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111.
碱矿渣水泥基铬渣固化体的性能研究 总被引:11,自引:0,他引:11
使用碱矿渣水泥基材料对含铬废渣进行了固化研究,并力图使固化体能够用作建材制品。结果表明,用碱矿渣水泥基材固化铬渣是可行的,固化体抗压强度达到了50MPa以上,且具有良好的抗渗性能和较低的六价铬离子浸出率,能够用作建筑材料。 相似文献
112.
焦炭和废铁屑微电解预处理垃圾渗滤液的研究 总被引:11,自引:0,他引:11
研究表明,废铁屑和焦炭微电解是预处理垃圾渗滤液的一种有效方法,可去除垃圾渗滤液COD、色度和腐殖酸等污染物质,改善其可生化性、降低负荷,为后续生化处理创造良好的条件.通过静态正交实验确定废铁屑和焦炭最佳投加体积比为1∶3;最佳反应pH值为4;动态实验中,反应时间为1 h时,COD和色度去除率分别高达68%和91%;BOD/COD从0.3提高到0.5左右. 相似文献
113.
金矿开采引起砷污染的初步研究及治理措施 总被引:1,自引:0,他引:1
砷伴生于许多有色金属之中,随着含砷矿床的开采,导致砷由地层深处转至地表,改变了它们迁移的地球化学条件,容易释放到周围环境中。以辽宁某金矿为例,调查并阐述了金矿开采过程中的砷释放,以及尾矿渣的堆放,随废水排放造成对周围河流的砷污染情况,提出了适合金矿床开采的砷污染治理方法。 相似文献
114.
几种工矿废渣改善土壤供硅能力的效果 总被引:1,自引:0,他引:1
施用硅肥可以改善土壤硅素肥力状况,提高水稻产量,改善稻米品质,增强水稻抗性,利用工矿废渣生产硅肥还能产生良好的生态环境效益。本研究采用室内模拟与盆栽试验的方法,研究了高炉渣、粉煤灰和金刚石矿渣作硅肥施用对水稻土供硅能力的影响。结果表明,在北方酸性水稻土上施用废渣使土壤硅素释累积放量显著增加,明显改善土壤的供硅能力,促进水稻对硅素养分的吸收,上述效果随废渣用量增加而更为明显,且高炉渣的效果要明显好于粉煤灰和金刚石矿渣。另外,五种废渣的不同施用量与植株含硅量增加率之间均满足对数正相关关系,对数项系数a与127d的硅素累积释放量之间存在极显著的线性正相关关系,说明土壤硅素累积释放量可以评价施用过废渣的土壤的供硅能力,能够反映废渣作硅肥的适宜性。 相似文献
115.
几种碱性废渣脱硫性能的比较研究 总被引:2,自引:0,他引:2
以吸收瓶为实验装置研究了几种碱性废渣的脱硫容量。实验结果表明 ,电石渣、碱渣、废大理石和石灰石的脱硫容量分别为 0 85、0 75 ,0 6 2和 0 5 8gSO2 g脱硫剂。旋流板塔试验主要参数对脱硫率的影响结果表明 ,入塔浆液pH值越大 ,液气比L G越大 ,脱硫率η也越高 ;入塔SO2 浓度y0 越高 ,脱硫率η越低。模拟工业试验结果表明 ,对电石渣和碱渣 ,控制浆液pH >7,L G =2~ 3L m3时 ,η可达 6 5 %以上 ;对废大理石和石灰石 ,控制浆液pH为 6 5 ,L G =4~6L m3时 ,η可达 6 0 %以上。从以上结果来看 ,作为脱硫剂 ,电石渣脱硫效果最好 ,碱渣次之 ,最后是废大理石和石灰石。电石渣和碱渣显示了良好的应用前景 相似文献
116.
117.
J. C. Chuang Y. C. Lan Y. S. Hsu S. L. Chuang S. R. Liaw C. S. Chang 《Chemistry and Ecology》2013,29(1-2):97-104
Abstract This study introduces the principles of KMG's (Kaoshiung Municipal Government) dealing with the non-poisonous urban and industrial waste through reclamation of shore land in reinforcing a sense of coastal protection and land development in Tai-Lin-Pu coastal area, southern Taiwan. Through a series of experimental studies, we found that substitutes of coarse aggregate with a broad spectrum of integrating slag powder, fly ash, and cementitious material can be obtained with a benefit up to 80% saving of cement. the integrated aggregates from the non-poisonous industrial wastes were subsequently made into armour units and used in the field tests at Tai-Lin-Pu coastal area, where the shorelines are seriously eroded. After being subjected to several severe typhoon advents, the results showed that the waste-made units used as the protection breakwater, together with construction wastes and excavated soil as the filling material, prove to be an effective practice in utilizing recycled urban waste to reclaim erosive shore lands. Moreover, this study also demonstrates that through detailed analysis of the waste characteristics, scrap material could be turned into valuable construction aggregates, and highlights the value of non-poisonous urban and industrial waste as a alternative resource for the shore protection engineering. 相似文献
118.
119.
High phosphorus steel slag and carbonized rice husk are two common wastes characterized by high generation and low secondary use values.Through the reduction of high phosphorus steel slag by biomass,both wastes were fully utilized,thus reducing the negative impact on the environment.In this study,variables such as temperature,time,and amount of reactants were changed to determine the optimal conditions for the reaction of steel slag with carbonized rice husk at high temperatures.The actual amoun... 相似文献
120.
This study was performed to investigate the removal of phosphate from domestic wastewater using a modified steel slag as the adsorbent. The adsorption effects of alkalinity, salt, water,and thermal modification were investigated. The results showed that thermal activation at 800℃ for 1 hr was the optimum operation to improve the adsorption capacity. The adsorption process of the thermally modified slag was well described by the Elovich kinetic model and the Langmuir isotherm model. The maximum adsorption capacity calculated from the Langmuir model reached 13.62 mg/g. Scanning electron microscopy indicated that the surface of the modified slag was cracked and that the texture became loose after heating. The surface area and pore volume did not change after thermal modification. In the treatment of domestic wastewater, the modified slag bed(35.5 kg) removed phosphate effectively and operated for 158 days until the effluent P rose above the limit concentration of 0.5 mg/L. The phosphate fractionation method, which is often applied in soil research, was used to analyze the phosphate adsorption behavior in the slag bed. The analysis revealed that the total contents of various Ca–P forms accounted for 81.4%–91.1%, i.e., Ca10–P 50.6%–65.1%, Ca8–P 17.8%–25.0%,and Ca2–P 4.66%–9.20%. The forms of Al–P, Fe–P, and O–P accounted for only 8.9%–18.6%. The formation of Ca10–P precipitates was considered to be the main mechanism of phosphate removal in the thermally modified slag bed. 相似文献