纳拉扬甘杰市Shitalakka湿地的水质和居民对生态系统服务下降的看法

Mohammad Zahangeer Alam , Lynne Carpenter-Boggs , Abdur Rahman , Md. Manjurul Haque , Md. Ramiz Uddin Miah , M. Moniruzzaman , Md. Abdul Qayum , Hasan Muhammad Abdullah
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引用次数: 37

摘要

湿地生态系统服务提供社会效益。这些服务容易受到人类活动的影响。目前的研究关注湿地生态系统服务功能下降及其对水质参数的影响。研究发现,供应、调节、文化和支持服务的比例超过了生态系统服务,因此所研究湿地的商品和价值产生受到威胁。以生物需氧量(BOD)、化学需氧量(COD)、浊度、电导率、总溶解固形物(TDS)、溶解氧(DO)、重金属和盐类为水质指标。观察到许多显著的相关性,其中许多参数超过了监管限制。湿地中铅(Pb)含量为0.09 mg/L,远超安全限值(0.01 ~ 0.05 mg/L),浊度为21.12,对鱼类的生存影响过大。湿地水体pH与Cd呈极显著相关(p≤0.01),TDS与Cd呈极显著相关(p≤0.01;p≤0.05;p≤0.1)与电导率、Ca2+、BOD和DO相关。电导率随Ca2+浓度的升高而升高(p≤0.01)。COD与Pb、Cd和Cl−有显著差异(p≤0.1)。BOD随Ca2+浓度的增加而增加(p≤0.05)。持续监测水质指标(浊度、EC、pH、DO、TDS、COD、BOD、阳离子和阴离子)对改善湿地生态系统服务和群落可持续性至关重要。
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Water quality and resident perceptions of declining ecosystem services at Shitalakka wetland in Narayanganj city

Wetland ecosystem services provide social benefits. These services are vulnerable due to human activities. The present research concerns perceptions of declining wetland ecosystem services and their effects on water quality parameters. The percentages of provisioning, regulating, cultural and supporting services were found to overshadow ecosystem services, such that generation of goods and values in the studied wetlands are in jeopardy. Biological Oxygen Demand (BOD), Chemical Oxygen Demand (COD), turbidity, conductivity, Total Dissolved Solids (TDS), Dissolved Oxygen (DO), heavy metals and salts were measured as indicators of water quality. Many significant correlations were observed and many of these parameters exceeded regulatory limits. Lead (Pb) in wetland 0.09 mg/L far exceeded the safe limit (0.01–0.05 mg/L), while turbidity in wetland 21.12 was too high to sustain fish. Wetland water pH was significantly correlated (p  0.01) with Cd. TDS was found to have a significant (p  0.01; p  0.05; p  0.1) correlation with conductivity, Ca2+, BOD, and DO. The conductivity increased (p  0.01) with increasing Ca2+ concentrations. COD was significantly different (p  0.1) with Pb, Cd and Cl. BOD increased with increasing Ca2+ concentrations (p  0.05). Continuous monitoring of water quality indicators (turbidity, EC, pH, DO, TDS, COD, BOD, cations, and anions) is crucial for improving of wetland ecosystem services and sustainability of communities.

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