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411.
Arbuscular mycorrhizal fungi (AMF) have great potential for assisting heavy metal hyperaccumulators in the remediation of contaminated soils. However, little information is available about the community composition of AMF under natural conditions in soils contaminated by antimony (Sb). The objective of this study was to investigate the characteristics of AMF molecular diversity, and to explore the effects of Sb content and soil properties on the AMF community structure in an Sb mining area. Four Sb mine spoils and one adjacent reference area were selected from around the Xikuangshan mine in southern China. The association of AMF molecular diversity and community composition with the rhizosphere soils of the dominant plant species was studied by Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis (PCR-DGGE). Results from all five studied sites showed that the diversity of AMF decreased with increasing Sb concentration. Principal component analysis (PCA) indicated that the AMF community structure was markedly different among these groups. Further redundancy analysis (RDA) showed that Sb contaminationwas the dominating factor influencing the AMF community structure in the Sb mine area. However, the multivariate analysis showed that, apart from the soil Sb content, extractable nitrogen content and organic matter content also attributed to AMF sequence distribution type. Some AMF sequences were only found in the highly contaminated area and these might be ideal candidates for improving phytoremediation efficiency in Sb mining regions. Gene sequencing analysis revealed that most species were affiliated with Glomus, suggesting that Glomus was the dominant AMF genus in the studied Sb mining area.  相似文献   
412.
Biological soil disinfestation is an effective method to control soil-borne disease by flooding and incorporating with organic amendments, but field conditions and resources sometimes limited its practical application. A laboratory experiment was conducted to develop practice guidelines on controlling Fusarium wilt, a widespread banana disease caused by Fusarium oxysporum f. sp. cubense (FOC). FOC infested soil incorporated with rice or maize straw at rates of 1.5 tons/ha and 3.0 tons/ha was incubated under flooded or water-saturated (100% water holding capacity) conditions at 30°C for 30 days. Results showed that FOC populations in the soils incorporated with either rice or maize straw rapidly reduced more than 90% in the first 15 days and then fluctuated till the end of incubation, while flooding alone without organic amendment reduced FOC populations slightly. The rapid and dramatic decrease of redox potential (down to − 350 mV) in straw-amended treatments implied that both anaerobic condition and strongly reductive soil condition would contribute to pathogen inactivation. Water-saturation combined with straw amendments had the comparable effects on reduction of FOC, indicating that flooding was not indispensable for inactivating FOC. There was no significant difference in the reduction of FOC observed in the straw amendments at between 1.5 and 3 tons/ha. Therefore, incorporating soil with straw (rice or maize straw) at a rate of 3.0 tons/ha under 100% water holding capacity or 1.5 tons/ha under flooding, would effectively alleviate banana Fusarium wilt caused by FOC after 15-day treating under 30°C.  相似文献   
413.
Effect of aeration rate on composting of penicillin mycelial dreg   总被引:2,自引:0,他引:2  
Pilot scale experiments with forced aeration were conducted to estimate effects of aeration rates on the performance of composting penicillin mycelial dreg using sewage sludge as inoculation. Three aeration rates of 0.15, 0.50 and 0.90 L/(min·kg) organic matter(OM) were examined. The principal physicochemical parameters were monitored during the 32 day composting period. Results showed that the higher aeration rate of 0.90 L/(min·kg) did not corresponded to a longer thermophilic duration and higher rates of OM degradation;but the lower aeration rate of 0.15 L/(min·kg) did induce an accumulation of NH+4-N contents due to the inhibition of nitrification. On the other hand, aeration rate has little effect on degradation of penicillin. The results show that the longest phase of thermophilic temperatures ≥ 55°C, the maximum NO-3-N content and seed germination, and the minimum C/N ratio were obtained with 0.50 L/(min·kg) OM. Therefore, aeration rates of0.50 L/(min·kg) OM can be recommended for composting penicillin mycelial dreg.  相似文献   
414.
以多胺羧酸(H5dtpa)为配体获得同时含铋和铁双金属配合物的配位分子前驱体,通过低温热分解前驱体制得Fe-Bi-O三元复合纳米氧化物粉末。采用XRD、SEM、Uv-Vis DRS、PL以及VSM等方法对所得复合氧化物进行结构和性质表征。结果表明所制备的复合物粒径在100 nm左右,主相为Fe Bi O3,在室温时表现出弱铁磁性,其弱磁性可能来自Fe Bi O3的尺寸限域效应。该复合物在200~600nm范围对光具有较强的吸收,其直接带隙λeg=2.02 e V。另外,分别以甲基橙和苯酚为降解模型,初步研究了其光催化氧化性能,于20 mg/L的弱酸性甲基橙溶液和苯酚溶液中分别添加0.25 g/L制备的Fe Bi O3粉末,甲基橙溶液光照5 h后脱色率为90%,而苯酚溶液光照4 h脱色率达100%。  相似文献   
415.
通过对比Mn Ox/AC、AC、无催化剂对甲苯的去除率和副产物的浓度,得知Mn Ox能大大提高甲苯去除率和降低副产物浓度。实验同时研究了负载量、煅烧温度和载体活性炭的活化对甲苯去除率的影响,实验表明:20%Mn Ox负载经过850℃活化的活性炭在350℃下煅烧得到的催化剂的活性最高。试验用BET、XRD和红外对催化剂进行了表征,研究发现,经过活化的催化剂比表面积高于没有活化的催化剂,随着负载量的增加比表面积降低,温度为250℃时硝酸锰主要分解为Mn2O3,温度为350℃时主要分解产物为Mn3O4,温度为450℃时主要为Mn O。红外表明反应后的催化剂表面氧化基团增加。  相似文献   
416.
2012年4~10月采用自制沉降颗粒收集装置收集主养草鱼和黄颡鱼池塘生态系统中沉降颗粒物,开展了颗粒物质的垂直沉降量以及沉降颗粒中碳氮磷等营养物质的组成及沉降通量的季节变化特征的研究。结果表明:养殖可以显著提高池塘颗粒物质的垂直沉降量,主养草鱼池塘中颗粒物质垂直沉降量显著高于主养黄颡鱼池塘(p0.01),且两种养殖模式池塘颗粒物质沉降量随着养殖时间推进有显著增加的趋势。主养草鱼的池塘中颗粒物质垂直沉降量在100.39~414.66g/(m2·d)之间变化,平均为224.46g/(m2·d),主养黄颡鱼池塘中沉降颗粒物质垂直沉降量在34.14~272.91g/(m2·d)之间变化,平均为155.18g/(m2·d)。两种养殖模式沉降颗粒的碳氮磷成分在养殖周期内的变化规律不明显但具有相似的变化趋势,主养黄颡鱼池塘沉降颗粒中TN、TC、TOC和TON的含量均比同时期主养草鱼高,且均随着养殖时间的推进,沉降颗粒中碳氮磷的总量呈增加趋势。两种养殖模式池塘沉降颗粒中的C/N比值与沉积物中的C/N比值较为接近,表明沉降颗粒与沉积物营养物质来源具有一定的相似性,同时养殖系统内养殖对象与其所处环境的相互依存和相互影响对颗粒物质的产生以及沉降具有重要作用。  相似文献   
417.
对东滩植被带光量子通量密度的调查研究表明:互花米草带与海三棱藨草带光量子通量密度没有显著性差异,其值分别为1 570和1 556μmol/(m2·s)。光照对两物种的生长、繁殖等植物行为的影响只取决于其对光照的利用能力和效率;在互花米草和海三棱藨草混生带,到达互花米草和海三棱藨草的光量子通量密度之间存在显著差异(P0.05),互花米草对海三棱藨草的遮荫效应达63%,表明互花米草对海三棱藨草具有强的遮荫作用。光照不足严重影响海三棱藨草的生长,在混生带,海三棱藨草生长速率降低,种群密度和生物量减少,植株高度增加。因此,互花米草对海三棱藨草的遮荫作用,抑制了海三棱藨草在中潮滩的更新过程,因而也是造成海三棱藨草生境丧失的重要原因之一。  相似文献   
418.
419.
Drinking water utilities are interested in upgrading their treatment facilities to enhance micropollutant removal and byproduct control. Pre-oxidation by chlorine dioxide (ClO2) followed by coagulation-flocculation-sedimentation and advanced oxidation processes (AOPs) is one of the promising solutions. However, the chlorite (ClO2) formed from the ClO2 pre-oxidation stage cannot be removed by the conventional coagulation process using aluminum sulfate. ClO2 negatively affects the post-UV/chlorine process due to its strong radical scavenging effect, and it also enhances the formation of chlorate (ClO3). In this study, dosing micromolar-level ferrous iron (Fe(II)) into aluminum-based coagulants was proposed to eliminate the ClO2 generated from ClO2 pre-oxidation and benefit the post-UV/chlorine process in radical production and ClO3 reduction. Results showed that the addition of 52.1-µmol/L FeSO4 effectively eliminated the ClO2 generated from the pre-oxidation using 1.0 mg/L (14.8 µmol/L) of ClO2. Reduction of ClO2 increased the degradation rate constant of a model micropollutant (carbamazepine) by 55.0% in the post-UV/chlorine process. The enhanced degradation was verified to be attributed to the increased steady-state concentrations of HO· and ClO· by Fe(II) addition. Moreover, Fe(II) addition also decreased the ClO3 formation by 53.8% in the UV/chlorine process and its impact on the formation of chloro-organic byproducts was rather minor. The findings demonstrated a promising strategy to improve the drinking water quality and safety by adding low-level Fe(II) in coagulation in an advanced drinking water treatment train.  相似文献   
420.
伴随着我国经济发展和城镇化进程,固体废物产生呈强度高、利用不充分的状态,造成了严重的资源浪费和环境污染. 随着风险意识的加强,准确评估固体废物的环境风险,已经成为确定固体废物管控目标、边界、优先序的重要基础. 由于固体废物的特性复杂、处理链条长、流动过程受区域发展特征的影响,其环境风险呈现风险因子多元、空间异质性强、不确定性高、易产生长期累积性风险等规律. 现有的固体废物环境风险评估大多基于源项分析,针对特定环节或设施开展定量或半定量的污染物暴露与健康风险评估,缺乏对全过程的系统性分析,无法从全局及区域上综合评估固体废物的环境风险水平. 因此,本文提出固体废物全过程精细化环境风险评估框架,包括固体废物全生命周期路径梳理及特征识别、风险因子及其释放转运过程辨析、受体的最大可接受环境风险水平评估、基于多评价指标的固体废物环境风险的量化,以期为实现固体废物环境风险精细化管控提供支撑.   相似文献   
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