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Corrosion of nickel-chromium alloys, stainless steel and niobium at supercritical water oxidation conditions

机译:镍铬合金,不锈钢和铌在超临界水氧化条件下的腐蚀

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摘要

Results of immersion tests of UNS N06625 (alloy 625), UNS S31609 (alloy 316 L), Ni-20Cr alloy and Nb coupons exposed to oxygenated ammoniacal sulphate solution at supercritical water oxidation (SCWO) conditions are presented. The corrosion behavior of the alloy 316 L (UNS S31603) SCWO reactor tubing is also presented under the same conditions. Immersion coupons corroded at a rate not exceeding 40 mm yr~(-1) while the reactor tube itself corroded at a rate of between 160-1500 mm yr~(-1), depending on which length of the reactor is considered to have corroded. Morphological and chemical analysis of the oxides present on the coupon samples suggest that iron oxides, which had initially precipitated on the corroding alloy 316 tube surface, were removed by heat flux-driven fluid mechanical action and transported through the reactor where they deposited on the coupons. Niobium was resistant to corrosion at the tested conditions.
机译:给出了UNS N06625(合金625),UNS S31609(合金316 L),Ni-20Cr合金和Nb试件在超临界水氧化(SCWO)条件下暴露于氧化硫酸铵溶液中的浸入测试结果。 316 L(UNS S31603)SCWO合金反应器管道的腐蚀行为也在相同条件下呈现。浸入试片的腐蚀速率不超过40 mm yr〜(-1),而反应器管本身的腐蚀速率则介于160-1500 mm yr〜(-1)之间,具体取决于反应器的长度。对试样样品上存在的氧化物的形态和化学分析表明,最初沉淀在腐蚀合金316管表面上的氧化铁通过热通量驱动的流体机械作用被除去,并通过反应器运输,并沉积在试样上。铌在测试条件下耐腐蚀。

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