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71.
药渣生物炭基质联合麦饭石对土壤-黑麦草体系的调控与机制 总被引:1,自引:1,他引:0
以板蓝根药渣为原料,选择300℃和500℃厌氧裂解制备2种生物炭(BC300和BC500)、BC500载Fe改性炭(FeBC500)、天然麦饭石(MFS)、BC500与MFS等质量组合[BC500∶MFS(1∶1)]、Fe-BC500与MFS等质量组合[Fe-BC500∶MFS(1∶1)]材料为钝化剂,采用室内盆栽实验和等温吸附实验,研究了其对土壤-黑麦草体系的调控效果,并通过比表面孔分布测定(BET)、扫描电镜分析(SEM)、X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)探讨了其机制.结果表明,在添加量为2%(土)时,BC300、BC500、Fe-BC500、MFS、BC500∶MFS(1∶1)和Fe-BC500∶MFS(1∶1)均可显著降低(P 0. 05)黑麦草体内Cu和Cd含量以及显著增加黑麦草的生物量,且黑麦草的叶绿素含量和根系活力均可指示这一效果. BC300处理抑制黑麦草吸收Cu和Cd,增加黑麦草的生物量的效果要优于其他处理,可使黑麦草地下部分Cu和Cd含量分别减少44. 78%和63. 89%,地上部分分别减少76. 34%和53. 40%;地下部分生物量增加327. 22%,地上部分生物量增加504. 11%. Langmuir方程更好地拟合BC300、BC500和Fe-BC500的吸附效果,且对Cu的最大吸附量分别为8. 02、9. 20和8. 82 mg·g~(-1);对Cd的最大吸附量分别为7. 97、8. 51和7. 70 mg·g~(-1). Freundlich方程能更好地拟合MFS的吸附效果,对Cu和Cd的最大吸附量分别为7. 03 mg·g~(-1)和6. 10 mg·g~(-1). BC300和BC500主要通过其表面羟基、羧基、羰基和酯基,Fe-BC500主要通过其表面羟基和铁羟基,MFS主要通过其中Na Al Si3O8和Al2Si2O5(OH)4表面的硅羟基、羟基和羧基分别与Cu和Cd发生配合反应,进而达到钝化修复Cu和Cd污染土壤的效果.因此,药渣生物炭、铁改性药渣生物炭和麦饭石及其组合材料均可被用于Cu和Cd复合污染土壤修复,但修复机制不同. 相似文献
72.
The aim of this study was to evaluate the possible toxicity of the leachate produced by the residues generated in the process of recycling lead from waste batteries. These residues are slag, which once formed, is characterised by its content in ferrous sulphide, sodium carbonate as well as residual coke from the process. It also contains, as minor components, lead and other heavy metals. The slag was stored and watered periodically over a period of 6 months, its composition changing until finally becoming inert, with no exothermal activity. The slag was leached, and its ecotoxicity was determined by means of the bioluminescence test, along with its content in heavy metals. The results obtained indicate a greater degree of toxicity in the residues with a shorter storage period than the established one, and which were therefore still in the phase of decomposition. However, in the samples taken on completing 6 months of storage, the EC50 value of the leachate was found to be higher than 3000 mg/l. Hence, a storage period under suitable environmental conditions which leads to inactivity of the residue as well as a decrease in its ecotoxicity, is considered absolutely essential. At the same time, a direct relationship was observed between the lead content and the ecotoxicity value. 相似文献
73.
介绍了国外钢渣综合利用概况,分析了我国钢渣处理技术与国外之间的差距.对存在的问题提出了建议. 相似文献
74.
75.
微波法处理含铬废渣的可行性分析 总被引:1,自引:0,他引:1
微波辐照解毒铬渣是一项新技术,为考察该技术应用的可行性,本文对铬渣解毒前后性状的变化进行了讨论。结果表明,该技术能较完全地使高价铬转化为低价铬,解毒渣中铬主要以三价形态存在,铬渣毒性得到消除;解毒渣浸出液中Cr6+浓度远低于国家危险废物鉴别标准,解毒渣已不属于危险固体废弃物,其在环境条件下可安全存放。说明该技术具有应用前景。 相似文献
76.
77.
垃圾焚烧飞灰熔融渣特性分析 总被引:3,自引:3,他引:0
研究了熔融固化产物--熔融渣的特性.结果表明:熔融渣的主要成分为CaO,Al2O3和SiO2,其含量占总质量的99%左右,而SO3,K2O,Na2O和Cl在熔融渣中的含量明显降低,其质量分数分别从原始飞灰中的10.74%,8 58%,3.81%和20.59%降低到0.17%,0.04%,0.23%和0.11%;熔融渣中碱性氧化物和酸性氧化物的含量基本相同,碱度接近于1.0;重金属Cr和Zn的固定率较高,分别为94.2%和81 7%,而Cu,Pb和Cd的固定率较低,分别为31.4%,14.5%和24.6%;采用美国TCLP方法测试的熔融渣中重金属浸出量均低于国家危险废物浸出毒性鉴别标准限值. 相似文献
78.
Removal kinetics of phosphorus through use of basic oxygen furnace slag (BOF-slag) was investigated through batch experiments. Effects of several parameters such as initial phosphorus concentration, temperature, BOF-slag size, initial pH, and BOF-slag dosage on phosphorus removal kinetics were measured in detail. It was demonstrated that the removal process of phosphorus through BOF-slag followed pseudo-first-order reaction kinetics. The apparent rate constant (kobs) significantly decreased with increasing initial phosphorus concentration, BOF-slag size, and initial pH, whereas it exhibited an opposite trend with increasing reaction temperature and BOF-slag dosage. A linear dependence of kobs on total removed phosphorus (TRP) was established with kobs = (3.51 ± 0.11) × 10− 4 × TRP. Finally, it was suggested that the Langmuir–Rideal (L–R) or Langmuir–Hinshelwood (L–H) mechanism may be used to describe the removal process of phosphorus using BOF-slag. 相似文献
79.
To investigate the feasibility of detoxifying chromium slag by sewage sludge,synthetic chromium slag containing 3% of Cr(VI) was mixed with sewage sludge followed by thermal treatment in nitrogen gas for stabilizing chromium.The effects of slag to sludge ratio(0.5,1 and 2) and temperature(200,300,500,700 and 900°C) on treatment efficiency were investigated.During the mixing process before thermal treatment,59.8%-99.7% of Cr(VI) was reduced,but Cr could be easily leached from the reduction product.Increasing heating temperature and decreasing slag to sludge ratio strengthened the reduction and stabilization of Cr(VI).When the slag to sludge ratio was 0.5 and thermal treatment temperature was 300°C,the total leached Cr and Cr(VI) declined to 0.55 mg/L and 0.17 mg/L respectively,and 45.5% of Cr in the thermally treated residue existed as residual fraction.A two-stage mechanism was proposed for the reduction and stabilization of Cr. 相似文献
80.
钢渣对水体中磷的去除性能及机制解析 总被引:1,自引:0,他引:1
针对不同类型钢渣在除磷过程中存在的显著差异,以电炉渣为研究对象,探讨了环境因素(吸附时间、吸附温度)对钢渣除磷的影响,验证了其对磷酸盐、焦磷酸盐及实际水体的除磷效果,联合采用扫描电镜(SEM)、能量色散X射线能谱(EDS)、X射线荧光光谱(XRF)和X射线衍射光谱(XRD)技术探究其除磷机制,对比分析了钢渣与陶粒和沸石的除磷效率,并对钢渣除磷的安全性能进行了评估.结果表明,吸附时间显著影响钢渣除磷效果,当吸附时间为30 min时钢渣对质量浓度范围为1~20 mg·L-1的磷酸盐溶液的去除率均可达到97%以上.温度对实验所用钢渣的除磷效果影响并不显著.钢渣对焦磷酸盐吸附能力弱于正磷酸盐,其对初始质量浓度为3 mg·L-1的焦磷酸盐的去除率为82.45%.光谱分析结果表明,钢渣除磷的主要机制为化学吸附并辅以物理吸附,CaHPO4·2H2O为主要沉淀物质.钢渣对生物池出水和湿地系统中的磷素去除效果显著,总磷去除率分别为98.36%和93.33%.对比可知,钢渣对磷酸盐的去除效果优于陶粒和沸石,其对PO43-的去除率分别为96%、40%和10%.钢渣浸出液中各重金属含量均符合地表水Ⅰ类标准要求,钢渣安全可靠. 相似文献