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11.
A fungal consortium including Aspergillus niger, Mucor hiemalis and Galactomyces geotrichum was tested for the treatment of dairy wastewater. The bio-augmentation method was tested at lab-scale (4 L), at pilot scale (110 L) and at an industrial scale in Wastewater Treatment Plants (WWTP). The positive impact of fungal addition was confirmed when fungi was beforehand accelerated by pre-culture on whey (5 g/L lactose) or on the dairy effluent. Indeed, chemical oxygen demand (COD) removal yields increased from 55% to 75% for model medium, diluted milk. While after inoculation of an industrial biological tank from a dairy factory with the fungal consortium accelerated by pre-cultivation in a 1000 L pilot plant, the outlet COD values decreased from values above the standard one (100 mg/L) to values in the range of 50-70 mg/L. In addition, there was a clear impact of fungal addition on the ’hard’ or non-biodegradable COD owing to the significant reduction of the increase of the COD on BOD 5 ratio between the inlet and the outlet of the biological tank of WWTP. It was in the range of 451%-1111% before adding fungal consortium, and in the range of 257%-153% after bio-augmentation with fungi. An inoculated bioreactor with fungal consortium was developed at lab-scale and demonstrated successfully at pilot scale in WWTP. 相似文献
12.
丛枝菌对转Bt基因棉根际土壤营养物质及酶活性的影响 总被引:1,自引:0,他引:1
转Bt基因抗虫棉已在全球范围内广泛种植,然而Bt棉根际分泌物是否会影响土壤理化性质及土壤功能尚缺乏深入研究。通过盆栽实验方法,设计不同的棉花品种与是否接种丛枝菌总共4个处理,以此研究Bt棉和接种丛枝菌根真菌对植物根际土壤营养物质含量以及土壤酶活性的影响。结果显示:丛枝菌可以使non-Bt棉和Bt棉根际土壤营养物质中的土壤有机质和土壤总氮含量显著增加,但是对根际土壤全磷却鲜有影响。转基因对于不同品种棉花根际土壤酶,丛枝菌均能有效增强其活性。由此表明,丛枝菌对Bt棉和non-Br棉根际土壤环境均具有改善作用。 相似文献
13.
The effects of arbuscular mycorrhizal fungi (AMF) Glomus mosseae on the responses to elevated O3 in growth and nutrition of snap
bean (Phaseolus vulgaris L. cv Guangzhouyuan) were investigated. Exposure was conducted in growth chambers by using three O3
concentrations (20 (CF), 80 (CFO1) and 120 nL/L (CFO2); 8 hr/day for 75 days). Results showed that elevated O3 slightly impacted
overall mycorrhizal colonization, but significantly decreased the proportional frequency of hypha and increased the proportional
frequency of spores and vesicles, suggesting that O3 had significant effects on mycorrhizal structure. Elevated O3 significantly decreased
yield, dry mass and nutrient contents (N, P, K, Ca and Mg) in both non-mycorrhizal and mycorrhizal plants. However, significant
interactive effects were found in most variables due to that the reduction by O3 in the mycorrhizal plants was less than that in the
non-mycorrhizal plants. Additionally, AMF increased the concentrations of N, P, Ca, and Mg in shoot and root. It can be concluded
that AMF alleviated detrimental effects of increasing O3 on host plant through improving plant nutrition and growth. 相似文献
14.
Arbuscular mycorrhizal fungi(AMF) are important components of soil microbial communities,and play important role in plant growth. However, the effects of AMF phylogenetic groups(Glomeraceae and non-Glomeraceae) on host plant under various heavy metal levels are not clear. Here we conducted a meta-analysis to compare symbiotic relationship between AMF phylogenetic groups(Glomeraceae and non-Glomeraceae) and host plant functional groups(herbs vs. trees, and non-legumes vs. legumes) at three heavy metal levels. In the meta-analysis, we calculate the effect size(ln(RR)) by taking the natural logarithm of the response ratio of inoculated to non-inoculated shoot biomass from each study. We found that the effect size of Glomeraceae increased, but the effect size of non-Glomeraceae decreased under high level of heavy metal compared to low level. According to the effect size, both Glomeraceae and non-Glomeraceae promoted host plant growth, but had different effects under various heavy metal levels. Glomeraceae provided more benefit to host plants than non-Glomeraceae did under heavy metal condition, while non-Glomeraceae provided more benefit to host plants than Glomeraceae did under no heavy metal. AMF phylogenetic groups also differed in promoting plant functional groups under various heavy metal levels.Interacting with Glomeraceae, herbs and legumes grew better than trees and non-legumes did under high heavy metal level, while trees and legumes grew better than herbs and non-legumes did under medium heavy metal level. Interacting with non-Glomeraceae, herbs and legumes grew better than trees and non-legumes did under no heavy metal. We suggested that the combination of legume with Glomeraceae could be a useful way in the remediation of heavy metal polluted environment. 相似文献
15.
北京雾霾天气生物气溶胶浓度和粒径特征 总被引:11,自引:6,他引:5
近年来北京雾霾天气频发,空气颗粒物聚集是导致雾霾天气发生的主要原因之一.作为一种重要的空气颗粒物,生物气溶胶对人体健康存在危害.本研究调查了雾霾天气时,生物气溶胶浓度和粒径分布规律;对其同空气质量指数PM2.5(AQI),环境温度和湿度间的Spearman’s相关性进行了研究;分析了冬夏两季重度雾霾天气时,生物气溶胶粒径分布规律.结果表明,生物气溶胶浓度与PM2.5(AQI)呈负相关,与环境温度呈正相关.环境湿度与细菌气溶胶浓度呈负相关而与真菌气溶胶浓度呈正相关.在冬季,最大浓度细菌和真菌气溶胶分别在4.5~7.0μm和2.1~3.3μm粒径范围内检测到,而夏季最高浓度细菌和真菌气溶胶均分布在3.3~4.5μm范围内.本研究结果将为不同雾霾天气下,评价生物气溶胶对人类健康造成的危害提供基础数据. 相似文献
16.
利用卷枝毛霉孢子悬液与小球藻共培养,用过滤含藻菌球的方式来收获微藻.以人工配水为培养基,收获效率为指标,通过单因子试验和正交试验得到最佳收获条件为:pH=6.0,葡萄糖质量浓度为1.25 g·L~(-1),菌藻比为1∶250,收获效率为91.08%.对培养前后培养液中多糖质量浓度进行测定,发现小球藻在培养48 h后多糖质量浓度较培养前增加了约0.047g·L~(-1),而菌藻共培养后的混合液中多糖质量浓度为0.019 g·L~(-1).由此可知在菌藻共培养过程中,小球藻会向外分泌某些水溶性多糖物质供卷枝毛霉利用,二者有一定的共生作用.对小球藻和卷枝毛霉细胞表面Zeta电位进行测量发现,小球藻细胞表面的Zeta电位值随着藻液pH值变化波动不大;而卷枝毛霉细胞表面的Zeta电位值,随着pH值的变小,电位值可由原先最低的-37.7 m V升至-9.87 m V.由此推定菌藻相互吸附的主要机制为电中和吸附. 相似文献
17.
利用透射电子显微镜观察分析白腐真菌(黄孢原毛平革菌)在处理染料废水活性艳红X-3B过程中,染料和盐度对黄孢原毛平革菌的细胞结构产生的毒性作用.结果表明:活性艳红X-3B染料对黄孢原毛平革菌产生生物毒性作用,且随着染料浓度的增加,细胞受损伤程度不断加深.加入100 mg/L的染料活性艳红X-3B后,黄孢原毛平革菌菌丝细胞形态发生变化,出现质壁分离现象;染料浓度进一步加大,菌丝细胞超微结构受到损伤逐渐严重.染料废水中的盐度对黄孢原毛平革菌细胞也会造成损伤,且损伤程度随盐度增大而增大.NaCl浓度为3 g/L时,菌丝细胞发生质壁分离;而当NaCl加入量高于8 g/L时,细胞膜受损,线粒体、细胞核呈现空泡化,表现为受到不可逆的损伤.染料和盐双因子对黄孢原毛平革菌细胞的损伤效应表现为其损伤程度与单因子作用一致,且染料的影响作用占主导. 相似文献
18.
从自然环境中分离到2株对染料活性红M-3BE具有明显脱色效果的真菌,经形态学和26S rDNA序列分析,将其鉴定为Fusarium oxysporum和Geosmithia viridis.采用初始浓度50 mg/L M-3BE的液体培养基同步脱色培养,F.oxysporum在24 h内对M-3BE的脱色率为96%,G.viridis在36 h内的脱色率为82%.对脱色酶系的检测结果表明,脱色过程中F.oxysporum能产生LiP和MnP,G.viridis则仅产生LiP.此外,F.oxysporu和G.viridis对另外7种染料的脱色率也可分别达到16%~100%和83.3%~100%. 相似文献
19.
20.
The paper is devoted to the phenomenon of methanogenic activity of woody debris, i.e., methane production in the course of wood decomposition by fungi, which are not directly involved in methane synthesis but form an initial link in the trophic chain leading to methanogenic archaea. Expert evaluation of probable amounts of methane emission is made. The results show that woody debris is an important global source of this greenhouse gas. 相似文献