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利用含镍污泥和赤泥固废资源提取镍铁研究 被引量:6
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作者 经文波 黄儒德 任佳龙 《中国有色冶金》 CAS 北大核心 2022年第6期18-23,共6页
针对目前含镍固废大量堆存及现有技术能耗高、成本高的问题,本文利用含铁赤泥黏性强的特性,将其与含镍污泥造球后,采用固态中高温直接还原-磨磁选工艺提取镍铁,并按照4因素3水平正交试验方法进行了最佳工艺参数试验,得出如下结论。将含... 针对目前含镍固废大量堆存及现有技术能耗高、成本高的问题,本文利用含铁赤泥黏性强的特性,将其与含镍污泥造球后,采用固态中高温直接还原-磨磁选工艺提取镍铁,并按照4因素3水平正交试验方法进行了最佳工艺参数试验,得出如下结论。将含铁赤泥与含镍污泥造球后协同还原提取镍铁的工艺可行,试验最佳工艺参数为配煤比4%、焙烧温度1 150℃、焙烧时间45 min、磨矿时间30 min;此条件下,提取的镍铁粉镍品位75.00%以上、镍铁品位93.00%以上,镍铁回收率达到80.00%以上,按镍铁95%品位校正后的经济指标为料成本475元/t以下、能耗712 kgce/t以下、CO_(2)排放0.99 t/t以下。试验中发现影响镍铁提取工艺料成本、能耗和CO_(2)排放的因素从强到弱为配煤比→焙烧温度→磨矿时间→焙烧时间。与现有含镍固废处理工艺相比,该工艺不仅在低能耗、低排放条件下实现了含镍污泥和含铁赤泥的镍铁提取利用,还减少了固废堆存,所生产的镍铁合金可以供给钢铁企业生产高附加值不锈钢,还原后剩余的氧化物主要成分为SiO_(2)、Al_(2)O_(3)、CaO和MgO,可用于生产水泥原料。 展开更多
关键词 含镍污泥 赤泥 焙烧还原 磁选 回收率 能耗 CO_(2)排放
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Characterization and recycling of nickel- and chromium-contained pickling sludge generated in production of stainless steel 被引量:13
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作者 李小明 谢庚 +2 位作者 HOJAMBERDIEV Mirabbos 崔雅茹 赵俊学 《Journal of Central South University》 SCIE EI CAS 2014年第8期3241-3246,共6页
Pickling sludge generated during the neutralization of pickling wastewater with calcium hydroxide in stainless steel pickling process was characterized using X-ray fluorescence spectrometry, X-ray diffractometry, scan... Pickling sludge generated during the neutralization of pickling wastewater with calcium hydroxide in stainless steel pickling process was characterized using X-ray fluorescence spectrometry, X-ray diffractometry, scanning electron microscopy, thermogravimetry and differential scanning calorimetry, etc. The major compositions of pickling sludge are CaF2, CaSO4, Me(OH), (M: Fe, Cr, Ni), and the content of CaF2 is high in the sludge. The melting point of pickling sludge is about 1350℃ and the viscosity is about 0.14 Pa.s at 1450 ℃, which are comparatively lower than those of normal refining slag. After heat treatment, the contents of sulfur and fluorine in the pickling sludge were reduced, confirming the thermal decomposition of sulfate in the sludge. Fluorine in the sludge is reduced by the gaseous SiF4 and A1F3 generated through the reactions of CaF2 with SiO2 and Al2O3. The preliminary results from the reduction test indicate that the sulfur content in the steel is not affected by the presence of sulfur in the sludge. The recovery of nickel is about 40%, and the chromium content changes marginally due to the protective atmosphere under the reduction condition of chromic oxide. The pickling sludge is a potential auxiliary material for the production of stainless steel. 展开更多
关键词 stainless steel pickling sludge CHARACTERIZATION RECYCLING SULFUR FLUORINE
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