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21.
不同含磷物质对重金属污染土壤-水稻系统中重金属迁移的影响 总被引:15,自引:0,他引:15
通过水稻盆栽试验研究磷酸氢二钠(DSP)和羟基磷灰石(HAP)对污染土壤中重金属(Pb、Cd、Zn)向水稻迁移的影响.结果表明,①DSP和HAP都显著提高了土壤pH值和有效磷含量(p0.05),降低了土壤中Pb、Cd、Zn交换态含量,且HAP降低重金属交换态的效果较DSP好.水稻地上部分重金属含量与土壤中重金属交换态含量呈明显正相关关系,说明DSP和HAP通过降低土壤中重金属交换态含量从而达到减少重金属向水稻中迁移的目的.②DSP和HAP明显降低了水稻各器官Pb、Cd的含量,同时使水稻根、壳、糙米中Zn含量降低,但增加了茎叶中Zn的含量.与对照相比,DSP和HAP分别使糙米中Pb、Cd、Zn最大降低了48.72%、22.22%、25.35%和62.82%、66.67%、39.88%,但是糙米中Pb、Cd含量仍未达到食品卫生标准限值(GB2762—2012).③DSP和HAP处理都使水稻根干重逐渐减少,使茎叶、壳、糙米干重先增加后降低,在0.12 g·kg-1时使水稻糙米产量最大.综上,DSP和HAP都能有效控制土壤中Pb、Cd、Zn向水稻中迁移,且HAP效果比DSP好,但磷添加量不宜过高. 相似文献
22.
针对目前国内进行六价铬污染土壤修复过程关键性控制参数相对缺乏,且中长期稳定性效果相对较差等问题.选取北方某电镀厂六价铬污染严重的表层土壤,使用5组还原试剂进行还原稳定化试验,同时通过在线ORP(氧化还原电位)测试仪在线监测和定期取样测试,探索不同还原剂的反应效率和最终效果.其中试剂4对六价铬的还原稳定化率最高,基本上均在99.5%以上,六价铬浓度最低可达到2.4 mg·kg~(-1);从反应速率来看试剂1和4反应速率最快.反应过程的ORP、pH值监测数据也出现较大的区别,其中第1组土壤样品整个过程中ORP始终处于-400 m V左右;第4组反应在30 h以后,由-200m V逐步升高并稳定在100 m V左右.从反应体系中的pH值变化情况来看,唯一使土壤pH保持在7左右的是试剂4.综合判断试剂4(多硫化钙和亚铁盐复配试剂)的综合还原效果最佳.以试剂4为基础进行单独放大试验,通过ORP和电导率两个关键参数的变化情况发现还原反应过程大概需要160 h,从而为后期实际土壤修复过程中控制还原土壤的养护条件和过程监控提供理论支撑. 相似文献
23.
不同工况蚯蚓人工湿地表层污泥处理效果 总被引:1,自引:0,他引:1
通过在传统污泥干化湿地中投加蚯蚓,研究了蚯蚓人工湿地处理污泥技术的可操作性;同时研究了不同污泥负荷48、65、80 kg·(m~2·a)~(-1)、不同蚯蚓投放密度0、0.43、0.54、0.65 kg·m~(-2)以及不同进泥频率等工况条件下,该模拟湿地装置表层污泥的脱水和稳定化效果.结果表明,通过设置入土深度为10 mm的挡板,能够提供蚯蚓在进泥期间的栖身之所,保证蚯蚓湿地的正常运行;蚯蚓的加入能够显著改善人工湿地污泥干化和稳定化的效能,使表层污泥脱氢酶活性(dehydrogenase activity,DHA)更低,含水率和VS分别下降了15%和10%左右,并且在0.65 kg·m~(-2)的蚯蚓投放密度下,蚯蚓人工湿地的稳定化效果最好.随着污泥负荷的增加以及进泥频率的降低,蚯蚓人工湿地运行效能会变差. 相似文献
24.
用有机玻璃材料做成模拟人工湿地,分别种植芦苇和香蒲考察2种模拟植物湿地对城市污泥干化和稳定化、污泥中营养元素和重金属去除效果,并和空白湿地对比。实验污泥取自当地污水厂二沉池,污水处理采用厌氧池加氧化沟工艺。模拟人工湿地进泥负荷为0.72 kg TS/(m2.d),进泥中TS平均含量为5.58 g/L,pH为6.80。实验期为1年,采用间歇式进泥,渗滤液月采集测样一次,湿地剩余污泥2月1次。实验结果受天气和气候影响较大,处理效果夏季好于冬季,出水水质和剩余污泥的干化及稳定效果芦苇湿地好于香蒲湿地。剩余污泥中各种重金属含量低于污泥农用标准中各重金属离子浓度要求。结果表明,人工湿地植物净化系统对城市污泥有较好的脱水和稳定化效果。 相似文献
25.
Understanding how hydraulic factors control alluvial river meander migration can help resource managers evaluate the long-term
effects of floodplain management and bank stabilization measures. Using a numerical model based on the mechanics of flow and
sediment transport in curved river channels, we predict 50 years of channel migration and suggest the planning and ecological
implications of that migration for a 6.4-km reach (river miles 218–222) of the Sacramento River near the Woodson Bridge State
Recreation Area, California, USA.
Using four different channel management scenarios, our channel migration simulations suggest that: (1) channel stabilization
alters the future channel planform locally and downstream from the stabilization; (2) rock revetment currently on the bank
upstream from the Woodson Bridge recreation area causes more erosion of the channel bank at the recreation area than if the
revetment were not present; (3) relocating the channel to the west and allowing subsequent unconstrained river migration relieves
the erosion pressure in the Woodson Bridge area; (4) the subsequent migration reworks (erodes along one river bank and replaces
new floodplain along the other) 26.5 ha of land; and (5) the river will rework between 8.5 and 48.5 ha of land in the study
reach (over the course of 50 years), depending on the bank stabilization plan used. The reworking of floodplain lands is an
important riparian ecosystem function that maintains habitat heterogeneity, an essential factor for the long-term survival
of several threatened and endangered animal species in the Sacramento River area. 相似文献
26.
27.
William Whipple James M. DiLouie Theodore Pytlar 《Journal of the American Water Resources Association》1981,17(1):36-45
ABSTRACT: In urbanizing areas, the usual increase in flood flows also increases erosional capability of streams. In order to evaluate such tendencies quantitatively, 25 stream reaches were studied, and were classified as to whether erosion of the channel and banks was light, medium, or heavy. Analysis of characteristics indicated that (1) densely developed areas are correlated with greater erosion, (2) wide stream buffers of natural vegetation are correlated with lesser erosion, and (3) there is no definite correlation of erosion to slope or characteristics of soil. Erosional stream instability can be avoided by retention of storm water runoff, creating additional channel roughness or reducing channel slope during floods by drop structures, such as culverts, which restrict flow. Channel straightening and general bank protection should be minimized in such streams. Design of culverts should take such effects into consideration. 相似文献
28.
The aim of this work is to assess the potential ecotoxicological effects of contaminated sediments treated with mineral additives. The Microtox solid phase test was used to evaluate the effect of mineral additives on the toxicity of sediment suspensions. Four Mediterranean port sediments were studied after dredging and bioremediation: Sample A from navy harbor, sample B from commercial port and samples C and D from pleasure ports. Sediment samples were stabilized with three mineral additives: hematite, zero-valent iron and zeolite. Results show that all studied mineral additives can act as stabilizer agent in highly contaminated sediments (A and C) by decreasing dissolved metal concentrations and sediment toxicity level. On the contrary, for the less contaminated samples (B and D) hematite and zeolite can provoke toxic effect towards Vibrio fischeri since additive particles can favor bacteria retention and decrease bioluminescence emission. 相似文献
29.
垃圾填埋场稳定化及其研究现状 总被引:19,自引:0,他引:19
文章对直埋场稳定化过程进行了初步描述,并从填埋气、渗滤液、垃圾组成和沉降等4个方面总结了填埋场稳定化的研究现状。 相似文献
30.
Watts RJ Finn DD Cutler LM Schmidt JT Teel AL 《Journal of contaminant hydrology》2007,91(3-4):312-326
The stabilization of hydrogen peroxide was investigated as a basis for enhancing its downgradient transport and contact with contaminants during catalyzed H(2)O(2) propagations (CHP) in situ chemical oxidation (ISCO). Stabilization of hydrogen peroxide was investigated in slurries containing four characterized subsurface solids using phytate, citrate, and malonate as stabilizing agents after screening ten potential stabilizers. The extent of hydrogen peroxide stabilization and the most effective stabilizer were solid-specific; however, phytate was usually the most effective stabilizer, increasing the hydrogen peroxide half-life to as much as 50 times. The degree of stabilization was nearly as effective at 10 mM concentrations as at 250 mM or 1 M concentrations. The effect of stabilization on relative rates of hydroxyl radical activity varied between the subsurface solids, but citrate and malonate generally had a greater positive effect than phytate. The effect of phytate, citrate, and malonate on the relative rates of superoxide generation was minimal to somewhat negative, depending on the solid. The results of this research demonstrate that the stabilizers phytate, citrate, and malonate can significantly increase the half-life of hydrogen peroxide in the presence of subsurface solids during CHP reactions while maintaining a significant portion of the reactive oxygen species activity. Use of these stabilizers in the field will likely improve the delivery of hydrogen peroxide and downgradient treatment during CHP ISCO. 相似文献