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1.
考察了Mg(OH)_2辅助碱性介质对磷酸铵镁降解的媒介作用,解析了磷酸铵镁热解动力学过程。Mg(OH)_2碱促热解为3步降解过程,5 K/min时,其最大吸热峰为390 K;Mg(OH)_2碱促热解动力学降解模型符合自催化降速模型,存在2种以上的降解途径;氨基剥离所需活化能在34.4~112.9 k J/mol之间,Mg(OH)_2碱促热解动力学方程为:f(α)=k_0(1-α)~n,线性相关系数为0.994,反应级数为6.12。  相似文献   

2.
胡怡  宋永会  钱锋 《环境工程学报》2012,6(9):3019-3024
以赤泥为晶种,研究不同工艺条件对磷酸铵镁(MAP)结晶法回收模拟废水中磷的影响。结果表明,在投加赤泥(60~80目)8 g/L,搅拌速度为180 r/min,搅拌时间30 min,沉淀时间30 min,N∶Mg∶P=1∶1∶1的条件下磷酸根离子的回收率随初始磷酸盐浓度的增加而增大,在初始磷酸盐浓度小于90 mg/L时增幅较大,初始磷酸盐浓度大于90 mg/L后增幅减小;pH值对磷酸根离子的回收率影响显著,结合铵根离子、镁离子的回收率变化,pH值为9.5时最优;磷酸根离子的回收率随着Mg∶P摩尔比和N∶P摩尔比增大而呈上升趋势,当Mg∶P摩尔比为1.4∶1、N∶P摩尔比为4∶1时,磷酸盐的回收率可达97.9%。运用扫描电子显微镜(SEM)、X射线能谱仪(EDS)和X射线衍射仪(XRD)对最优工艺条件下的结晶产物进行了表征,表明磷主要以磷酸铵镁形态回收。  相似文献   

3.
磷酸铵镁沉淀法回收尿液中N和P的实验研究   总被引:1,自引:0,他引:1  
以源分离尿液为研究对象,在氨氮含量为2 850 mg N/L的微稀释尿液中,投加MgCl2·6H2O和Na2HPO4·12H2O,以磷酸铵镁沉淀法回收N和P。通过正交实验确定影响磷酸铵镁沉淀反应的因素依次为: pH值、PO3-4∶NH+4、Mg2+∶NH+4、温度。在搅拌速度=100 r/min、反应温度=15℃、反应时间=10 min的条件下,实验分别考察了pH值、PO3-4投加量、Mg2+投加量对磷酸铵镁沉淀法去除N、P的影响,结果表明最佳工艺条件为pH=9.5,Mg2+∶NH+4∶PO3-4=1.3∶1.0∶1.0。最佳工艺条件下尿液中的NH+4-N可从2 850 mg/L降低到约125 mg/L;剩余磷酸盐浓度约7 mg/L。SEM及XRD分析表明,沉淀物的主要成分为呈斜方晶系的磷酸铵镁晶体。  相似文献   

4.
磷酸铵镁沉淀法去除垃圾渗滤液中氨氮的实验研究   总被引:2,自引:0,他引:2  
叙述了磷酸铵镁沉淀法(MAP法)去除垃圾渗滤液中氨氮的基本原理,分析了MAP法对氨氮的去除效果及其产物中的重金属含量,对比了不同的镁盐及不同的反应时间对氨氮的去除效率.结果表明,该方法对氨氮的去除效率高,产物中重金属的含量低.同时,选择MgO比选择MgCl2具有更好的氨氮去除综合优势,理想的氨氮去除条件为pH=9.5,Mg:N:P=1:1:1.  相似文献   

5.
对赤泥的理化性质进行了分析,探索了以赤泥为晶种磷酸铵镁(MAP)结晶法从模拟废水中回收磷工艺。结果表明,经过研磨的赤泥颗粒属无孔物质或者大孔物质;将赤泥溶于水时有碱液和离子溶出,赤泥的主要化学成分为Ca、Al、Si和Mg等元素。投加赤泥晶种有利于磷酸铵镁结晶的形成。在初始磷酸盐浓度为90 mg/L、N∶Mg∶P摩尔比为1∶1∶1、不调节pH值、搅拌时间30 min、搅拌速度180 r/min、沉淀时间30 min条件下,赤泥粒径为60~80目、投加量为8 g/L时,以赤泥作为晶种诱导磷酸铵镁结晶回收磷的效果最优。干燥晶种的使用次数对磷酸根离子的回收率影响不大。所得结晶产物是一种很好的缓释肥。  相似文献   

6.
磷酸铵镁沉淀法预处理垃圾渗滤液   总被引:1,自引:0,他引:1  
探讨了用磷酸铵镁沉淀法预处理垃圾渗滤液时,沉淀剂种类、pH值、物质摩尔配比和反应时间等因素对氨氮去除效果的影响。得出了处理氨氮浓度为2 677.34 mg/L的垃圾渗滤液时,在兼顾所用镁盐量尽量低和处理出水氨氮或磷酸盐的残留量都比较低的较佳实验条件为:沉淀剂种类为:MgSO4.7H2O和Na2HPO4.12H2O,反应时间为20 min,pH=9.5,n(Mg)∶n(P)∶n(N)=1.3∶1.15∶1.0。在较佳实验条件下,垃圾渗滤液的NH3-N去除率为97.05%,处理出水PO34--P含量为8.35 mg/L,NH3-N含量为75.86 mg/L。对所得沉淀物进行了成分分析和X-衍射光谱、扫描电镜表征,表明大部分沉淀物为磷酸铵镁物质。  相似文献   

7.
以养猪废水厌氧消化液为对象,通过批次实验比较曝气与投加Na OH 2种方式调节废水p H值对磷回收效率的影响,并进一步采用流化床反应器探讨Na OH调节条件下进水流量对氮磷回收的影响。实验结果表明:采用曝气可促使p H值在1 h内迅速升高至8.6;随着曝气时间不断延长,p H值缓慢增长,至12 h达9.1~9.2,此时正磷酸盐(PO3-4-P)回收率达87.25%。投加Na OH调节最佳p H值为9.5,PO3-4-P回收率为85.67%。容积为100 L的搅拌-上向流反应器实验结果表明,当进水流量分别为50、100和150 L/h,在100 L/h流量条件下达到最优,PO3-4-P回收率为80.22%。利用X射线衍射仪(XRD)和扫描电镜及能谱仪(SEM-EDS)对沉淀产物进行表征,可知沉淀产物中含有磷酸铵镁(MAP)和Ca CO3。  相似文献   

8.
氯代烃污染地下水在外加有机质(电子供体)进行强化还原脱氯时,存在有机质消耗快、pH持续降低等影响脱氯效率的问题。利用乳化油(EVO)与胶体氢氧化镁复配的方法,制备了一种兼具电子供体缓释性和OH-缓释性的双功能缓释剂EVO-Mg(OH)2;成功制备了不同EVO∶Mg(OH)2配比的EVO-Mg(OH)2试剂,并对其稳定性、分散性及粒径分布进行了研究;向模拟砂柱中注入不同体积的EVO-Mg(OH)2,考察试剂的迁移性能以及试剂注入对三氯乙烯(TCE)迁移的影响;开展了EVO-Mg(OH)2强化TCE还原脱氯摇瓶实验,考察了该试剂对脱氯效果的影响。结果表明:不同EVO∶Mg(OH)2配比的试剂稳定性及分散性良好,粒径无明显差异;EVO-Mg(OH)2可以有效地在多孔介质中迁移并实现部分滞留;注入量对EVO-Mg(OH)2的迁移性有一定的影响;EVO-Mg(OH)2可以促进TCE溶解和迁移从而减小EVO-Mg(OH)2和TCE之间的传质阻力;EVO-Mg(OH)2能够实现电子供体及OH-的双重缓释,有效促进脱氯微生物的生长,提高TCE的降解速率(k=0.128 d-1),同时抑制pH的降低(pH=7.5)。  相似文献   

9.
MAP法处理饲料级磷酸氢钙母液的研究   总被引:1,自引:0,他引:1  
邹宇  伍钧  杨刚  唐微 《环境工程学报》2008,2(9):1169-1172
运用 MAP(磷酸铵镁)法处理高浓度饲料级磷酸氢钙母液,研究了处理的最优反应条件并分析了最优条件下所得产物成分.结果表明,母液处理的最优反应条件为pH=9.5,n(NH4 ):n(PO43-)=1:1,反应时间 10 min,反应温度40℃以下.该条件下,当温度为40℃时,PO43-、Mg2 和Ca2 的去除率分别达到 98.46%、92.54%和98.48%,残留浓度分别为 15.91、70.25 和2.94 me/L.生成的沉淀产物中 P2O5、NH4 -N、CaO 和MgO 所占重量百分比分别为29.08%、6.07%、2.83%和 15.91%,所含 MAP 可作为肥料回收利用.  相似文献   

10.
利用白云石回收污泥厌氧消化液中的磷   总被引:4,自引:1,他引:3  
梅翔  杨旭  张涛  王欣  严伟  何珣  张怡  周宇翔 《环境工程学报》2012,6(11):3809-3816
为经济有效地从污泥厌氧消化液中回收磷,构建了以白云石提供钙镁源的磷回收方法,探讨了磷回收的工艺条件与效果。通过盐酸酸化厌氧消化液以降低其碳酸盐含量,同时利用白云石溶于冷稀盐酸的特性使其钙镁缓慢释放到酸化的厌氧消化液中形成第一步磷回收体系,考察体系酸化pH、白云石与厌氧消化液的固液比以及反应pH对白云石的钙镁释放和磷回收效果的影响;第一步磷回收后的上清液为第二步厌氧消化液磷回收提供钙镁源,研究投加钙磷摩尔比对磷回收效果的影响。实验结果表明,当固液比为5.0时,在酸化pH为4.0~4.5且酸化溶出时间为10 h以及反应pH为9.0的条件下,第一步磷回收产物以磷酸钙盐沉淀为主,厌氧消化液磷回收率及回收产物含磷率(以P2O5计)分别达到99.43%和38.49%;第一步磷回收后的上清液按一定的钙磷摩尔比投加到酸化后的厌氧消化液中进行第二步磷回收,当投加钙磷摩尔比为0.20时,在反应pH为9.0的条件下,回收产物同时含有磷酸钙盐和磷酸铵镁,厌氧消化液中氮、磷回收率分别达到13.19%和90.90%,回收产物氮、磷含量(以P2O5计)分别为0.26%和39.58%;经XRD、XRF、ICP及SEM等分析表征,2步磷回收的产物以磷酸钙盐和磷酸铵镁为主要成分,杂质少。研究表明,利用白云石为钙镁源,通过分别构建不同的磷回收体系可以分步从污泥厌氧消化液中经济有效地回收磷,且磷回收率和回收产物含磷率高。  相似文献   

11.
A combined approach of biological treatment, solids digestion and nutrient recovery was tested on dairy manure. A sequencing batch reactor (SBR) was operated in three modes, in order to optimize nutrient (nitrogen and phosphorus) removals. The highest average removal efficiencies of 91% for NH4-N, 59% for PO4-P and 80% for total chemical oxygen demand (COD) were achieved. Staining experiments suggested the coexistence of glycogen and phosphorus accumulating organisms. Anaerobic digestion of wasted bio-solids was able to produce a PO4-P concentration of 70 mgL-1 in the supernatant. A pilot-scale experiment, designed to recover phosphorus in the supernatant as struvite (magnesium ammonium phosphate), was able to remove 82% of soluble PO4-P.  相似文献   

12.
This paper presents strategies to reduce the risk of struvite deposition by controlling its location of formation. Two technical routes were investigated: (1) to fix the phosphate into the dewatered sludge cake, and (2) to remove phosphate from centrate or filtrate. Chemicals used include magnesium hydroxide [Mg(OH)2], both of reagent grade and reclaimed from a flue gas desulfurization system, magnesium chloride (MgCl2), calcium hydroxide [Ca(OH)2], ferric chloride (FeCl3) and aluminum sulfate [Al2(SO4)3]. Research results indicate that (1) for anaerobically well-digested sludge, Mg(OH)2 is effective in fixing phosphate into sludge cake and improving sludge dewaterability, and (2) adding Mg(OH)2 into a reactor, located between the sludge dewatering facilities and the centrate or filtrate discharge line, and using air for mixing and carbon dioxide stripping, proves feasible in reducing struvite deposition in centrate or filtrate discharge lines and can generate a potentially valuable plant fertilizer--struvite.  相似文献   

13.
Removal of nitrogen and phosphate from wastewater by addition of bittern   总被引:30,自引:0,他引:30  
Lee SI  Weon SY  Lee CW  Koopman B 《Chemosphere》2003,51(4):265-271
Removal of nitrogen and phosphate through crystallization of struvite (MgNH(4)PO(4).6H(2)O) has gained increasing interest. Since wastewaters tend to be low in magnesium relative to ammonia and phosphates, addition of this mineral is usually required to effect the struvite crystallization process. The present study evaluated the feasibility of using bittern, a byproduct of salt manufacture, as a low-cost source of magnesium ions. High reaction rates were observed; the extent of nitrogen and phosphorus removals did not change beyond 10 min. Phosphorus removals from pure solutions with bittern added were equivalent to those obtained with MgCl(2) or seawater. Nitrogen removals with bittern were somewhat lower than with the alternate Mg(2+) sources, however. Application of bittern to biologically treated wastewater from a swine farm achieved high phosphate removal, but ammonia removals were limited by imbalance in the nitrogen:phosphorus ratio.  相似文献   

14.
Kim EH  Lee DW  Hwang HK  Yim S 《Chemosphere》2006,63(2):192-201
A phosphorus crystallization process for recovering phosphates was developed using a completely mixed reactor and powdered converter slag as a seed crystal. This completely mixed phosphorus crystallization process achieved a stable and high phosphorus recovery: the average PO4-P removal efficiency during 200 d of operation was 87%, with a range of 70-98%. The apparent volume of the slag doubled due to crystal growth during the long-term phosphorus-removal experiments. The Ca2+ concentration, slag dosage, and temperature were found to govern the phosphorus recovery system for a given condition of pH and hydraulic retention time. The equations for the rate constant and reaction order were obtained by evaluating the model parameters. The model developed in this study was observed to successfully simulate the behavior of effluent PO4-P in a completely mixed phosphorus crystallization reactor over a wide variety of operating conditions of temperature, Ca2+ concentration, and influent PO4-P. Model investigations of design factors suggest that the completely mixed phosphorus crystallization process with influent PO4-P concentrations of less than 10 mg l(-1) could ensure effluent PO4-P concentrations of less than 0.5 and 1.0 mg l(-1) during summer and winter in Korea, respectively.  相似文献   

15.
To assess the effects of three types of Mg and P salt mixtures (potassium phosphate [K3PO4]/magnesium sulfate [MgSO4], potassium dihydrogen phosphate [K2HPO4]/MgSO4, KH2PO4/MgSO4) on the conservation of N and the biodegradation of organic materials in an aerobic food waste composting process, batch experiments were undertaken in four reactors (each with an effective volume of 30 L). The synthetic food waste was composted of potatoes, rice, carrots, leaves, meat, soybeans, and seed soil, and the ratio of C and N was 17:1. Runs R1-R3 were conducted with the addition of K3PO4/ MgSO4, K2HPO4/MgSO4, and KH2PO4/MgSO4 mixtures, respectively; run R0 was a blank performed without the addition of Mg and P salts. After composting for 25 days, the degrees of degradation of the organic materials in runs R0-R3 were 53.87, 62.58, 59.14, and 49.13%, respectively. X-ray diffraction indicated that struvite crystals were formed in runs R1-R3 but not in run R0; the gaseous ammonia nitrogen (NH3-N) losses in runs R0-R3 were 21.2, 32.8, 12.6, and 3.5% of the initial total N, respectively. Of the tested Mg/P salt mixtures, the K2HPO4/ MgSO4 system provided the best combination of conservation of N and biodegradation of organic materials in this food waste composting process.  相似文献   

16.
在分析高钙粉煤灰(HCFA)对模拟废水脱氮除磷特性的基础上,先后采用氧化镁烟气脱硫废渣(MFGDR)、烟气脱硫(硫酸镁)废水和HCFA综合处理酸洗磷化废水和垃圾渗滤液。当酸洗磷化废水和垃圾渗滤液混合废水的NH3-N浓度为1 135 mg·L-1、PO43--P浓度为2 766 mg·L-1时,通过调整氮磷比,经过吸附、化学沉淀反应等,将污染物吸附、转化为磷酸铵镁等,并进行固液分离,NH3-N和PO43-P的去除率分别可达到98%和99%,废水经处理可达到排放标准。不仅同步解决了热电固废、硫酸镁废水、酸洗磷化废水以及垃圾渗滤液的处理处置问题,还以废治废,降低了药剂成本,具有良好的应用前景。  相似文献   

17.
随着中国海水养殖业的迅猛发展,海水养殖废水排放量与日俱增,近海水域环境严重恶化。采用海水电池处理模拟海水养殖废水,以镁为电池负极,钛为电池正极。镁负极失去电子产生Mg2+,与废水中的NH4+、PO43-结合生成磷酸铵镁(MgNH4PO4·6H2O,MAP),将废水中的NH4+和PO43-去除。结果表明,当pH为9.5,氮磷配比为1:1.1时,氮的去除率可达85.34% ,磷的去除率可达98.46%。利用正交实验研究pH、初始氨氮浓度、氮磷比和COD4个因素对氮磷去除的影响,氨氮初始浓度、COD分别对氮、磷的去除影响最大。多个电池串联时,总输出电压是各电池电压之和。  相似文献   

18.
Enhanced biological phosphorus removal (EBPR) is based on poly-phosphate accumulating organisms' (PAOs) unique features of "luxury" phosphate uptake during aerobic conditions and phosphate release in anaerobic conditions. It is believed that poly-phosphate accumulation is accompanied by the uptake and accumulation of potassium ions (K+) and magnesium ions (Mg2+). The release of phosphate under anaerobic conditions is also accompanied by the release of both cations. The objective of this research was to evaluate the effect of pH and Mg2+ on the biological phosphate uptake and release behavior of activated sludge mixed liquor during aeration and sedimentation. Research results indicate that Mg2+, supplied either by magnesium chloride (MgCl2) or magnesium hydroxide [Mg(OH)2], stimulated phosphate uptake during the aeration period, while pH increase, caused by the application of Mg(OH)2, enhanced phosphate release during the sedimentation period. It is also noted in our experiments with MgCl2 that Mg2+ slightly inhibited anaerobic phosphate release.  相似文献   

19.
为探讨罐底油泥热解产物的高附加值利用途径,利用GC-MS、XRF、XRD、SEM-EDS等方法对罐底油泥热解产物进行了详细的性能分析.在此基础上,选择3种典型阴离子Cr(Ⅵ)、PO43-和F-和3种典型阳离子Cd2+、Pb2+和Cu2+进行了吸附去除实验.结果表明:罐底油泥热解得到的油品,其烷烃化合物含量高达50.91...  相似文献   

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