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521.
利用包埋广谱性高效反硝化填料处理城市污水厂二级出水,可有效降低出水总氮(TN)浓度,本研究共分为两部分,D1阶段研究了包埋反硝化填料对污水厂二级出水的适应性、TN去除效果、稳定运行及填料反冲洗的工况条件; D2阶段研究了填料在中试条件下稳定运行1 a脱氮性能的变化,并通过高通量测序和荧光定量分析(q PCR)手段,研究对比了包埋填料运行前后微生物种群的变化规律.通过研究发现,包埋反硝化填料在水温为(24±1)℃、pH为7. 1、HRT为1 h和填充率为10%,投加乙酸钠保证碳源充足的条件下稳定运行7 d,即可适应二级出水水质,实现出水总氮5 mg·L~(-1).通过对比研究不同水力停留时间(HRT)对填料TN去除效果的影响,得出适宜的HRT为30 min,填充率为10%的运行条件,在7. 2 m~3·d~(-1)的进水条件下经过1 a的稳定运行,TN去除率最高可达到90. 42%,出水总氮可稳定在5 mg·L~(-1)以下.通过对比反冲洗效果,确定了反冲洗强度为5. 2 L·(m~2·s)~(-1),周期为每3 d进行一次.高通量测序和荧光实时定量PCR分析结果表明,运行前后填料上反硝化功能菌属的丰度及拷贝数都有了明显增长,这说明细菌在包埋条件下可实现良好的自我生长.  相似文献   
522.
中国居民膳食结构升级、国际贸易与粮食安全   总被引:2,自引:0,他引:2  
辛良杰 《自然资源学报》2021,36(6):1469-1480
目前,中国居民膳食消费水平与结构正在由温饱型向全面小康型转变,形式上表现为由“粮菜型”向“粮肉菜果”多元型和由传统家庭烹饪型向现代便捷型转变。膳食消费结构和水平的改变将影响未来中国的粮食消费量。以中国台湾居民的膳食消费发展规律判断,目前中国大陆居民的膳食消费水平距离富裕水平下的稳定状态整体差距超过50%,肉禽类差距超过一倍。而2018年中国粮食表观自给率已经下降到了85%,大豆自给率仅为15%,虚拟耕地自给率仅为72.6%。在食物消费达到富裕稳定态时,中国不仅需要进口大量的蛋白饲料,还可能需要进口相当数量的能量饲料。基本结论为:仅仅依靠中国本土的农业生产资源已难以维持全面小康水平下的本土农产品需求,发展到富裕水平短缺将会更甚,依赖国际市场是必然需求。从维护生态环境的角度讲,在农产品进口贸易上可多考虑进口动物性产品,适当放开粮食类产品进口数量,自己生产水果、蔬菜等类的农产品。  相似文献   
523.
通过温室盆栽试验,研究多元复合调理剂(石灰石、铁粉、硅肥和钙镁磷肥,简称LISP)对土壤基本理化性质、Cd和As的生物有效性和微生物群落结构的影响.结果表明,LISP可改变土壤基本理化性质,降低土壤有效态Cd和As含量,并改变土壤微生物群落结构.在0.4%的LISP添加下,土壤pH值、有效磷和总磷含量较CK处理分别显著(P< 0.05)提高0.57单位、130.6%和18.38%,同时土壤有效态Cd和As含量较对照分别显著(P< 0.05)降低21.76%和16.39%.高通量测序结果表明,添加LISP可维持污染土壤中正常微生物群落的多样性和丰富度,而显著改变土壤微生物群落的组成和结构,其中厚壁菌门、放线菌门和浮霉菌门等门水平物种的相对丰度增加,而绿弯菌门、酸杆菌门和疣微菌门等门水平物种的相对丰度降低.冗余分析和Mantel检验分析表明,土壤pH值、有效磷以及有效态Cd和As含量是影响土壤微生物群落结构的主要环境因子.上述结果表明,LISP是一种有效的、生态安全的调理剂用于农田土壤Cd和As污染土壤修复.  相似文献   
524.
为了确定长期饥饿后连续流一段式部分亚硝化-厌氧氨氧化(SPNA)工艺的性能恢复情况,采用连续流反应器,考察了在室温下(11~23℃)经历161d饥饿期的SPNA系统性能恢复策略的可行性及脱氮性能和菌群结构变化.通过控制DO浓度及进水氨氮负荷,逐渐实现亚硝酸盐氧化菌(NOB)的抑制和淘汰、氨氧化菌(AOB)和厌氧氨氧化菌(AnAOB)的活性恢复和富集.在68d内系统总氮去除率恢复至72.13%,氨氮去除率恢复至94.75%.微颗粒污泥(3200μm)的占比从42.04%升至60.98%.微生物群落结构分析发现,停止运行161d后系统Candidatus Kuenenia的相对丰度升至25.53%,表现出较强的抵抗饥饿条件的能力,系统恢复后其相对丰度逐渐降低,接近反应器饥饿前水平.AOB的高底物利用能力是系统恢复的前提,AnAOB活性的提高是系统恢复的关键.系统性能的成功恢复表明室温下161d饥饿期对系统造成的影响是可逆的,长期室温下储存SPNA污泥是可行的.  相似文献   
525.
526.
土壤中氧化亚氮(N2O)的释放量占全球N2O释放总量的60%.其中,稻田土壤是N2O最主要的释放源.反硝化过程是稻田土壤N2O生成的主要微生物过程之一.本研究选取广东韶关稻田垂向土壤(0~100 cm)为研究对象,通过乙炔抑制剂法测定了N2O产生潜势和反硝化潜势,并利用针对特异性功能基因的实时荧光定量和高通量测序技术分别分析反硝化功能基因丰度和反硝化微生物群落结构.结果显示:0~10 cm深度的土壤样品N2O产生潜势最高,可达(0.020±0.0035)μg·g-1·h-1.反硝化功能基因中,nirK基因的丰度峰值((1.51±0.0015)×108 copies·g-1)出现在0~10 cm深度,而nosZ和nirS基因的丰度峰值((4.29±0.0015)×107 copies·g-1和(8.86±0.0010)×107 copies·g-1)均出现在10~20 cm深度.稻田垂向土壤中N2O产生潜势和相关的反硝化功能基因(nosZ、nirK和nirS)丰度均随土壤深度的增加而逐渐降低.其中在所有深度的土壤样品中nirK基因的丰度均高于nirS.基于nirK基因的高通量测序结果发现慢生根瘤菌(Bradyrhizobium)的相对丰度最高(44.06%±6.14%,n=6).相关性分析表明,稻田土壤中N2O产生潜势与环境因子(TN、TC和含水率)、反硝化功能基因丰度以及慢生根瘤菌(Bradyrhizobium),罗河杆菌属(Rhodanobacter)和亚硝化螺菌属(Nitrosospira)的相对丰度呈正相关.上述结果表明稻田土壤中环境因子和反硝化功能基因丰度影响了N2O产生潜势的垂向分布.  相似文献   
527.
2020年12月在深圳市城市区域典型生境特征溪流——城市山区源头溪流金龟河、国家地质公园保护区入海溪流杨梅坑河与黑臭水体治理后溪流石溪河,开展底栖动物多样性与生境质量状况取样,通过多元统计分析探明各溪流底栖动物群落结构差异及其主要环境影响因子.结果表明:(1)金龟河底质异质性(SI)最高;杨梅坑河水质最好且流态异质性(Fr)最优,石溪河水质最差且底质异质性(Fr)最低.(2)共采集鉴定大型底栖动物118个分类单元,隶属于3门6纲14目87科.水生昆虫均占绝对优势,其中金龟河67属(81.7%),杨梅坑河62属(95.4%),石溪河12属(52.2%).金龟河中底栖动物Shannon-Wiener多样性指数、改进的Shannon-Wiener多样性指数、Pielou均匀度均高于杨梅坑河与石溪河.(3)金龟河的主要功能摄食类群是滤食者(45.5%),杨梅坑河(38.3%)与石溪河(58.7%)的主要功能摄食类群均为收集者.(4)冗余分析(RDA)结果显示,氨氮、海拔、湿宽、水温、溶氧、底质异质性(SI)、电导率和流态异质性(Fr)为影响深圳市溪流的大型底栖动物群落结构的主要环境因子.研究表明:(1)深圳市的山区溪流可作为深圳市生物多样性保护的重点区域.(2)在城市溪流生态系统中,水环境化学因子并非为主要影响因子,生境多样性发挥了重要作用.(图6表3参43)  相似文献   
528.
Heart rot is a common soil-borne disease in the pineapple industry, but the situation can be alleviated by the application of bio-fertilizers with beneficial microbiomes. Clarifying the controlling mechanism of bio-organic fertilizer on the high incidence of heart rot is critical in monocultural pineapple cropping patterns. In our study, the soil of continuous cropping pineapple orchards was collected. Three types of carriers (rapeseed cake, peat soil, and coconut bran), biocontrol strains (Bacillus subtilis HL2 and Streptomyces strain HL3), and organic fertilizer (YJ) were composted into different bio-fertilizers (KC, KN, KY, LC, LN, and LY), which were used in pot experiments. The controlling effect of the bio-fertilizer was determined based on the response of pineapple heart rot and bacterial communities to different fertilizing methods. Our results revealed that the incidence of heart rot in bio-fertilizer KC was the lowest, which decreased by 20% and 13.3%, respectively, compared to HF (chemical fertilizer, 16-16-16) and YJ (organic fertilizer). The richness and diversity of soil bacterial communities in all biofertilized treatments (KC, KN, KY, LC, LN, and LY) were significantly higher than those in HF. However, the α-diversity indices of the bio-fertilizers (KC, KN, and KY) were higher than those of LC, LN, and LY, and the bacterial community composition was significantly different. The bacteria GP4, GP6, Bacillus, and Azohydromonas were enriched in KC, KN, and KY, while the relative abundance of Streptomyces increased significantly in LC, LN, and LY. Furthermore, Spearman correlation analysis showed that the relative abundance of these bacterial groups was significantly negatively correlated with the incidence of pineapple heart rot. In summary, the application of bio-organic fertilizers can decrease the incidence of pineapple heart rot by altering the soil bacterial community structure and stimulating beneficial soil microorganisms, which is important for reconstructing the ecological balance in continuous pineapple orchards. © 2022 Authors. All rights reserved.  相似文献   
529.
To protect the ecosystem of barren mountains, massive Cupressus funebris plantations were allowed in hilly areas of the central Sichuan Basin in the late 1980s. In recent years, Cupressus funebris plantations have faced problems such as biodiversity decline and soil erosion. To study the effects of different forest densities on understory species diversity and soil anti-scourability of Cupressus funebris plantations in Yunding Mountain, a typical sampling method was used to investigate the five different forest densities (1 100, 950, 800, 650, and 500 trees/hm2) and to analyze the correlation between the species diversity index, soil anti-scourability, and root index. In total, 176 species from 128 genera and 69 families were recorded in this area. The number of species in the herb layer was higher than that in the shrub layer. The species diversity index of the shrub layer first increased and then decreased with the decrease in stand density; and the species richness index D and Shannon–Wiener diversity index H showed peak values at a density of 650 trees/hm2. The species richness index D, Shannon–Wiener diversity index H, and Simpson dominance index H’ in the herb layer showed a bimodal trend of increasing, then decreasing, increasing again, and finally decreasing with the decrease in stand density; and the peak values were found at the densities of 650 and 950 trees/hm2. When soil anti-scourability decreased with stand density, it showed a trend of increasing and then decreasing, reaching a peak at a density of 650 trees/hm2. The positive correlation between the species richness index and soil anti-scourability was evident. Thus, 650 trees/hm2 is relatively more conducive to the stability of species diversity and soil anti-scourability in cypress plantations. © 2022 Authors. All rights reserved.  相似文献   
530.
● 548 representative nor genes were collected to create complete phylogenetic trees. ● The distribution of nor and nod genes were detected in 18 different phyla. ● The most conserved amino acids in NOR were located adjacent to the active site. nor-universal and Clade-specific primers were designed, suggested, and tested. Nitric oxide reductases (NORs) have a central role in denitrification, detoxification of nitric oxide (NO) in host-pathogen interactions, and NO-mediated cell-cell signaling. In this study, we focus on the phylogeny and detection of qNOR and cNOR genes because of their nucleotide sequence similarity and evolutionary relatedness to cytochrome oxidases, their key role in denitrification, and their abundance in natural, agricultural, and wastewater ecosystems. We also include nitric oxide dismutase (NOD) due to its similarity to qNOR. Using 548 nor sequences from publicly accessible databases and sequenced isolates from N2O-producing bioreactors, we constructed phylogenetic trees for 289 qnor/nod genes and 259 cnorB genes. These trees contain evidence of horizontal gene transfer and gene duplication, with 13.4% of the sequenced strains containing two or more nor genes. By aligning amino acid sequences for qnor + cnor, qnor, and cnor, we identified four highly conserved regions for NOR and NOD, including two highly conserved histidine residues at the active site for qNOR and cNOR. Extending this approach, we identified conserved sequences for: 1) all nor (nor-universal); 2) all qnor (qnor-universal) and all cnor (cnor-universal); 3) qnor of Comamonadaceae; 4) Clade-specific sequences; and 5) nod of Candidatus Methylomirabilis oxyfera. Examples of primer performance were confirmed experimentally.  相似文献   
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