The potential of removing toxic elements from red sea water by using functionalised natural zeolite and synthetic zeolite

M. Elkarim, Saif Elmajed
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引用次数: 2

Abstract

In this study five types of natural Zeolites and synthetic zeolites were used .Three types of synthetic zeolites (K-fledspar, clay and trona) were synthezied by using local crude materials by certain ratios, and the natural zeolite which used were collected from different states of Sudan , also the column that was used for treating hard water was prepared for natural zeolite, synthetic zeolite. The sample of red sea water was collected from Segala area at eastern side the of Port Sudan city, This area is the main source of Red sea water to the desalination plant, which supply the city with drinking water , study was investigated to determine the concentration of heavy metals, such as (Cu, pb, Fe, Cd, Zn and Co) . The routine analysis was investigated to determine the other parameters of water.TDS concentration was determined by TDS meter. Concentration of heavy metals was measured by Atomic absorption. The synthetic zeolite and the natural zeolite which that were identified a long with XRD and IR. Also we were concentrated on remove the heavy metals from water during treatment process by synthetic zeolite and natural zeolite . Analysis results of elements in this study were analyzed, and the synthetic and natural zeolite were found to be better and Albite was found to be the best type in this study.
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功能化天然沸石和合成沸石去除红海水中有毒元素的潜力
本研究使用了5种天然沸石和合成沸石,用当地原料按一定比例合成了3种合成沸石(K-fledspar, clay, trona),所使用的天然沸石是从苏丹不同国家收集的,并为天然沸石、合成沸石制备了用于处理硬水的色谱柱。在苏丹港市东侧的Segala地区采集了红海水样本,该地区是为该市提供饮用水的海水淡化厂的主要红海水源,研究了该地区的重金属(Cu, pb, Fe, Cd, Zn和Co)的浓度。通过常规分析确定了水的其他参数。用TDS仪测定TDS浓度。采用原子吸收法测定重金属浓度。用XRD和IR对合成沸石和天然沸石进行了较长时间的鉴定。并对合成沸石和天然沸石在处理过程中对水中重金属的去除进行了研究。对本研究的元素分析结果进行了分析,发现合成沸石和天然沸石表现较好,其中钠长石是本研究的最佳类型。
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A New Family of Non-Standard Finite Difference Schemes for the Logistic Equations The potential of removing toxic elements from red sea water by using functionalised natural zeolite and synthetic zeolite Modelling catalyst regeneration in an industrial FCC unit Synthesis of zeolites and their applications as Ion exchange to remove water hardness On some models based on first order differential equations
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