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1.
针对缺乏经济有效的中低盐废水脱盐技术问题,本试验利用丛枝菌根(AM)真菌增强植物抗盐胁迫能力,搭建AM强化型生态浮床,既探索新的中低盐废水处理技术,又解决普通浮床植物耐盐胁迫能力差、除盐效率低的问题.结果表明,AM真菌(Glomus etunicatum)与浮床植物美人蕉(Canna indica L.)建立了良好的共生关系,且侵染不受盐胁迫的影响.接种AM真菌提高了生态浮床处理含盐废水的能力,21 d内TDS、COD、TN和TP的去除率分别达到了36. 1%、74. 4%、57. 6%和59. 1%,比未接种AM真菌的普通生态浮床分别提高了79. 2%、36. 4%、32. 7%和37. 6%.从具体盐离子来看,21 d内水体中Na、K、Ca和Mg离子的去除率分别达到了34. 4%、61. 3%、57. 4%和51. 9%,相比未接种AM真菌的普通生态浮床分别提高了11. 4%、37. 1%、18. 3%和24. 6%.从植物对盐的吸收来看,AM的存在促进了美人蕉对Na离子的吸收和向地上部的转移,这可能是AM强化型生态浮床功能得到提升的主要原因之一.本研究表明AM真菌可增强生态浮床修复水体污染的能力,提高脱盐效率.  相似文献   

2.
Studies of the influence of parasites on host fitness generally conclude that parasites have a strong negative effect on their hosts. In this study, we have investigated experimentally the role of Polymorphus minutus, an acanthocephalan parasite, on the salinity tolerance of the freshwater amphipod Gammarus roeseli, one of its intermediate hosts. Unexpectedly, P. minutus-infected gammarids were more tolerant to salinity stress than uninfected ones. The mean lethal salt concentrations for 50% mortality of hosts tested were 17.3 (infected) and 9.7 g/L (uninfected). The parasitic load (one or two parasites per host) did not affect the result. The size of hosts had no significant influence on the salinity tolerance of either infected or uninfected gammarids. The mobility of all types of gammarid decreased when the salinity exceeded 9.0 g/L, but there was no significant difference between infected and uninfected gammarids. We discuss the higher salinity tolerance of infected amphipods in relation to O2 consumption and osmoregulation. Finally, we demonstrate that the salinity tolerance is enhanced in the parasitized amphipod but without a significant change in behavior or an osmoregulatory adjustment.  相似文献   

3.
The effects of NaCI stress on the H^+-ATPase, H^+-PPase activity and lipid composition of plasma membrane(PM) and tonoplast(TP) vesicles isolated from roots and leaves of two soybean cultivars( Glycine max L. ) differing in salt tolerance(Wenfeng^7,salt-tolerant; Union, salt-sensitive) were investigated. When Wenfeng^7 was treated with 0.3% (W/V) NaCI for 3 d, the H^+ -ATP aseactivities in PM and TP from roots and leaves exhibited a reduction and an enhancement, respectively. The H^+ -PPase activity in TP from roots also increased. Similar effects were not observed in roots of Union. In addition, the increases of phospholipid content and ratios of phospholipid to galactolipid in PM and TP from roots and leaves of Wenfeng^7 may also change membrane permeability and hence affect salt tolerance.  相似文献   

4.
为了解外源钙对缓解沙拐枣(Calligonum mongolicum)盐胁迫的主要生理机制,采用盆栽法探究在0、100、200 mmol/L的NaCl胁迫下,分别添加5、10、15和20 mmol/L的Ca(NO32对沙拐枣同化枝中w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)的影响.结果表明,单独添加Ca(NO32使沙拐枣同化枝内w(脯氨酸)、丙二醛含量、w(可溶性蛋白)以及w(可溶性糖)增加,即Ca(NO32对沙拐枣的生长造成了胁迫.对w(脯氨酸)、丙二醛含量、w(可溶性蛋白)、w(可溶性糖)来说,NaCl和Ca(NO32之间均存在极显著的交互作用,与对照相比,在c(NaCl)分别为100、200 mmol/L,添加c[Ca(NO32]为10、20 mmol/L时,w(脯氨酸)显著增加,分别达到最大值(736.7、1 086.3 μg/g);丙二醛含量分别降低了37.8%和40.5%,w(可溶性蛋白)以及w(可溶性糖)均增加.总之,适宜浓度的钙盐通过增加渗透物质w(脯氨酸)、w(可溶性蛋白)及w(可溶性糖),降低丙二醛的含量来有效缓解盐胁迫对沙拐枣幼苗产生的伤害,当c(NaCl)/c[Ca(NO32]为10:1时,缓解作用最佳,并且钙盐对沙拐枣盐胁迫的缓解属于抗性诱导的调节作用.   相似文献   

5.
盆栽试验条件下,通过向污染土壤施加组配改良剂(TH-SM01)、种植景观植物,研究植物对盐、Zn和Mn的耐受能力,及TH-SM01对土壤全盐量、Zn、Mn有效态含量的影响,结果表明:鹤望兰(Strelitzia reginae Aiton)具有较强的耐盐和耐Zn、Mn能力,在重度盐、Zn和Mn复合污染土壤上可优先使用;红花檵木(Loropetalum chinense(R.Br.)Oliver var.rubrum Yieh)、含笑花(Michelia figo(Lour.)Spreng.)、桂花(Osmanthus fragrans(Thunb.)Loureiro)、叶子花(Bougainvillea spectabilis Willd.)对盐的耐受能力亚于鹤望兰,但仍可在TH-SM01的施用下生长,且含笑花、叶子花具有超富集Mn的能力;向土壤中施加TH-SM01可降低土壤全盐量,且种植3个月后TH-SM01仍可以继续发挥脱盐作用;TH-SM01可提高土壤pH,但随着施用时间延长,提高幅度在缩小,且TH-SM01可以降低土壤DTPA-Zn、DTPA-Mn含量,尤其是DTPA-Mn,种植3个月降低率达到94.45%~96.21%。因此,在修复重度盐、Zn和Mn复合污染土壤时,可通过施加TH-SM01和种植耐盐及耐Zn、Mn植物,以降低土壤全盐量和DTPA-Zn、DTPA-Mn含量。  相似文献   

6.
管博  于君宝  陆兆华  张莹  王雪宏 《环境科学》2011,32(8):2422-2429
研究黄河三角洲滨海湿地先锋植物盐地碱蓬在水盐胁迫下的生存机制能够为退化滨海湿地的修复提供重要的理论基础.通过温室控制模拟试验,研究了不同地下水位深度(0、-10、-20、-30 cm)以及不同盐浓度(0%、1%、2%、3%)的交互作用对盐地碱蓬幼苗高度、分枝数、生物量以及叶绿素含量和抗氧化物酶的活性的影响.结果表明,从...  相似文献   

7.
用不同盐分(0.2%、0.4%)、重金属污染土壤进行盆栽实验,研究叶面喷施不同浓度甜菜碱(GB,1、10、50 mmol·L-1)对苋菜抗盐性与重金属累积的影响.结果表明,0.4%重度盐分胁迫下,喷施50 mmol·L-1甜菜碱可大幅提高苋菜茎叶部游离脯氨酸和总游离氨基酸含量;盐分胁迫抑制了苋菜根系对Ca、Mg、K、Fe的吸收,而叶面喷施甜菜碱可显著增强对Ca、Mg、K、Fe的吸收,K/Na、Ca/Na比值随着甜菜碱剂量的增加而逐渐增大.在0.4%盐分下,喷施50 mmol·L-1甜菜碱促使根系K/Na、Ca/Na比值分别增加了40.4%、34.1%,说明盐分越高,外源甜菜碱对苋菜抗盐性更明显.盐分胁迫下,外源甜菜碱明显提高了苋菜根系重金属Cd、Cr、Pb、Cu、Zn的含量.在0.4%盐分与喷施50 mmol·L-1甜菜碱条件下,苋菜根系对各重金属的累积增幅分别为22.1%、127.1%、63.4%、61.1%、56.1%.由根系重金属与盐分离子的相关性分析可知,0.4%盐分处理后,Pb、Cr、Cu、Zn与盐分离子、重金属的吸收变化呈显著正相关(p0.01);而在0.2%盐分处理下,只有Na与Ca、Cd与Cr、Cu与Zn的吸收变化呈显著正相关(p0.01).说明盐分含量较高,外源甜菜碱对苋菜抗盐胁迫效果越明显,对必需元素及其伴随吸收的非必需重金属元素吸收增加也越明显.  相似文献   

8.
Effects of Glomus mosseae on the toxicity of heavy metals to Vicia faba   总被引:5,自引:1,他引:4  
A glasshouse pot experiment was conducted to investigate effects of the arbuscular mycorrhizal fungus Glomus mosseae on the growth of Vicia faba and toxicity induced by heavy metals (HMs) (Cu, Zn, Pb and Cd) in a field soil contaminated by a mixture of these metals. There was also uninoculation treatment (NM) simultaneously. Mycorrhizal (GM) plants have significantly increased growth and tolerance to toxicity induced by heavy metals compared with NM plants. P uptake was significantly increased in GM plants. Mycorrhizal symbiosis reduced the transportation of HMs fi'om root to shoot by immobilizing HMs in the mycorrhizal, shown by increasing the ratios of HMs from root to shoot. Oxidative stress, which can induce DNA damage, is an important mechanism of heavy metal toxicity. GM treatment decreased oxidative stress by intricating antioxidative systems such as peroxidases and non-enzymic systems including soluble protein. The DNA damage induced by heavy metals was detected using comet assay, which showed DNA damage in the plants was decreased by the GM treatment.  相似文献   

9.
Most of the hazardous pollutants are phenolic in nature and persists in the environment. The ability of laccases to oxidize phenolic compounds and reduce molecular oxygen to water has led to intensive studies of these enzymes. Therefore the fungal strains with high laccase activity and substrate affinity that can tolerate harsh environmental conditions have a potential for biotechnological applications. Salt tolerant laccase secreting fungi can be utilized in treatment of saline and phenolic rich industrial effluents such as coir effluent and textile effluent that needed to be diluted several fold before microbial treatment. This is the first study describing the isolation and optimization of a salt tolerant strain of Trichoderma sp. potential for industrial applications. The fungus was identified based on morphological characteristics and was subsequently confirmed with molecular techniques and deposited at National Fungal Culture Collections of India (NFCCI) under the Accession No. Trichoderma viride NFCCI 2745. In contrast to other laccase secreting fungi, light conditions did not exert much influence on laccase production of this strain and salinity enhanced its laccase secretion. The fungus effectively removed the phenolic content of the textile effluent, coir-ret liquor and wood processing effluent within 96 hr of incubation. The tolerance of the fungus to high salinity and phenolic compounds makes this strain ideal for treating saline and phenolic rich industrial effluents.  相似文献   

10.
不同反胶束体系萃取纤维素酶的条件优化对比研究   总被引:1,自引:0,他引:1       下载免费PDF全文
采用3种不同的表面活性剂双(2-乙基己基)磺基琥珀酸钠AOT、十六烷基三甲基溴化铵CTAB及鼠李糖脂RL)溶于正己醇/异辛烷相构建不同的反胶束体系,并对比研究了不同反胶束体系萃取纤维素酶的优化条件.分别探讨了水相pH值、表面活性剂浓度、离子强度和离子种类对纤维素酶萃取效率的影响.实验结果如下:在实验条件下,AOT、CTAB和RL 3种反胶束体系水相最佳pH值分别为3.0、8.0和3.0;表面活性剂最佳浓度依次为:AOT 23.7mmol/L、CTAB 15mmol/L和RL 2.75mmol/L;水相中NaCl浓度会影响纤维素酶的萃取率,3种表面活性剂构建的反胶束体系萃取纤维素酶的萃取率均随着盐离子浓度的增大而降低;水相中离子种类也会影响纤维素酶的萃取率.比较不同反胶束体系在最佳条件下萃取纤维素酶的最佳萃取率:CTAB>AOT>RL.  相似文献   

11.
The present work aimed to develop a novel strategy to bioremediate the petroleum hydrocarbon contaminants in the environment. Salt tolerant bacterium was isolated from Dagang oilfield, China and identified as Corynebacterium variabile HRJ4 based on 16S rRNA gene sequence analysis. The bacterium had a high salt tolerant capability and biochar was developed as carrier for the bacterium. The bacteria with biochar were most effective in degradation of n-alkanes (C16, C18, C19, C26, C28) and polycyclic aromatic hydrocarbons (NAP, PYR) mixture. The result demonstrated that immobilization of C. variabile HRJ4 with biochar showed higher degradation of total petroleum hydrocarbons (THPs) up to 78.9% after 7-day of incubation as compared to the free leaving bacteria. The approach of this study will be helpful in clean-up of petroleum-contamination in the environments through bioremediation process using eco-friendly and cost effective materials like biochar.  相似文献   

12.
‘Lambrusco a foglia frastagliata’ grapevines (Vitis vinifera L.) were grown outdoors at Piacenza (44°55′N, 9°44′E, Po Valley, Italy) with the root system split between two 30-L pots and subjected from pre-veraison (17 July) to harvest (5 September) to soil drying of half of the root system (HS) induced by withholding water from one of the two pots as compared to well-watered (WW) vines (both pots daily recharged at field capacity). Volumetric soil-water content, pre-dawn and mid-morning leaf water potential, single-leaf gas-exchange as assimilation rate, stomatal conductance and transpiration were monitored throughout the trial. Whole-canopy gas-exchange as net CO2 exchange rate (NCER) and transpiration were tracked from 31 August to 7 September on three vines per treatment on a 24-h basis using an enclosure method. Primary leaf carbon isotope (δ13C) composition, yield components and must composition were determined at harvest.Withdrawing water from one pot triggered a water stress response showing higher stomatal sensitivity to changes in air vapour pressure deficit, relatively low assimilation rates, high intrinsic and extrinsic water-use efficiency (WUE) and earlier cessation of shoot growth. Yet, mid-morning leaf water potential was consistently lower in HS treatment over stress as compared to WW, indicating an anisohydric adjustment. Canopy NCER given on a leaf-area basis showed mean daily rates ranging from 3.9 to 4.9 μmol m2 s?1 in WW canopies against 2.6–3.0 μmol m?2 s?1 in HS. Conversely, canopy transpiration rates varied from 0.915 to 1.157 mmol m?2 s?1 for WW to 0.630–0.714 mmol m2 s?1 in HS. Increased leaf-based intrinsic and extrinsic WUE in HS did not match the canopy response, which to some extent resulted in an opposite outcome, i.e. higher canopy WUE in well-watered vines especially in the morning hours. Likewise, δ13C did not differ between treatments. This suggests caution when point-time determinations of single-leaf-based WUE are extrapolated to the whole-canopy behaviour when assessing the water saving strategies of a given genotype. The stressed vines achieved no variation in yield level and components and had improved grape composition as to soluble solids and total anthocyanins. This optimal behaviour is likely due to earlier shoot growth cessation, enhanced maturity and a buffering leaf-to-fruit ratio (3.61 m2 kg?1) that mitigated the effects of post-veraison stress.  相似文献   

13.
An assessment is made of the atmospheric emissions from the life cycle of fuel ethanol coupled with the cogeneration of electricity from sugarcane in Brazil. The total exergy loss from the most quantitative relevant atmospheric emission substances produced by the life cycle of fuel ethanol is 3.26E+05 kJ/t of C2H5OH. Compared with the chemical exergy of 1 t of ethanol (calculated as 34.56E+06 kJ), the exergy loss from the life cycle's atmospheric emission represents 1.11% of the product's exergy. The activity that most contributes to atmospheric emission chemical exergy losses is the harvesting of sugarcane through the methane emitted in burning. Suggestions for improved environmental quality and greater efficiency of the life cycle of fuel ethanol with cogenerated energy are: harvesting the sugarcane without burning, renewable fuels should be used in tractors, trucks and buses instead of fossil fuel and the transportation of products and input should be logistically optimized.  相似文献   

14.
This paper evaluates life cycle greenhouse gas (GHG) balances in production and use of molasses-based ethanol (EtOH) in Nepal. The total life cycle emissions of EtOH is estimated at 432.5 kgCO2eq m−3 ethanol (i.e. 20.4 gCO2eq MJ−1). Avoided emissions are 76.6% when conventional gasoline is replaced by molasses derived ethanol. A sensitivity analysis was performed to verify the impact of variations in material and energy flows, and allocation ratios in the GHG balances. Market prices of sugar and molasses, amount of nitrogen-fertilizers used in sugarcane production, and sugarcane yield per hectare turn out to be important parameters for the GHG balances estimation. Sales of the surplus electricity derived from bagasse could reduce emissions by replacing electricity produced in diesel power plants. Scenario analysis on two wastewater processes for treatment of effluents obtained from ethanol conversion has also been carried out. If wastewater generated from ethanol conversion unit is treated in pond stabilization (PS) treatment process, GHG emissions alarmingly increase to a level of 4032 kgCO2eq m−3 ethanol. Results also show that the anaerobic digestion process (ADP) and biogas recovery without leakages can significantly avoid GHG emissions, and improve the overall emissions balance of EtOH in Nepal. At a 10% biogas leakage, life cycle emissions is 1038 kgCO2eq m−3 ethanol which corresponds to 44% avoided emissions compared to gasoline. On the other hand, total emissions surpass the level of its counterpart (i.e. gasoline) when the leakage of biogas exceeds 23.4%.  相似文献   

15.
Habitat destruction has resulted in the extinction of many plant species from the earth, and many more face extinction. Likely, the annual endemic Mediterranean knapweed (Centaurea tchihatcheffii) growing in the Golbasi district of Ankara, Turkey is facing extinction and needs urgent conservation. Plant tissue culture, a potentially useful technique for ex situ multiplication, was used for the restoration of this ill-fated plant through seed germination, micropropagation from stem nodes, and adventitious shoot regeneration from immature zygotic embryos. The seeds were highly dormant and very difficult to germinate. No results were obtained from the micropropagation of stem nodes. However, immature zygotic embryos showed the highest adventitious shoot regeneration on Murashige and Skoog (MS) medium, containing 1 mg l−1 kinetin and 0.25 mg l−1 NAA. Regenerated shoots were best rooted on MS medium containing 1 mg l−1 IBA and transferred to the greenhouse for flowering and seed set. As such, the present work is the first record of in vitro propagation of critically endangered C. tchihatcheffii, using immature zygotic embryos, and is a step forward towards conservation of this indigenous species.  相似文献   

16.
Carbon footprint (CFP) of sugar produced from sugarcane in eastern Thailand was estimated from greenhouse gas emissions (CO2, CH4, and N2O) during the sugarcane cultivation and milling process. The use of fossil fuels, chemical and organic fertilizer and sugarcane biomass data during cultivation were collected from field surveys, questionnaires and interviews. Sugar mill emissions, fossil fuel utilization and greenhouse gas emission from wastewater treatments were included. The results show that sugar production has a carbon footprint of 0.55 kg CO2e kg?1 sugar. This carbon footprint was a sum of 0.49 kg CO2e kg?1 sugar from sugarcane cultivation and 0.06 kg CO2e kg?1 sugar from the milling process. For the cultivation part, most of the GHGs emissions were from fertilizer, fossil fuel use and biomass burning. The CFP in eastern Thailand is sensitive to the type of data selected for calculation and of variations of farm inputs during sugarcane cultivation. There was no significant difference of CFP among farm sizes, although small farms tended to give a relatively higher CFP than that of medium and large farms.  相似文献   

17.
硅对锰胁迫下水稻吸收矿质元素的影响   总被引:1,自引:0,他引:1  
揭示Mn胁迫下硅对水稻中营养元素的影响特点,可为减轻水稻锰毒害提供理论依据.因此,本文通过水培试验,利用两个对Mn耐性不同的水稻品种,研究施Si(1.5 mmol·L-1)对Mn(2 mmol·L-1)胁迫下水稻营养元素的影响.同时,采用同步辐射X射线荧光(SRXRF)分析了营养元素的分布特点,以及各元素分布之间的相互关系.结果显示,高锰胁迫下,耐性品种叶片和根系的Mn含量都显著高于敏感品种.高锰胁迫抑制了敏感品种K元素从根部向叶片的转移,而降低了耐性品种的根部吸收K元素的能力.高锰胁迫下,施硅处理增加了敏感品种叶片中K、Fe和Zn的相对含量;可显著增加耐性品种叶片中K和Zn的相对含量,显著降低其Ca和Fe的相对含量.高锰胁迫下施硅可以促进敏感品种K元素的转运,促进耐性品种Zn元素转运.Si对耐性品种各元素含量保持相对平衡具有重要作用.水稻体内的锰大部分是硫酸锰,高锰胁迫下施硅不改变水稻植株体内的锰形态.  相似文献   

18.
Boehmeria nivea(L.) Gaud. is a potential candidate for the remediation of Cd contaminated sites. The present investigation aims to explore Cd tolerance threshold and to quickly identify the role of exogenous organic acids in Cd uptake and abiotic metal stress damage.Elevated Cd levels(0–10 mg/L) resulted in an obvious rise in Cd accumulation, ranging from268.0 to 374.4 in root and 25.2 to 41.2 mg/kg dry weight in shoot, respectively. Citric acid at1.5 mmol/L significantly facilitated Cd uptake by 26.7% in root and by 1-fold in shoot,respectively. Cd translocation efficiency from root to shoot was improved by a maximum of66.4% under 3 mmol/L of oxalic acid. Citric acid exhibited more prominent mitigating effect than oxalic acid due to its stronger ligand affinity for chelating with metal and avoiding the toxicity injury of free Cd ions more efficiently. The present work provides a potential strategy for efficient Cd remediation with B. nivea.  相似文献   

19.
介绍了一种高盐废水零排放工艺,通过对常规废水零排放后期处理流程的重新设计,以方法最优,效益最大化为目的,论证流程中各重要环节,确立实际组合工艺采用化学软化—管式微滤—纳滤—反渗透(RO)—碟管式反渗透(DTRO)—蒸发结晶系统(盐硝分产)的处理路线,分别回收Na2SO4和NaCl。同时,通过多种检测手段,确定氯化钠质量达GB/T 5462—2015《工业盐》的优级品等级,实现对外销售,真正达到零排放、零污染。  相似文献   

20.
采用培养皿滤纸萌发试验,研究在3种pH(4.0、6.0和8.0)条件下,不同质量浓度(0、5、10、20、40和80mg/L)的CdCl2溶液对紫花苜蓿种子萌发的胁迫效应. 结果表明,低质量浓度的CdCl2(≤20mg/L)显著提高了紫花苜蓿种子的发芽率、发芽势、发芽指数和活力指数,ρ(CdCl2)为20mg/L、pH为6.0时活力指数与对照组相比明显增加,达到177.52±16.61;随着ρ(CdCl2)的提高,CdCl2对苜蓿幼苗生长的促进效应不断增强,ρ(CdCl2)为20mg/L时,3种pH条件下的芽鲜质量分别为(6.60±0.11)、(6.68±0.20)和(9.51±0.16)mg,根鲜质量分别为(6.71±0.10)、(7.09±0.08)和(9.10±0.08)mg,达到最大; 当ρ(CdCl2)达到40和80mg/L时,紫花苜蓿种子萌发和幼苗生长则受到显著抑制,ρ(CdCl2)为80mg/L时发芽率和活力指数分别仅为对照组的14.8%和46.5%;ρ(CdCl2)为80mg/L时芽鲜质量最低,3种pH条件下分别为(3.48±0.15)、(4.03±0.19)和(7.00±0.22)mg. 研究还发现,紫花苜蓿种子发芽率和活力指数随pH降低而降低,弱碱(pH=8.0)条件下紫花苜蓿在ρ(CdCl2)为80mg/L时的发芽率为66.40%±3.19%,大于酸性条件(pH=4.0、6.0)下的发芽率(11.20%±3.61%、9.20%±4.22%),而活力指数(93.90±10.71)也高于酸性条件(pH=4.0、6.0)下的活力指数(49.77±3.25、56.67±3.48),表明pH由酸性到碱性的变化过程能够缓解CdCl2对紫花苜蓿种子萌发和幼苗生长的毒性.   相似文献   

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