Eco-Toxicity of 2-Di Methylamino Ethylmethacrylate 2-DMAEM as a Commercial Kinetic Hydrate Inhibitor KHI

Virtue Urunwo Elechi, S. S. Ikiensikimama, J. Ajienka, O. Akaranta, O. Okon, D. Chris
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Abstract

Gas hydrates are known impediments to flow. Mitigation of gas hydrates in deep offshore with accessibility issues is by chemical injection. This paper considers the effect of 2-Di(methylamino) ethylmethacrylate (2-DMAEM) a kinetic gas hydrate inhibitor and a Local Inhibitor (LI) on Clarias gariepinus, a marine organism. The assessment was done using Random Complete Block Design (RCBD), a standard method of toxicity testing. Its effect was compared to that of a local Inhibitor (LI). The test carried out showed that at the end of the exposure period, 2-DMAEM caused 100% mortality in concentrations of 10 and 100ml/L and had significant differences in water parameters across the row as concentration increased. The LI caused 0% mortality in same concentration ranges and had no significant differences as concentrations increased across the row. 2-DMAEM should be discarded as an inhibitor given its inherent danger while LI should be harnessed and developed as gas hydrate inhibitor.
2-二甲氨基甲基丙烯酸乙酯2-DMAEM作为商业动态水合物抑制剂KHI的生态毒性
天然气水合物是已知的流动障碍。缓解深海天然气水合物的可达性问题是通过化学注入。本文研究了2-二(甲氨基)甲基丙烯酸乙酯(2-DMAEM)一种动态气体水合物抑制剂和一种局部抑制剂(LI)对海洋生物加里平Clarias gariepinus的影响。评估采用随机完全区组设计(RCBD),这是一种标准的毒性测试方法。并与局部抑制剂(LI)进行了比较。试验结果表明,在暴露期结束时,浓度为10和100ml/L的2-DMAEM造成100%的死亡率,并且随着浓度的增加,水体参数在行间存在显著差异。在相同的浓度范围内,LI的死亡率为0%,随浓度的增加无显著差异。考虑到2-DMAEM的固有危险,应该放弃作为抑制剂的作用,而LI应该作为天然气水合物抑制剂加以利用和开发。
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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