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垃圾倾倒对印度东北部阿萨姆邦迪波湖(拉姆萨尔湿地)地表水水质及水生昆虫多样性的影响

Impact of waste dump on surface water quality and aquatic insect diversity of Deepor Beel (Ramsar site), Assam, North-east India.

作者信息

Choudhury Dharitri, Gupta Susmita

机构信息

Department of Ecology & Environmental Science, Assam University, Silchar, 788011, India.

出版信息

Environ Monit Assess. 2017 Oct 6;189(11):540. doi: 10.1007/s10661-017-6233-7.

Abstract

Water and aquatic insects were collected seasonally from site 1, the low-lying area of the dump near Deepor Beel, and from sites 2 and 3 of the main wetland and analysed. While dissolved oxygen (DO) increased from site 1 to site 3 in each season, electrical conductivity (EC), total dissolved solid (TDS), total alkalinity (TA) and free CO (F-CO) decreased. Pb and Cd were found to exceed the limits set for drinking water in all the sites and seasons. Species richness (SpR) was found highest (23) at site 2 and lowest (14) at site 1. Sensitive species was absent. The Shannon (H') values at site 1 were < 1 while at sites 2 and 3 were > 1 in most of the seasons. Biological monitoring scores (Biological Monitoring Working Party and Stream Invertebrate Grade Number-Average Level) in different sites and seasons inferred severely poor to moderate water quality. At site 1, significant negative correlations were seen for Pb and Cr with SpR while Ni and Cu with insect density (ID). At site 2, TA had highly significant positive correlations with SpR and ID while Cu showed negative correlation with SpR. At site 3, ID had significant negative relationships with air temperature, water temperature, depth, TA, F-CO, PO and Cr. Canonical correspondence analysis triplot has clearly separated site 1 associated with tolerant species and highly influenced by TA, TDS, EC, F-CO Cr, Ni, Cd and Zn confirming high anthropogenic activities on that site. Tolerant and semitolerant species were present at site 2 (influenced by depth and transparency) and site 3 (influenced by Pb and WT) both. Results of this study discerned that the dump site is the point source of pollution.

摘要

季节性地从第1个采样点(迪普奥湖附近垃圾场的低洼区域)、主要湿地的第2和第3个采样点采集水和水生昆虫样本并进行分析。虽然每个季节的溶解氧(DO)从第1个采样点到第3个采样点呈上升趋势,但电导率(EC)、总溶解固体(TDS)、总碱度(TA)和游离二氧化碳(F-CO)则呈下降趋势。在所有采样点和季节中,均发现铅(Pb)和镉(Cd)超过了饮用水设定的限值。物种丰富度(SpR)在第2个采样点最高(23种),在第1个采样点最低(14种)。未发现敏感物种。在大多数季节中,第1个采样点的香农指数(H')值<1,而第2和第3个采样点的香农指数值>1。不同采样点和季节的生物监测评分(生物监测工作组和河流无脊椎动物等级数量 - 平均水平)表明水质从极差到中等不等。在第1个采样点,铅和铬与物种丰富度呈显著负相关,而镍和铜与昆虫密度(ID)呈负相关。在第2个采样点,总碱度与物种丰富度和昆虫密度呈极显著正相关,而铜与物种丰富度呈负相关。在第3个采样点,昆虫密度与气温、水温、深度、总碱度、游离二氧化碳、磷酸盐(PO)和铬呈显著负相关。典范对应分析三线图清楚地将与耐污物种相关且受总碱度、总溶解固体、电导率、游离二氧化碳、铬、镍、镉和锌高度影响的第1个采样点区分开来,证实该采样点存在高度人为活动。耐污和半耐污物种在第2个采样点(受深度和透明度影响)和第3个采样点(受铅和水温影响)均有出现。本研究结果表明垃圾场是污染的点源。

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