首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Spatio-temporal variations in total carbon content in contaminated surface waters at East Kolkata Wetland Ecosystem, a Ramsar Site
【24h】

Spatio-temporal variations in total carbon content in contaminated surface waters at East Kolkata Wetland Ecosystem, a Ramsar Site

机译:东科科塔湿地生态系统的污染表面水域总碳含量的时空变化,拉姆达尔网站

获取原文
获取原文并翻译 | 示例
           

摘要

Everyday nearly 1.1 million m(3) d(-1) composite wastewaters from different source points, both municipal and industrial, pass through the East Kolkata Wetlands (EKW) via a web of canals which is productively used as irrigation water and in pisciculture. These composite wastewaters carry huge amount of total organic carbon (TOC) and total inorganic carbon (TIC), which have profound effect on wetland biogeochemistry and point out wetland carbon sequestration potential. However, at EKW (Ramsar Site; Group A; Criterion 1), which has been designated as a unique waste dependent resource recovery ecosystem for the past several decades, no comprehensive work has been done on the ecosystem service with special reference to carbon sequestration. Therefore, the aim of the present investigation is to estimate the TOC and TIC contents in composite wastewater and wastewater-fed fish ponds at EKW ecosystem at spatio-temporal scales. Different physico-chemical factors of these waters are also estimated in the same scales to record their influence on TOC and TIC contents in EKW. ANOVA results point out significant spatial and temporal variations of TOC and TIC besides other physicochemical factors. Most of the measured factors including TOC and TIC contents are higher during pre-monsoon than in monsoon and post-monsoon periods. It is apparent from the correlation matrix that there are significant positive correlation between TOC and TIC and factors like TSS, TDS, conductivity, salinity, total hardness, F, Cl, SO4, Na, K, Ca and Mg. Principle component analysis (PCA) also suggests the significant influence of these physico-chemical factors that changed seasonally. Despite the mean level of TOC (348.05 +/- 154.98 mg L-1) in composite wastewaters at the EKW areas are higher than the USEPA safe limit (2-4 mg L-1), a significant amount of carbon is sequestered in the wetland ecosystem. Between source point and final discharge site nearly 63% of carbon of TOC and 71% carbon of TIC in wastewater have been reduced. Interestingly, comparable level of reductions, i.e., 61% for TOC and 62% for TIC have also been noted between the source point and the wastewater-fed fish ponds. Efficient partitioning of carbon in bottom sediments and in aquatic biota has been possible for the quintessential flow-rate of wastewater in the carrying canals, long residence time in the wastewater-fed fish ponds and repeated use of wastewater in irrigating agricultural fields at the EKW ecosystem.
机译:来自不同来源点的日常生活近110万米(3)D(-1)综合废水,兼各项源点,经由东康多兰湿地(EKW)通过一系列运河,经济用作灌溉水和养殖。这些复合废水器携带大量的总有机碳(TOC)和总无机碳(TIC),对湿地生物化学进行了深远的影响,并指出湿地碳封存潜力。然而,在EKW(Ramsar Site; A组;标准1),这已被指定为过去几十年的独特的废物依赖资源恢复生态系统,但在生态系统服务中没有特别参考碳封存。因此,本调查的目的是在时空尺度下估算复合废水和富含欧洲生态系统的复合废水和废水饲料池塘中的TOC含量。这些水域的不同物理化学因素也估计了相同的规模,以记录其对EKW中的TOC和TIC含量的影响。 ANOVA结果在其他物理化学因素中指出了TOC和TIC的显着空间和时间变化。在季风前季度和季风后含量的大多数测量因子均高于季风和季风后期。从相关矩阵显而易见的是,TOC和TIC之间存在显着的阳性相关性以及TSS,TDS,电导率,盐度,总硬度,F,Cl,SO4,Na,K,Ca和Mg等因素。原理成分分析(PCA)还表明这些物理化学因素的重大影响变化了季节性。尽管在EKW地区的复合废水器中的TOC(348.05 +/-154.98 mg L-1)的平均水平高于USEPA安全限制(2-4mg L-1),但在含有大量的碳中被隔离湿地生态系统。在源点和最终排放场所之间的源点和最终排放部位之间的额为63%的TOC碳和71%的废水中的TIC碳的碳含量已经降低。有趣的是,在源点和废水喂养的鱼塘之间也已经注意到TOC和TIC的61%的相当的减少水平,即61%。有效分配底部沉积物和水生生物群的碳水速率在废水中的废水中的典型流动速率,在废水喂养的鱼塘的长期停留时间,并在EKW生态系统中重复使用废水灌溉农业领域。

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