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通过 Fenton 氧化深度脱水炼油厂含油污泥及其对油相升级的潜在影响。

Deep dewatering of refinery oily sludge by Fenton oxidation and its potential influence on the upgrading of oil phase.

机构信息

School of Energy Science and Engineering, Central South University, Changsha, 410083, China.

出版信息

Environ Sci Pollut Res Int. 2023 Jul;30(31):76617-76630. doi: 10.1007/s11356-023-27773-w. Epub 2023 May 27.

Abstract

Highly efficient dewatering is essential to the reduction and reclamation disposal of oily sludge, which is a waste from the extraction, transportation, and refining of crude oil. How to effectively break the water/oil emulsion is a paramount challenge for dewatering of oily sludge. In this work, a Fenton oxidation approach was adopted for the dewatering of oily sludge. The results show that the oxidizing free radicals originated from Fenton agent effectively tailored the native petroleum hydrocarbon compounds into smaller organic molecules, hence destructing the colloidal structure of oily sludge and decreasing the viscosity as well. Meanwhile, the zeta potential of oily sludge was increased, implying the decrease of repulsive electrostatic force to realize easy coalescence of water droplets. Thus, the steric and electrostatic barriers which restrained the coalescence of dispersed water droplets in water/oil emulsion were removed. With these advantages, the Fenton oxidation approach derived the significant decrease of water content, in which 0.294 kg water was removed from per kilogram oily sludge under the optimal operation condition (i.e., pH value of 3, solid-liquid ratio of 1:10, Fe concentration of 0.4 g/L and HO/Fe ratio of 10:1, and reaction temperature of 50 °C). In addition, the quality of oil phase was upgraded after Fenton oxidation treatment accompanying with the degradation of native organic substances in oily sludge, and the heating value of oily sludge was increased from 8680 to 9260 kJ·kg, which would facilitate to the subsequent thermal conversion like pyrolysis or incineration. Such results demonstrate that the Fenton oxidation approach is efficient for the dewatering as well as the upgrading of oily sludge.

摘要

高效脱水对于减少和再利用含油污泥至关重要,含油污泥是从原油的开采、运输和精炼过程中产生的废物。如何有效地破坏水/油乳液是含油污泥脱水的主要挑战。在这项工作中,采用芬顿氧化法对含油污泥进行脱水。结果表明,芬顿试剂产生的氧化自由基有效地将天然石油碳氢化合物裁剪成更小的有机分子,从而破坏了含油污泥的胶体结构并降低了其粘度。同时,含油污泥的动电电位增加,意味着排斥静电力的减小,从而实现了水滴的易聚并。因此,去除了阻止水/油乳液中分散水滴聚并的空间和静电障碍。由于这些优点,芬顿氧化法显著降低了含油污泥的含水量,在最佳操作条件下(即 pH 值为 3、固液比为 1:10、Fe 浓度为 0.4 g/L 和 HO/Fe 比为 10:1、反应温度为 50°C),每公斤含油污泥可去除 0.294 公斤水。此外,芬顿氧化处理伴随着含油污泥中天然有机物质的降解,改善了油相的质量,使含油污泥的热值从 8680 增加到 9260 kJ·kg,这有利于后续的热转化,如热解或焚烧。这些结果表明,芬顿氧化法对含油污泥的脱水和升级都非常有效。

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