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In this paper, a proposal a chemical solvent to remove sulfur deposits within the tubes production of the wells that most suffer from this problem are done. Where the study was conducted on the referenced study about the characteristics and forms of sulfur in the nature, and explain the Scheme phasic of sulfur and required conditions for the deposition of elemental sulfur within the tubes production. And has been clarified the mechanism of deposition and the outline of a simplified process for the nuclei of molecules from supersaturation sulfur vapor. Has also been depend on the field data of the studied wells /Jbissah-223, Jbissah-220/ (taken from the daily operational reports and Historical Biography of the wells), to conducting laboratory experiments in order to compare the between used solvent at field (NaOH) and proposed solvent (tallow amine activated diethyl disulfides) in this study in terms of the melt the deposited sulfur within the tubes production. and as a result, the curves resulting from the comparison process was drawn and recommending the use of the proposed solvent in treatment the acid gas wells in Jbissah fields that suffer from this problem where this solvent is the most effective and economical.
Aluminum alloys have got extreme industrial importance since 19th century until now. They enter into several light and heavy industries. aluminum is hardened by impurity due to industrial application. In this study, aluminumcupper alloys (with 0.5 % Mg) were prepared, where cupper amount was added to aluminum in different percentages (2.5%,4%,4.5%) ,no overtaking degree of saturation 6% of the weight of cupper. After adding definite percentage of cupper to aluminum, the compounds are fusioned for complete blending, where cupper atoms diffuse into aluminum. Samples are infusioned by definite methods and circumstances. The prepared alloys were thermally treated during 8-30 hours for hardening. In this research we will concentrate on the influence of cupper content on hardening of aluminum and other basic conditions, which are needed to obtain higher hardness for aluminum alloys.
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