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611.
多氯联苯复合污染土壤的微生物群落结构多样性变化 总被引:2,自引:0,他引:2
土壤微生物群落结构多样性是指示土壤生态系统稳定性及其功能的重要传感器。采用磷脂脂肪酸(Phospholipid fatty acids,PLFAs)方法,对长江三角洲地区某POPs高风险区PCBs长期复合污染土壤的微生物群落结构多样性进行了初步研究。结果表明,PCBs重度污染土壤中格兰氏阴性菌(16:1w9、cy17:0等)和厌氧微生物(18:1w7)的PLFAs组分含量较多,而格兰氏阳性菌(如i15:0、i17:0等)、放线菌(16:0(10Me))及真菌(18:2ω6,9)和好氧性微生物的PLFAs含量较低,表明PCBs污染土壤中微生物群落结构与组成发生了明显变化。这一结果为PCBs降解微生物资源的定向筛选提供了科学依据。 相似文献
612.
锑矿区土壤中锑的形态及生物有效性 总被引:16,自引:0,他引:16
通过室内模拟对锑矿区土壤中锑的分布、存在形态及生物有效性进行了研究 .结果表明 :在锑矿区土壤中含有高浓度锑污染 ,其存在状态主要以残渣态为主 ,其次是Fe/Mn结合态、有机 /硫化物结合态和碳酸盐结合态 ,可交换态和水溶态占的比率最小 .不同溶剂对锑的提取率不同 ,NH4NO3对锑的提取率最高 ,其次是EDTA ,HAc和H2 O ,NH4OAc对锑的提取率最小 .土壤中锑主要以五价锑的形态存在 ,几乎占总锑量的 90 %以上 .土壤中生物可利用态锑的浓度比较高 ,一般在 2 5— 1 3 2mg·kg- 1 ,中等可利用态占土壤总锑的1 6 2— 8 2 6 % ,生物不可利用态锑的浓度占 88 2— 97 91 % . 相似文献
613.
McGill RA Pearce JM Fortey NJ Watt J Ault L Parrish RR 《Environmental geochemistry and health》2003,25(1):25-32
By combining scanning electron microscopy (SEM) image analysis and laser ablation plasma ionisation multi-collector mass spectrometry (LA-PIMMS), high precision lead isotope analyses can be obtained from individual metal-rich particles. Soils from Wolverhampton and Nottingham were sampled on the basis of high Pb concentrations or brownfield location. Pressed powder pellets of each were rastered by LA-PIMMS to obtain a bulk Pb-isotope signature. The results plot along an apparent mixing line between the major sources of lead contamination in the UK, that is UK ore deposits and alkyl-lead from petrol additives (Australian ore). Two particularly lead-rich soils were chosen to investigate the lead distribution and isotope variability between size and density fractions. The fine-grained and low-density fractions contained most of the lead and have Pb-isotope ratios comparable with the bulk soils. By contrast, the small, lead-enriched denser fractions contained only a minor proportion of the total lead but Pb-isotope signatures indicating relative enrichment in one or other of the end-members from the mixing line. Further characterisation of individual Pb-rich grains is in progress. 相似文献
614.
Simmons RW Pongsakul P Saiyasitpanich D Klinphoklap S 《Environmental geochemistry and health》2005,27(5-6):501-511
Prolonged consumption of rice containing elevated cadmium (Cd) levels is a significant health issue particularly in subsistence
communities that are dependent on rice produced on-farm. This situation is further exacerbated in areas of known non-ferrous
mineralization adjacent to rice-based agricultural systems where the opportunity for contamination of rice and its eventual
entry into the food chain is high. In the current study, an assessment of the degree of soil Cd and Zn contamination and associated
rice grain Cd contamination downstream of an actively mined zone of Zn mineralization in western Thailand was undertaken.
Total soil Cd and Zn concentrations in the rice-based agricultural system investigated ranged from 0.5 to 284 mg kg−1 and 100 to 8036 mg kg−1, respectively. Further, the results indicate that the contamination is associated with suspended sediment transported to
fields via the irrigation supply. Consequently, the spatial distribution of Cd and Zn is directly related to a field’s proximity
to primary outlets from in-field irrigation channels and inter-field irrigation flows with 60–100% of the Cd and Zn loading
associated with the first three fields in irrigation sequence. Rice grain Cd concentrations in the 524 fields sampled, ranged
from 0.05 to 7.7 mg kg−1. Over 90% of the rice grain samples collected contained Cd at concentrations exceeding the Codex Committee on Food Additives
and Contaminants (CCFAC) draft Maximum Permissible Level for rice grain of 0.2 mg Cd kg−1. In addition, as a function of demographic group, estimated Weekly Intake (WI) values ranged from 20 to 82 μg Cd per kg Body.
This poses a significant public health risk to local communities. The results of this study suggest that an irrigation sequence-based
field classification technique in combination with strategic soil and rice grain sampling and the estimation of WI values
via rice intake alone may be a useful decision support tool to rapidly evaluate potential public health risks in irrigated
rice-based agricultural systems receiving Cd contaminated irrigation water. In addition, the proposed technique will facilitate
the cost effective strategic targeting of detailed epidemiological studies thus focusing resources to specific ‘high risk’
areas. 相似文献
615.
616.
电压对电动修复Cr(Ⅵ)污染高岭土的影响研究 总被引:2,自引:0,他引:2
试验选用重铬酸钾作为污染物,配制高岭土中Cr(Ⅵ)初始质量分数为500mg·kg-1.试验研究了不同电压下的电动修复效率和单位能耗,并结合经济效益找出合适的电压范围.试验结果表明:当电压为20V时,去除效率达到89.9%,单位能耗仅为93.04KW·h·g-1.当电压再增大的时候,去除效率提高较小,单位能耗增大迅速,不符合经济效益的要求.由于适宜的施加电压和土壤本身性质有很大联系,如何通过简单的方法确定适宜的施加电压,还需进一步研究. 相似文献
617.
Emily Kindervater Alan D. Steinman 《Journal of the American Water Resources Association》2019,55(5):1183-1195
Phosphorus (P) and sediment inputs from agricultural drainage contribute to the development of hypereutrophic conditions in lakes across the world. Two‐stage (2‐S) ditches, an agricultural best management practice gaining acceptance in the Midwestern United States, increase floodplain area within drainage ditches to help capture nutrients and sediment. While denitrification has been shown to increase on 2‐S benches, less is known about their P retention ability. This study assessed the abiotic and biotic P retention of two separate 2‐S ditches compared to their corresponding traditional reaches directly upstream within the Macatawa watershed, located in West Michigan. Soluble reactive P export was significantly reduced in 2‐S baseflow of both ditch systems. Equilibrium P concentration values suggest retention of P within the 2‐S sediment. P was bound within stable fractions in both 2‐S and traditional reaches. An analysis of P stock within the ditches revealed sediment held over 96% of total P (TP) within each reach compared to <4% in bench vegetation and periphyton combined. Turbidity, but not TP, was reduced in one study ditch, whereas TP, but not turbidity, was reduced in the other study ditch. Geomorphic stability may have been responsible for differing P retention between ditches. Ability to retain P appears to be impacted by physical as well as biogeochemical characteristics; hence, structure and age of 2‐S reaches influence P retention. 相似文献
618.
Idalina Dias-Sardinha David Ross Ana Calapez Gomes 《Journal of Environmental Planning and Management》2018,61(4):635-655
The paper discusses conditions and format of a cluster model to support the management of a potential creative tourism destination in a setting where regional cross-sectoral collaboration is lacking. Creative tourism development requires a flexible framework and a healthy collaboration environment, more so when associated with resources shared by several stakeholders. This article focuses on the tourism potential of archaeological knowledge discovered during the environmental impact assessment of the Alqueva dam (Alentejo, Portugal). Interviews were conducted with 38 regional actors in the tourism and heritage sectors, as well as the dam developers and the companies responsible for archaeological interventions. Findings indicate that the lack of specific local policy addressing archaeological heritage hampers its potential use for tourism development, which is further aggravated by the absence of stakeholder communication and cooperation. A conceptual cluster model for the management of creative tourism destinations based on heritage resources and other local resources is proposed. 相似文献
619.
龙塘镇电子垃圾拆解区土壤和河流底泥重金属赋存形态及生态风险 总被引:2,自引:0,他引:2
龙塘镇是珠三角电子垃圾拆解区之一,采用AAS方法对该地土壤和河流底泥沉积物中5种重金属(Cd、Cr、Cu、Zn和Pb)含量进行测定分析,结果显示周围农田土壤中Cd含量是《国家土壤质量标准》二级标准的3倍左右,是广东省土壤背景值的20倍左右;拆解区土壤Cd超标最为严重,最高达5.67倍,超过广东省土壤背景值达36.17倍;拆解区下游0—1500 m河流底泥中Cd、Cr、Cu、Zn和Pb含量大幅增加且部分金属超标,Cd在0—40 cm深度内含量总体逐渐降低,仍远超背景值,Cu含量采样深度内递减规律最显著且在0—10 cm内含量超标,Cr、Zn和Pb除部分点位在表层积累较多外,其余与背景值相差不大且未超标.采用BCR(the Community Bureau of Reference)法提取重金属不同形态可知,底泥中Cd主要以弱酸溶态和可还原态为主,Cu主要以可氧化态存在,Cr主要以残渣态存在,而Zn和Pb则以可还原态为主;其中Cd的可提取态比例较高(60%),容易释放出来形成"二次污染".潜在生态风险结果表明,河流底泥中Cd生态危害程度属于极强(Ei320);其他金属Cr、Cu、Zn和Pb危害风险程度属于轻微(Ei40);金属Cd对整个RI值贡献最大(88%),应重点加强对Cd污染的防控. 相似文献
620.
Nathan H. Rahe Karl W.J. Williard Jon E. Schoonover 《Journal of the American Water Resources Association》2015,51(4):898-909
Ecosystem processes such as water infiltration and denitrification largely determine how riparian buffers function to protect surface water quality. Reclaimed mine areas offer a unique opportunity to study the restoration of riparian function without the confounding influence of past land use. Between 1980 and 2000 in southern Illinois, agricultural fields with forest buffers were established along three restored stream reaches in reclaimed mine land. Our research objective was to compare common indicators of soil quality (infiltration, soil C and N, bulk density, and soil moisture) between forest and cultivated riparian zones to determine if riparian function was being restored. Soil bulk density was significantly lower in the forest buffers compared to the agricultural fields. The forest buffers had greater soil total C, total N, and moisture levels than agricultural fields likely due to greater organic matter inputs. Soil total C and N levels in forest buffers were positively related to age of restoration, indicating soil quality is gradually being restored in the buffers. Restoration success of riparian buffers should not be estimated by the return of structure alone; it also includes reestablishment of functions such as nutrient cycling and water retention that largely determine water quality benefits. Watershed planning efforts can expect a lag time on the order of decades between riparian restoration activities and surface water quality improvement. 相似文献