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生物质热解还原气对酸洗污泥的还原-磁选分离

Reduction-Magnetic Separation of Pickling Sludge by Biomass Pyrolysis Reducing Gas.

作者信息

Xu Yane, Shu Yuanfeng, Wang Yichao, Ren Xiaoling, Shu Xinqian, Zhang Xize, Song Huiyun, Zhou Huixin, Dai Lingwen, Wang Zhipu, Yuan Xiang, Zhao Hongyu

机构信息

School of Chemistry and Environmental Engineering, China University of Mining and Technology Beijing, Beijing 100083, China.

State Key Laboratory of Heavy Oil Processing, China University of Petroleum-Beijing at Karamay, Karamay 834000, China.

出版信息

ACS Omega. 2022 May 18;7(21):17963-17975. doi: 10.1021/acsomega.2c01122. eCollection 2022 May 31.

Abstract

The neutralization process of carbon steel pickling wastewater produces a large amount of steel hydrochloric acid pickling sludge (SHPS), and improper treatment of this sludge poses a serious threat to the environment. Considering that SHPS contains a large amount of iron oxide and given the huge demand for iron concentrate in China's ironmaking industry, refining iron oxide in SHPS into iron concentrate will have great environmental and economic benefits. This paper proposes a new method that uses biomass (corncob) to replace conventional coal-based reductants for the recovery of iron components in SHPS to simultaneously utilize two kinds of solid waste resources. Factors that affect the iron recovery rate and iron grade of SHPS, such as the reaction temperature, corncob dosage, residence time, and magnetic field strength, were studied using a fixed bed and a magnetic separator. These studies were combined with thermodynamic analysis, thermogravimetric analysis, X-ray diffraction, inductively coupled plasma-mass spectrometry, gas chromatography, etc. The results showed that when the reaction temperature was 680 °C, the corncob dosage was 5%, the residence time was 20 min, and the magnetic field strength was 200 mT, the recovery rate of iron reached 91.83%, and the iron grade of the recovered products was 67.72%, meeting the level I requirements in GB/T 32545-2016. Based on this result, a process involving SHPS reduction roasting with corncob pyrolysis reducing gas-magnetic separation was established to recover iron from SHPS. This process not only effectively utilizes the iron oxide in SHPS by converting it into iron concentrate powder for the ironmaking industry but also proves that the pyrolysis gas of corncob has good reduction ability.

摘要

碳钢酸洗废水的中和过程会产生大量的钢铁盐酸酸洗污泥(SHPS),而对这种污泥处理不当会对环境造成严重威胁。鉴于SHPS含有大量的氧化铁,且中国炼铁行业对铁精矿的需求量巨大,将SHPS中的氧化铁提炼成铁精矿将具有巨大的环境和经济效益。本文提出了一种新方法,即使用生物质(玉米芯)替代传统的煤基还原剂来回收SHPS中的铁成分,从而同时利用两种固体废弃物资源。采用固定床和磁选机研究了反应温度、玉米芯用量、停留时间和磁场强度等影响SHPS铁回收率和铁品位的因素。这些研究结合了热力学分析、热重分析、X射线衍射、电感耦合等离子体质谱、气相色谱等方法。结果表明,当反应温度为680℃、玉米芯用量为5%、停留时间为20min、磁场强度为200mT时,铁回收率达到91.83%,回收产物的铁品位为67.72%,满足GB/T 32545-2016中的一级要求。基于这一结果,建立了一种采用玉米芯热解还原气对SHPS进行还原焙烧-磁选的工艺来从SHPS中回收铁。该工艺不仅通过将SHPS中的氧化铁转化为铁精矿粉有效地应用于炼铁行业,还证明了玉米芯的热解气具有良好的还原能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2768/9161396/3dc3910dc409/ao2c01122_0002.jpg

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