排序方式: 共有67条查询结果,搜索用时 15 毫秒
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聚合氯化铝铁和粘土应急去除蓝藻的室外模拟研究 总被引:1,自引:0,他引:1
文章在开展PAFC去除淡水中的铜绿微囊藻影响因素的室内模拟研究基础上进行PAFC和粘土应急去除巢湖水中蓝藻的室外模拟研究。结果表明,在20 mg/L的絮凝剂用量下,聚合氯化铝铁(PAFC)对巢湖水中蓝藻的沉降去除效果优于聚合氯化铝,达到97.7%。PAFC,PAFC和粘土(高岭石或海泡石)可以快速高效絮凝沉降巢湖水中的蓝藻,并且在30 d之内除藻率稳定地维持90.0%以上。同时探讨其对藻毒素释放抑制的影响,结果表明,加入PAFC和粘土(海泡石或高岭石)1 d后能有效地吸附水中的藻毒素,PAFC和海泡石组的吸附去除率大于PAFC和高岭石,且30 d内仍一直维持藻毒素浓度低于对照组。 相似文献
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水体系中砷污染及除砷方法探讨 总被引:9,自引:0,他引:9
本文概述了砷化物的理化特征及其砷污染所造成的危害.探讨了去除水中高砷的各种方法及特点.结果表明,高分子粘合剂并水滤膜分离技术及海泡石法除砷效率最高,且经济、简便,是处理饮用水较理想的方法. 相似文献
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不同改良剂对铅镉污染农田水稻重金属积累和产量影响的比较分析 总被引:17,自引:9,他引:8
以无机类土壤改良剂材料海泡石(SEP)、有机类土壤改良剂材料生物炭(BC)作为对比,考察新型交联改性甲壳素(CC)对大田环境下土壤重金属的生物有效性、水稻生长、产量以及吸收累积重金属的影响,为土壤改良剂开发提供新的材料选择,并为该材料培肥改土及合理农用提供依据.选取辽宁凌海市某Pb、Cd污染稻田作为试验地块,于2015~2016年进行田间小区试验,分析试验前(2015年3月)和2016年10月水稻收获后土壤的p H值、土壤中Pb、Cd有效态的变化,比较不同处理对水稻生育性状、产量及水稻根系、茎叶、籽粒各部位吸收Pb、Cd的影响.结果表明,添加167~333 kg·hm~(-2)剂量的CC可使土壤p H值提高0.36~0.45个单位,使得土壤中有效Pb、Cd的含量分别显著(P0.05)下降46.39%~64.01%、29.73%~43.24%.添加167~333 kg·hm~(-2)剂量的CC与CK相比可显著降低水稻各部位中的Pb、Cd含量(P0.05),其中根系中分别降低16.09%~38.14%、21.22%~31.38%,茎叶中分别降低了19.17%~46.92%、25.66%~45.34%,籽粒中分别降低了29.47%~58.25%,44.75%~64.02%,添加333 kg·hm~(-2)剂量的CC可使水稻籽粒中的Pb、Cd含量分别降低到(0.204 1±0.011)mg·kg-1和(0.192 2±0.021)mg·kg-1,低于或接近于GB 2762-2005中大米Pb、Cd的限量值(0.20mg·kg-1).施用167~333 kg·hm~(-2)的CC与CK、SEP处理及BC处理相比,亩产分别增加了33.6~47、27.6~44、8.67~34.77 kg.其中CC-2增产效果最明显,亩增产47 kg,增产率为8.59%.CC对Pb、Cd污染土壤重金属修复及降低水稻体内Pb、Cd含量效果不亚于SEP、BC,对重金属Pb、Cd在土壤-水稻系统的迁移与再分配具有较好的阻控作用,且其增产作用明显,具有较好的保障实现水稻安全生产的潜力,具有一定推广应用价值. 相似文献
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同步钝化土壤Cd和As材料的筛选 总被引:7,自引:4,他引:3
土壤中Cd和As的化学行为相反,导致同时降低土壤Cd和As的有效性成为一个难题.本实验采用先淹水30 d后湿润30 d的培养方法,研究了海泡石(Sep)、铁改性海泡石(IMS)、铁锰改性海泡石(Sep-FM)、钢渣(SS)和铁基生物炭(Fe-Bio)对土壤pH、Eh、孔隙水中Cd和As动态变化及土壤Cd和As形态的影响,旨在筛选出可以同时钝化土壤Cd和As的潜在材料.结果表明,添加Sep、IMS、Sep-FM和SS材料提高土壤pH值,降低Eh值及土壤孔隙水中Cd的质量浓度;而且高剂量IMS(2.5%)和SS(5%)处理土壤孔隙水中As的质量浓度在整个培养期间均低于CK处理.然而添加Fe-Bio则使土壤pH降低和Eh值升高,且仅在湿润条件下降低溶液中Cd和As的质量浓度.所有供试材料均降低土壤可交换态Cd含量,提高可还原态、可氧化态和残渣态Cd含量.高剂量IMS(2.5%)、Sep-FM(2.5%)和SS(5%)处理还降低了土壤中可利用态As含量(非专性吸附态和专性吸附态As)、提高了晶形和非晶形铁铝氧化物结合态As的含量,而1% Fe-Bio处理则提高了土壤非专性吸附态、专性吸附态和残渣态As的含量.总之,高剂量的IMS、Sep-FM和SS能同时钝化土壤中Cd和As,促进其向生物难利用的形态转化,是修复Cd和As复合污染土壤的潜在材料. 相似文献
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添加晶种对沼气发酵液磷回收的影响研究 总被引:1,自引:0,他引:1
以畜禽养殖废水经厌氧消化处理后的沼气发酵液为研究对象,采用曝气吹脱调节pH的处理方式。晶种采用海泡石粉、沸石粉和凹凸棒石粉3种天然矿物材料。考察了不同pH条件、晶种添加量和不同初始磷负荷对磷回收的影响,并利用扫描电镜-能谱分析仪(SEM-EDX)对产物进行了表征分析。结果表明:3种晶种材料中,凹凸棒石粉对磷回收的促进效果最好。在pH从7.5到8.5之间海泡石粉、沸石粉和凹凸棒石粉均可将Rp(t)提高10%以上,8.5到9.5之间,添加海泡石粉和沸石粉对Rp(t)的提升幅度降低,添加凹凸棒石粉可以达到14%左右的提升幅度。海泡石粉和沸石粉添加量增大后Rp(t)有小幅的提升,但变化不规律,凹凸棒石粉的最佳添加量为0.92 g/L。初始PO43--P为90 mg/L时凹凸棒石粉对磷回收有最好的促进效果。添加凹凸棒石粉的产物在SEM图片上可看到明显有晶体覆盖,EDX图上出现了明显的强度较大的P组分峰,从微观的角度证实了添加凹凸棒石粉的促进作用。 相似文献
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Chengyuan SU Weiguang LI Yong WANG 《Frontiers of Environmental Science & Engineering》2013,7(4):503-511
The adsorption of direct fast black onto acid-thermal modified sepiolite was investigated. Batch adsorption experiments were performed to evaluate the influences of experimental parameters such as initial dye concentration, initial solution pH and adsorbent dosage on the adsorption process. The three-factor and three-level Box-Behnken response surface methodology (RSM) was utilized for modeling and optimization of the adsorption conditions for direct fast black onto the acid-thermal modified sepiolite. The raw sepiolite was converted to acid-thermal modified sepiolite, and changes in the fourier transform infrared spectrum (FTIR) adsorption bands of the sample were noted at 3435 cm-1 and 1427 cm-1. The zeolitic water disappeared and the purity of sepiolite was improved by acid-thermal modification. The decolorization rate of direct fast black adsorbed increased from 68.2% to 98.9% on acid-thermal modified sepiolite as the initial solution pH decreased from 10 to 2. When the adsorbent dosage reached to 2.5 g·L-1, 2.0 g·L-1, 1.5 g·L-1 and 1.0 g·L-1, the decolorization rate was 90.3%, 86.7%, 61.0% and 29.8%, respectively. When initial dye concentration increased from 25 to 200 mg·L-1, the decolorization rate decreased from 91.9% to 60.0%. The RSM results showed that the interaction between adsorbent dosage and pH to be a significant factor. The optimum conditions were as follows: the adsorbent dosage 1.99 g·L-1, pH 4.22, and reaction time 5.2 h. Under these conditions, the decolorization rate was 95.1%. The three dimensional fluorescence spectra of direct fast black before and after treatment showed that the direct fast black was almost all adsorbed by the acid-thermal modified sepiolite. 相似文献
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Yuebing Sun Guohong Sun Yingming Xu Lin Wang Dasong Lin Xuefeng Liang Xin Shi 《环境科学学报(英文版)》2012,24(10):1799-1805
The effects of immobilization remediation of Cd-contaminated soils using sepiolite on soil pH, enzyme activities and microbial communities, TCLP-Cd (toxicity characteristic leaching procedure-Cd) concentration, and spinach (Spinacia oleracea) growth and Cd uptake and accumulation were investigated. Results showed that the addition of sepiolite could increase soil pH, while the TCLP-Cd concentration in soil was decreased with increasing sepiolite. The changes of soil enzyme activities and bacteria number indicated that a certain metabolic recovery occurred after the sepiolite treatments, and spinach shoot biomass increased by 58.5%-65.5% in comparison with the control group when the concentration of sepiolite was ≤qslant 10 g/kg. However, the Cd concentrations in the shoots and roots of spinach decreased with an increase in the rate of sepiolite, experiencing 38.4%-59.1% and 12.6%-43.6% reduction, respectively, in contrast to the control. The results indicated that sepiolite has the potential for success on a field scale in reducing Cd entry into the food chain. 相似文献