广州化工
廣州化工
엄주화공
GUANGZHOU CHEMICAL INDUSTRY AND TECHNOLOGY
2012年
17期
51-54,57
,共5页
李立%丁利群%马云飞%闫小武%孟利涛%王义民%孟昭福%刘燕
李立%丁利群%馬雲飛%閆小武%孟利濤%王義民%孟昭福%劉燕
리립%정리군%마운비%염소무%맹리도%왕의민%맹소복%류연
石灰-粉煤灰联用%含氟废水%工艺%正交试验
石灰-粉煤灰聯用%含氟廢水%工藝%正交試驗
석회-분매회련용%함불폐수%공예%정교시험
lime -fly ash spectrometry technology%fluoride wastewater%craft%orthogonal experiment
针对石灰-粉煤灰联用处理高浓度含氟废水工艺的研究。研究结果表明,石灰一级处理L25(56)正交实验确定的最佳条件为温度为10℃、石灰投加量0.15 g、反应时间为30 min、PAM(浓度1%)加入量为0.1 mL、pH为7.0,该条件对200~1000 mg/L浓度范围的含氟废水具有较好的适用性;粉煤灰二级处理L27(313)正交实验确定的最佳条件为温度为35℃、粉煤灰加入量6.0 g、吸附时间为90 min、pH为5.5;采用石灰-粉煤灰联用处理1000 mg/L含氟废水,出水氟离子浓度可低至4 mg/L。工艺材料价廉易得、工艺简单、对含氟废水浓度适应性较宽。
針對石灰-粉煤灰聯用處理高濃度含氟廢水工藝的研究。研究結果錶明,石灰一級處理L25(56)正交實驗確定的最佳條件為溫度為10℃、石灰投加量0.15 g、反應時間為30 min、PAM(濃度1%)加入量為0.1 mL、pH為7.0,該條件對200~1000 mg/L濃度範圍的含氟廢水具有較好的適用性;粉煤灰二級處理L27(313)正交實驗確定的最佳條件為溫度為35℃、粉煤灰加入量6.0 g、吸附時間為90 min、pH為5.5;採用石灰-粉煤灰聯用處理1000 mg/L含氟廢水,齣水氟離子濃度可低至4 mg/L。工藝材料價廉易得、工藝簡單、對含氟廢水濃度適應性較寬。
침대석회-분매회련용처리고농도함불폐수공예적연구。연구결과표명,석회일급처리L25(56)정교실험학정적최가조건위온도위10℃、석회투가량0.15 g、반응시간위30 min、PAM(농도1%)가입량위0.1 mL、pH위7.0,해조건대200~1000 mg/L농도범위적함불폐수구유교호적괄용성;분매회이급처리L27(313)정교실험학정적최가조건위온도위35℃、분매회가입량6.0 g、흡부시간위90 min、pH위5.5;채용석회-분매회련용처리1000 mg/L함불폐수,출수불리자농도가저지4 mg/L。공예재료개렴역득、공예간단、대함불폐수농도괄응성교관。
The craft of dealing high concentration containing fluorine wastewater in the treatment of lime - fly ash was researched. The result showed that lime as an adsorbent in the first precipitation phase L25 (56) orthogonal experiment the optimal combination for the temperature 10℃, lime addition amount 0. 15 g, reaction time 30 min, PAM (mass fraction of 1% ) addition 0. 1 mL, pH 7.0, the removal of fluoride ions in wastewater is better applicability that can be achieved to for wastewater containing 200 - 1000 mg/L fluoride ions. Fly ash as the secondary precipitation phase L27 (3 ^13) , the optimal orthogonal experimental conditions were the temperature 35 ℃, fly ash addition amount 6.0 g, adsorption time 90 min, and pH 5.5. Lime -fly ash spectrometry technologyapplied in the treatment of 1000 mg/L fluoride wastewater, the effluent fluoride concentration was below 4 mg/L. The material in craft was cheap, and the craft was simple technology and concentration of waste water containing fluorine adaptability was wide.