首页  |  本刊简介  |  编委会  |  投稿须知  |  订阅与联系  |  微信  |  出版道德声明  |  Ei收录本刊数据  |  封面
黄河口无机碳输运过程对pH异常增高现象的响应
摘要点击 2760  全文点击 1776  投稿时间:2006-08-09  修订日期:2006-11-11
查看HTML全文 查看全文  查看/发表评论  下载PDF阅读器
中文关键词  黄河口  pH  溶解无机碳  碳酸钙沉降作用
英文关键词  Yellow River estuary  pH  dissolved inorganic carbon  calcite precipitation
作者单位
张向上 中国海洋大学海洋环境与生态教育部重点实验室, 青岛266100 
张龙军 中国海洋大学海洋环境与生态教育部重点实验室, 青岛266100 
中文摘要
      为研究黄河无机碳的输运过程及有效入海通量,通过对2004年至2006年黄河口汛期和非汛期淡水-海水混合过程中无机碳参数、溶解氧饱和度、叶绿素和NH+4、 PO3-4的分析得出,黄河口低盐度区pH出现相对于淡水端异常增高现象,而恰在此区域DIC出现亏损现象,黄河口淡-咸水混合区域pH异常增高现象可以表征无机碳的沉降作用.淡咸水混合初期生物好氧呼吸作用的降低能够导致pCO2的迅速降低是造成低盐度区pH出现相对于淡水端异常增高现象的主要原因.根据河口溶解物质的保守混合模型,发现混合过程中ΔDIC与ΔTA是1∶1的关系,表明DIC出现亏损是由于HCO-3清除造成的,汛期和非汛期黄河口无机碳的沉降作用能够清除输入到河口DIC总量的10%,即黄河口每年可清除1.21×105 t河流输入的溶解无机碳,DIC的有效入海通量约为10.86×105 t,通过评估,黄河流域风化作用吸收的大气CO2量将有10%左右被河口无机碳沉降作用重新释放到大气中,而流域风化作用固定的CO2在河口将有2.24×105 t(以CO2计)重新释放到大气中.
英文摘要
      Dissolved inorganic carbon(DIC), pH, the partial pressure of CO2(pCO2), total alkalinity (TA), dissolved oxygen saturation(DO), chlorophyll a(Chl-a), and NH+4,PO3-4 were studied in mixing zone of Yellow River estuary from September 2004 to April 2006. The results indicate that pH value is higher than that of freshwater in low salinity area where DIC is non-conservative. NH+4,PO3-4 sharply decreasing indicates that biogenic respiration is possibly inhibited in early mixing of freshwater and seawater, then pCO2, which is derived from biogenic respiration, swiftly decrease and lead to CaCO3 precipitation in low salinity area, and the pH value will simultaneously increase in this area. Instant increasing pH value can be used as index of CaCO3 precipitation in Yellow River estuary. According to dissolved matter mixing model in estuary, the observation of 1∶1 removal of TA and DIC provides just evidence that DIC removal we observed in the field is a result of CaCO3 precipitation. The process can clean 10% (1.21×105 tons)DIC which is transported by freshwater both in dry and wet weathers, and the annually effective DIC flux to sea of Yellow River is 10.86×105 tons. Ten percent of CO2 (2.24×105 t) which is absorbed by chemical weathering process in drainage basin will release to atmosphere in Yellow River estuary.

您是第54232283位访客
主办单位:中国科学院生态环境研究中心 单位地址:北京市海淀区双清路18号
电话:010-62941102 邮编:100085 E-mail: hjkx@rcees.ac.cn
本系统由北京勤云科技发展有限公司设计  京ICP备05002858号-2