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通過磁化焙燒-磁選-酸浸從粗鈮精礦中富集鈮的試驗(yàn)研究礦物加工工程專業(yè)畢業(yè)設(shè)計(jì)畢業(yè)論(參考版)

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【正文】 . trioctylamine(TOA) and tribenzylamine (TBA). Processes based on ketones and TBP have been found acceptance in industrialscale operations. Synthesis of triazolo quinazolinone as condensed ring systems is of considerable interest because of the diverse range of their biological properties. The present work deals with the synthesis of multidentate heterocyclic nitrogen ligand. For this purpose, sulfate leach liquor was prepared from leaching a multiple oxides niobium bearing minerals obtained from KadaboraCentral Eastern of Egypt. 內(nèi)蒙古科技大學(xué)畢業(yè)論文 24 2 Experimental Synthesis of extractant The β diketone 1,3 cyclohexane dione was selected as starting material to prepare a heterocyclic nitrogen pound to be used as an extractant for niobium ions. A suspension of 1,3 cyclohexane dione was heated under reflux with dimethyl formamide dimethyl acetal(DMF DMA) for 3 h. After cooling to room temperature, the obtained enaminone was properly crystallized from hexane. Next, it reacted under reflux with aminotriazole in ethanol for 6 h followed by the addition of catalytic amount of pipredine. The residual solid was taken in ethanol and washed with distilled water. After filtration, recrystallization from DMF/water was done to afford the corresponding fused heterocyclic 8,9dihydro[1,2,4]triazolo[1,5a]quinazolin 6(7H)one symbolized by TQ. Characteristic of ore sample The ore sample used in this study was collected from a multiple oxide mineralization Kadabora Batholiths situated in the Eastern Desert of Egypt. It was ground to< 74 μm and was subjected to Xray diffraction analysis using Philips Xray diffractometer model PW 223/20 operated at 40 kV and 20 mA. It revealed the presence of multiple oxides refractory minerals. The elemental analysis was done using scanning electron microscope (CAM SCAN series 4 ISIS 200 E/X system with pentajet detector, University of Leeds, England). Table 1 summarizes the obtained minerals and the average elemental chemical position of different sample spots. Table 1 Mineralogical and elemental position of ore sample collected from Kadabora Batholiths in Eastern Desert of Egypt Mineralogical position Samarskite (ASTM card ) Fergusonite (ASTM card No. 9443) Betafite (ASTM card No. 8300) Pyrochlore (ASTM card ) Mass fraction of elemental position*/% 內(nèi)蒙古科技大學(xué)畢業(yè)論文 25 C O Na Al Si Ca Ti Fe Y Nb Ce Nd Ta U Recovery of niobium The ground ore sample (15 g) was mixed with 100mL sulfuric acid ( mol/L). The obtained slurry was agitated for 2 h at 150℃ and the insoluble residue left behind was separated by filtration. The chemical position of the obtained leach liquor is given in Table 2. Several batch solvent extraction experiments were done by using the synthesized anic multidentate extractant TQ dissolved in methylene chloride as diluent. The extraction step was followed by the stripping step in which equal volumes of the loaded extractant and the stripping agents (distilled water, mol/L HF or ) were shaken for 15 min to back extract niobium. The final step in the treatment is represented by precipitation of niobium from the strip solution using 33% ammonium hydroxide. The obtained final product was analyzed for its chemical position and purity by SEM . The determination of niobium concentration whether in the prepared leach liquors or in the aqueous raffinate solutions (after extraction) or else in the stripping solutions was performed by pyrogallol. The analysis was performed with a double beam UVVIS recording Shimadzu UV160A spectrophotometer Table 2 Some elements of interest posed (100 mL) ofsulfate leach liquor Element Nb Ta Ti Ce Y U Fe Concentration/(g 內(nèi)蒙古科技大學(xué)畢業(yè)論文 21 參考文獻(xiàn) 1. 張去非 .我國鈮資源開發(fā)利用的現(xiàn)狀及可行性 [J].中國礦業(yè), 2021,12(6):30— 33. 2. 劉永鵬 .鈮鐵礦固相合成及真空碳熱還原實(shí)驗(yàn)研究 [D].內(nèi)蒙 古科技大學(xué)學(xué)士學(xué)位 論文 . 3. 余永富 .陳泉源 .白云鄂博鈮選礦研究現(xiàn)狀及展望 [J].礦冶工程 , 1992. 4. 《白云鄂博礦礦冶工藝學(xué)》編輯委員會(huì) .白云鄂博礦冶工藝學(xué)礦山卷 [M].包頭鋼鐵公司 ,1994. 5. 李俐 .白云鄂博鐵礦礦產(chǎn)資源的現(xiàn)狀及其開發(fā)利用前景 [J].包鋼科技 ,2021,29(2):1— 3. 6. 吳占江 .白云鄂博礦區(qū)鈮礦特征述評 [J].礦山 ,1995, 7. 張去非 .白云鄂博礦床鈮資源礦物學(xué)基本特征的分析 [J].有色金屬 , 2021,57(2):111— 113. 8. 任俊、王文梅、盧壽慈 .鈮資源的綜合利用 [J].國外金屬 礦選礦 , 1998,28— 32. 9. 劉紹蕖 .國外鈮的應(yīng)用狀況 [J].礦業(yè)快報(bào) . 10. 姬俊梅 .包頭礦鈮礦物的綜合回收研究 [J].礦業(yè)快報(bào), 2021 11. 陳泉源 .余永富 .李養(yǎng)正 .豐于惠 .羅積揚(yáng) .白云鄂博中貧氧化礦鈮選礦新工藝研究 [J]. 12. 李英霞 .從包鋼強(qiáng)磁尾礦中回收稀土和鈮的研究 [J].廣州有色金屬學(xué)報(bào) ,1999,9(2):101— 105. 13. 葉志平 .孫興來 .李英霞 .強(qiáng)磁尾礦綜合回收稀土、鈮選礦工藝研究 [J].礦業(yè)快報(bào) . 14. 余永富 .陳泉源 .李養(yǎng)正 .白云鄂博中貧氧化礦磁選新工藝綜合回收鈮的研究 [J].礦冶工程 ,1992,12(1): 30— 35. 15. 陳泉源 .余永富 .白云鄂博主東礦中貧氧化礦鈮資源的特點(diǎn)及綜合回收 [J].礦冶工程, 1991,11(1):27— 31. 16. 陳泉源 .余永富 .磁浮聯(lián)合流程全面回收白云鄂博鐵、稀土、鈮及鈧合理性內(nèi)蒙古科技大學(xué)畢業(yè)論文 22 的探討 [J].礦冶工程 ,1992,12(1):45— 49. 17. 余永富 .白云鄂博礦稀土、鈮資源綜合利用研究意義重大 [J].專家視點(diǎn) ,2021,(8). 18. 張鑒 .白云鄂博共生礦選礦技術(shù)現(xiàn)狀與展望 [J].包鋼科技 , 2021, (4):3—5. 19. 段建軍 .姜立峰 .賈艷 .白云鄂博礦選鈮的工藝研究 [J].包鋼科技 , 2021,35:28— 31. 20. 方覺 .王志榮 .張家元 .張永光 .黃雁華 .李小剛 .包頭鈮鐵礦冶煉實(shí)驗(yàn)室研究[J].東北大學(xué)學(xué)報(bào) ,1996,17(1):35— 39. 21. 張家元 .方覺 .包頭鈮鐵礦冶煉實(shí)驗(yàn)研究 [J].湖南冶金 , 2021, 32(2): 7—10. 22. 屈曙光 .毛擁軍 .鐘祥 .低品位鈮精礦二步電爐熔煉 Nb— Fe 合金 [J].礦冶工程 ,1997,17(2):46— 49. 23. 陳宏 .韓其勇 .魏壽昆 .胡志高 .從含鈮鐵礦中提鈮及制鈮鐵的新方法 [J].鋼鐵 ,1999,34(3):13— 19. 24. 陳宏 .直接還原法在鈮提取上的應(yīng)用 [J].寶 鋼科技 ,1998,(5):26— 29. 25. 許時(shí) .礦石可選性研究(修訂版) [M].冶金工業(yè)出版社 ,1982,P172— 205. 26. 陳宏 .韓其勇 .胡志高 .吳雪平 .朱騰 .酸洗鈮精礦富鈮除磷的研究 [J].稀有金屬 ,1995,19(2):36— 37. 27. 謝廣元等 .選礦學(xué) [M].中國礦業(yè)大學(xué)出版社 ,2021. 28. 鐘竹前 .濕法冶金過程 [M].中南工業(yè)大學(xué)出版社 ,1988. 29. O. M. EL HUSSAINI Extraction of niobium from sulfate leach liquor of Egyptian ore sample by triazoloquinazolinone [J]. ScienceDirect, China 19(2021):474— 478. 內(nèi)蒙古科技大學(xué)畢業(yè)論文 23 附錄 Extraction of niobium from sulfate leach liquor of Egyptian ore sample by triazoloquinazolinone 1 Introduction In nature, niobium almost invariably occurs as plex oxide minerals in association with tantalum. The most mon geological occurrence of bot
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