Ecological condition of marine waters in the area of dredging operations of the kashagan field, Kazakhstan

A. Kanbetov, D. Kulbatyrov, O. S. Tulegenova, Y. Gilazhov, A. Shakhmanova, А. A. Abilgaziyeva
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Abstract

To determine the hydrophysical and hydrochemical parameters of sea water and their changes during dredging works in the north‐eastern part of the Caspian Sea along the Western Approach Route and near/inside block D, islands EPC‐2, EPC‐3, EPC‐4 and island A of the Kashagan field.Measurement of hydrophysical parameters: salinity, temperature, turbidity, dissolved oxygen concentration, electrical conductivity, pH of seawater was carried out using a portable multi‐parameter analyser "Horiba‐U53" directly in the water column. Water transparency was determined using a Secchi disc. The depth of the water layer was determined using a sounder. Hydrochemical investigations were carried out for seven parameters, with all components sampled in the near‐surface and benthic horizons. Water samples were taken using probes or bathometers: BM‐48, GR‐18 or their analogues.Hydrochemical analyses of seawater samples for: biogens (NO2, NO3, NH4, Ntotal, and Ptotal), synthetic surfactants, phenols, hydrocarbons including polyaromatic hydrocarbons (PAHS), heavy metals, chemical oxygen demand (COD) and biochemical oxygen demand (BOD5). These were carried out in laboratory conditions using analytical equipment according to scientifically accepted methods.The data obtained as a result of the research allow us to draw the following conclusion: changes in the amount of suspended sediment in sea water lead to changes in physical and chemical properties of water (increase in turbidity, disturbance of sediment composition and properties), changes in biotopes, deterioration of oxygen regime, optical properties of water and temperature regime.
哈萨克斯坦卡沙干油田疏浚作业区海洋水域的生态状况
使用便携式多参数分析仪 "Horiba-U53 "直接在水体中测量海水的水文物理参数:盐度、温度、浊度、溶解氧浓度、电导率和 pH 值。使用 Secchi 圆盘测定水体透明度。水层深度用测深仪测定。对七个参数进行了水化学调查,对近表层和底层的所有成分都进行了取样。水样使用探头或水浴计采集:海水样本的水化学分析包括:生物原(NO2、NO3、NH4、Ntotal 和 Ptotal)、合成表面活性剂、酚类、碳氢化合物(包括多芳烃)、重金属、化学需氧量(COD)和生化需氧量(BOD5)。根据研究获得的数据,我们可以得出以下结论:海水中悬浮沉积物数量的变化会导致水的物理和化学特性发生变化(浑浊度增加、沉积物成分和特性紊乱)、生物群落发生变化、氧气系统、水的光学特性和温度系统恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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