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輕質(zhì)礦物多孔材料的制備及性能研究畢業(yè)論文(專業(yè)版)

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【正文】 梁老師嚴(yán)謹(jǐn)?shù)乃季S和豐富的知識(shí)給了我很大的啟發(fā)。通過粘結(jié)劑及造孔劑含量、焙燒溫度和保溫時(shí)間對(duì)輕質(zhì)礦物多孔材料表觀密度、壓碎力、吸水率及鹽酸溶解率等性能的影響,探討最佳原料配比和生產(chǎn)工藝,將輕質(zhì)礦物多孔材料作為曝氣池濾料,評(píng)價(jià)其水處理效果,得到以下結(jié)論: ( 1)輕質(zhì)礦物多孔材料的最佳原料配比與為:鐵尾礦:凹土:碳粉:碳酸鈣=5:::04,最佳制備工藝為在 550176。 適于水處 理的多孔材料特征 由于占地小效率高等優(yōu)點(diǎn),曝氣生物濾池被廣泛的應(yīng)用在工業(yè)水處理領(lǐng)域中。材料內(nèi)部空隙的增多會(huì)伴隨強(qiáng)度的下降,因此壓碎力由 下降至 。但當(dāng)溫度繼續(xù)升高后,液相含量增加較快,粘度下降,使部分氣體逸出,難以再在材料內(nèi)部形成氣孔,且在低溫階段河北工業(yè)大學(xué) 2020 屆本科畢業(yè)論文 28 由造孔劑產(chǎn)生的氣孔會(huì)隨著焙燒溫度的升高而閉合,因此樣品的表觀密度又再次上升。 由圖 中的鹽酸可溶率曲線可以看出, 在不同溫度下焙燒時(shí), 1 號(hào)樣品鹽酸可溶率勻小于 %。因此,輕質(zhì)礦物多孔材料中孔類型多樣,包括開孔、閉孔和通孔,且開孔與 通孔所占比例大于 50%。 ( 4)將具有粘結(jié)性與可塑性的泥料制成粒徑為 5~8mm 的小球。 樣品配方及編號(hào) Riley 提出,當(dāng)陶粒原料的成分處于特定范圍內(nèi)時(shí),在合適的溫度下,陶粒會(huì)具有良好的燒脹性,能形成孔隙率較高,質(zhì)量較輕的材料。而決定材料膨脹性的主要因素是原料的種類和用量,這對(duì)制備的輕質(zhì)礦物多孔材料的性能有著至關(guān)重要的影響。 ② 用 1+1 鹽酸( 1 體積分析純鹽酸和 1 體積水混合)將樣品浸漬。 ( 3)熱重 差熱分析 采用美國 PerkinElmer 公司生產(chǎn)的 DIAMOD 熱重 差熱聯(lián)用儀對(duì) 碳粉進(jìn)行熱重 差熱分析,用以確定造孔劑分解溫度。 汪順才、袁榮灼 [19]等以鉛鋅礦浮選尾礦為原料,水玻璃和木質(zhì)素作為添加劑,經(jīng)造粒、干燥、焙燒、冷卻制備出用于污水處理的輕質(zhì)礦物多孔材 料,并用其對(duì)選礦廢水進(jìn)行了吸附處理實(shí)驗(yàn)研究。該工藝通過調(diào)節(jié)造孔劑種類和粒徑可以控制多孔材料的孔隙率和孔徑,一般孔隙率低于 50%,且孔的分布均勻性差。C 到 1000176。 關(guān)鍵詞: 鐵尾礦 礦物 多孔材料 表觀密度 水處理 河北工業(yè)大學(xué) 2020 屆本科畢業(yè)論文 3 畢業(yè)設(shè)計(jì)(論文)外文摘要 Title Study on Preparation and properties of lightweight porous materials of mineral Abstract The lightweight porous materials was prepared which used iron tailings as the main material, attapulgite as binder, carbon powder as poreforming agent, calcium carbonate as fluxing agent. The best ratio of raw materials and production processes were explored by changing the content of binder , sintering temperature and holding time. The lightweight porous materials were used as biomedium in biological aerated filter and effect of water treatment was evaluated. The results show that : lightweight porous mineral materials can be successfully prepared by sintering temperature at 550℃ , holding 15 minutes , then at 1130℃ holding 30 minutes,which the ratio of icon tailings, palygorskite, toner, and calcium carbonate were 5: : : . The apparent density of lightweight porous materials was g/cm3,crushing force was , water absorption rate was %, and the dissolution rate by hydrochloric acid was %. The BAF reactor with the lightweight porous materials serving as the biomedium achieved high removal efficiencies for 85% of COD. The lightweight porous material has good wastewater treatment effect. Keywords: Iron tailings Mineral Porous materials Apparent density Water treatment 河北工業(yè)大學(xué) 2020 屆本科畢業(yè)論文 4 目 錄 1 緒論 .................................................................................................................................... 6 引言 .......................................................................................................................... 6 鐵尾礦綜合利用 ...................................................................................................... 6 生產(chǎn)建筑材料 ................................................................................................ 7 貴金屬的回收 ................................................................................................ 7 工業(yè)水處理 .................................................................................................... 7 礦物多孔材料研究進(jìn)展 .......................................................................................... 7 礦物多孔材料 ................................................................................................ 7 礦物多孔材料的制備方法 ............................................................................. 8 研究內(nèi)容及意義 ...................................................................................................... 9 2 實(shí)驗(yàn) .................................................................................................................................. 11 實(shí)驗(yàn)原料 ................................................................................................................ 11 實(shí)驗(yàn)儀器 ................................................................................................................ 11 實(shí)驗(yàn)方法 ................................................................................................................ 12 輕質(zhì)礦物多孔材料水處理實(shí)驗(yàn) ............................................................................ 13 3 輕質(zhì)礦物多孔材料的制備及性能 .................................................................................. 15 原料的優(yōu)選 ............................................................................................................ 15 原料組分及作用 .......................................................................................... 15 樣品配方及編號(hào) .......................................................................................... 16 輕質(zhì)礦物多孔材料的制備工藝 ............................................................................ 17 輕質(zhì)礦物多孔材料的性能 .................................................................................... 19 輕質(zhì)礦物多孔材料的礦物組成 ................................................................... 19 輕質(zhì)礦物多孔材料的宏觀及微觀形貌 ....................................................... 20 輕質(zhì)礦物多孔材料的理化性質(zhì) ................................................................... 22 影響輕質(zhì)礦物多孔材料的性能的因素分析 ........................................................ 23 粘結(jié)劑種類對(duì)輕質(zhì)礦物多孔材料性能的影響 .......................................... 23 粘結(jié)劑加入量對(duì)輕質(zhì)礦物多孔材料性能的影響 ...................................... 24 焙燒溫度對(duì)輕質(zhì)礦物多孔材料性能的影響 .............................................. 26 保溫時(shí)間對(duì)輕質(zhì)礦物多孔材料性能的影響 .............................................. 28 造孔劑對(duì)輕質(zhì)礦物多孔 材料性能的影響 .................................................. 30 4 輕質(zhì)礦物多孔材料的
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