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Development of a New Borax-Based Formulation for the Removal of Pyrite Scales

机译:开发一种用于去除黄铁矿尺度的新型硼砂制剂

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In the oil and gas industry, pyrite forms one of the most hardened scales in reservoirs, which hinders the flow of fluids. Consequently, this leads to blockage of the downhole tubular, formation damage, and complete shutdown of production and operational processes. Herein, a new green formulation based on borax (K_(2)B_(4)O_(7)) is proposed for pyrite scale removal. The temperature effect, disk rotational speed, and borax concentration have been investigated using a rotating disk apparatus. Also, XPS and SEM–EDX analyses were conducted on the pyrite disk surface before and after the treatment with the green formulation. The new formulation showed the potential ability to dissolve pyrite without generating the toxic hydrogen sulfide (H_(2)S). The dissolution rate of the scale in the new formulation is increased by 16% compared to that in a previous green formulation composed of 20 wt %DTPA+9 wt % K_(2)CO_(3). Molecular modeling technique using DFT was used to study the solvation energies of Fe~(2+) and Fe~(3+). The latter had a higher solvation energy than the former, which confirmed that upon using the borax-based formulation to oxidize Fe~(2+) to Fe~(3+). It will aid the dissolution of pyrite scales. The new formulation achieved a corrosion rate that is 25 times lower than that of 15 wt % HCl, which is commercially used in treating scales. Finally, the proposed new formulation does not require the use of corrosion inhibitors; hence, it is expected to result in a more economical scale treatment method.
机译:在石油和天然气工业中,黄铁矿在储层中形成了最硬化的鳞片之一,阻碍了流体流动。因此,这导致阻塞井下管状,形成损坏,并完全关闭生产和运营过程。在此,提出了一种基于硼砂(K_(2)B_(4)O_(7))的新型绿色制剂,用于硫铁矿尺度去除。已经使用旋转盘装置研究了温度效应,磁盘转速和硼砂浓度。此外,在用绿色制剂处理之前和之后,在硫铁矿盘表面上进行XPS和SEM EDX分析。新配方显示出溶解黄铁矿而不产生毒性硫化氢的潜在能力(H_(2))。与20wt%DTPA + 9wt%K_(2)CO_(3)组成的先前的绿色制剂中,新配方中规模的溶出速率增加了16%。使用DFT的分子建模技术研究Fe〜(2+)和Fe〜(3+)的溶剂化能量。后者具有比前者更高的溶剂化能量,这证实了在使用基于硼砂的配方时氧化Fe〜(2+)至Fe〜(3+)。它将有助于溶解黄铁矿鳞片。新配方达到了比15wt%HCl低25倍的腐蚀速率,其商业上用于治疗尺度。最后,提出的新配方不需要使用腐蚀抑制剂;因此,预计将导致更经济的规模治疗方法。

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