生的43%至93%。一氧化二氮的产生速率与亚硝酸盐浓度(n = 15,= 0 47,p <0 05)和反硝化剂丰度(r = 0.55,p <0 05)密切相关,这表明微生物活动对亚硝酸盐的利用导致N2O的产生通过硝化作用产生的氧化氮还没有被发现,这表明反硝化是造成温室气体产生的主要途径。这些红树林系统中的N2O净产量相对高于其他天然河口沉积物的产量,因此需要采取缓解措施

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号