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921.
Xin Xing Yin Yu Hongbo Xi Guangqing Song Yajiao Wang Jiane Zuo Yuexi Zhou 《Frontiers of Environmental Science & Engineering》2018,12(6):12
Trimethylolpropane (TMP) wastewater is one of the most toxic petrochemical wastewater. Toxicants with high concentrations in TMP wastewater often inhibit the activity of microorganisms associated with biological treatment processes. The hydrolysis acidification process (HAP) is widely used to pretreat petrochemical wastewater. However, the effects of HAP on the reduction of wastewater toxicity and the relevant underlying mechanisms have rarely been reported. In this study, an HAP reactor was operated for 240 days, fed with actual TMP wastewater diluted by tap water in varying ratios. The toxicity of TMP wastewater was assessed with the inhibition ratio of oxygen uptake rate. When the organic loading rates were lower than 7.5 kg COD/m3/d, the toxicity of TMP wastewater was completely eliminated. When the actual TMP wastewater was directly fed into the reactor, the toxicity of TMP wastewater decreased from 100% to 34.9%. According to the results of gas chromatographymass spectrometry analysis, four main toxicants contained in TMP wastewater, namely, formaldehyde, 2-ethylacrolein, TMP and 2-ethylhexanol, were all significantly removed, with removal efficiencies of 93.42%, 95.42%, 72.85% and 98.94%, respectively. Compared with the removal efficiency of CODCr, the reduction rate of toxicity is markedly higher by HAP. In addition, the change of microbial community in the HAP reactor, along the operation period, was studied. The results revealed that, compared with the seed sludge, Firmicutes became the dominant phylum (abundance increased from 0.51% to 57.08%), followed by Proteobacteria and Bacteroidetes (abundance increased from 59.75% to 25.99% and from 4.70% to 8.39%, respectively).
相似文献
922.
Biosorption potential of green macroalgae Cladophora sp., (GAC) for the removal of hexavalent chromium (Cr(VI)) and malachite green (MG) from aqueous medium was investigated. Optimal conditions for biosorption experiments were determined as a function of initial pH, GAC dosage, temperature and initial concentration of Cr(VI) and MG. The biosorption equilibrium data were fitted with the isotherm models of Langmuir, Freundlich, Kiselev, Frumkin and Jovanovic, while the experimental data were analysed using the kinetic models such as pseudo-first-order, pseudo-second-order, Ritchie's and intraparticle diffusion. The Langmuir maximum biosorption capacity was calculated as 100.00?mg/g (Cr(VI)) and 142.85?mg/g (MG). The biosorption kinetic data showed better agreement with the pseudo-second-order kinetic model. The thermodynamic parameters indicated spontaneous and endothermic nature of the biosorption process for Cr(VI) removal, whereas exothermic in the case of MG removal. Furthermore, the biosorption efficiencies of the GAC reusability were found significant up to five cycles and tested using 0.1, 0.5 and 1.0?M HCl, respectively. The results of the present study indicated that GAC is a suitable biosorbent for the sequestration of Cr(VI) and MG from aqueous solutions. 相似文献
923.
Pei C.Zhang H.Zhang C.Xu Z.Li W. 《应用与环境生物学报》2018,(2):352-356
(R)-1-Phenyl-1,2-ethanediol [(R)-PED] is an important chiral intermediate used to synthesize pharmaceutical intermediates. The production of (R)-PED is of great practical significance. A novel bacterial strain HBU-SI7 isolated from soil samples was screened using a-hydroxyacetophenone (2-HAP) as substrate, which is capable of enantioselective reduction of 2-HAP to (R)-PED. HBU-SI7 was identified as Rhodococcus sp. by bacterial morphological observation and 16S rDNA analysis. The analysis of whole-cell catalytic system showed that the bioconversion of 2-HAP reached 96.2% in the two-phase reaction system (dibutyl phthalate/phosphate buffer = 1/3, V/V) with the substrate concentration of 3.0 g/L, and 99.3% of e.e. for (R)-PED was achieved. A new enantio selective reduction system with the whole cells of Rhodococcus sp. was established for efficient production of (R)-PED, which has potential research and application values. © 2018 Science Press. All rights reserved. 相似文献
924.
从底泥中分离出1株低温贫营养好氧反硝化细菌SY13,经常规生理生化鉴定和16SrDNA测序,鉴定出细菌SY13属于Acinetobactersp.。考察了温度、pH、C/N比及接种量对菌株SY13硝酸盐还原活性的影响,初始硝酸盐浓度为15mg/L左右,温度为15℃时低温贫营养好氧反硝化细菌SY13的硝酸盐去除率为49.26%,在中性环境适应性较强,pH值为7.0时72h的硝氮去除率达到58.08%,随着C/N比不断增加,菌株SY13硝酸盐的去除效果逐渐增强,接种量为10%时,菌株SY13培养72h后的硝氮去除率可达到59.62%。 相似文献
925.
Zakia Parveen Richard Smart Catherine White Shimna Gammack Claire Deacon Malcolm Cresser 《Chemistry and Ecology》2013,29(4):293-314
Calluna vulgaris/peat microcosms have been used in an outdoor simulated acid rain experiment to test a series of hypotheses about sulphuric acid deposition effects upon the growth of Calluna on peat soil, namely: (1) Initially, enhanced acid input will enhance base cation and ammonium concentrations in soil solution. This may enhance uptake of these species, increasing foliar concentrations of base cations and nitrogen, and possibly foliar chlorophyll a and b concentrations. (2) If changes are induced in nutritional status, they may influence plant growth. (3) in the longer term, enhanced ammonium and base cation solubility occurring as a consequence of cation exchange reactions will lead, especially in winter months, to enhanced leaching losses. Hence any positive effects upon plant nutrition will not be sustainable. (4) the peat will acidify significantly over two years, in the shorter term primarily as a consequence of an enhanced mobile anion effect. (5) Acidification may reduce the rate of mineralisation of organic phosphorus and, in a phosphorus-deficient peat soil, this may lead to reduced foliar phosphate concentration and possibly induce phosphorus deficiency. Most of these hypotheses were supported to some extent by the experimental results. the peat soil solution pH fell immediately in response to the acid treatments, and longer-term acidification continued progressively over the two years of the experiment. in the first year, the treatments significantly influenced the calcium, magnesium, phosphorus and nitrogen status of the leaves from Calluna new shoots, whereas in the second year calcium, potassium and phosphorus were influenced. However, in both years foliar phosphate concentration was enhanced, rather than reduced, in response to increased acid load. Foliar carbon and nitrogen concentrations fell with increasing acidity of 相似文献
926.
油田土壤中脱除有机硫菌株的分离与鉴定 总被引:1,自引:0,他引:1
从中原油田采集的土壤样品中分离得到有脱除有机硫(二苯并噻吩)能力的菌株ZYX。该菌株为革兰氏染色阳性,无运动性,专性需氧,固体培养基上菌落为浅黄色、圆形、湿润、有光泽、边缘整齐,培养2d后平均直径为1.5mm,在液体培养基中有明显的杆-球状生长周期。对该菌株的16SrDNA的全序列测序,并进行DNA同源性分析,发现它与与Arthrobactersp.P2的同源性为99.53%,其主要形态及生理生化特征也与Arthrobacter属相符。实验表明,最佳生长所需的DBT浓度是0.01g·L-1,最适pH值为7.0,最佳碳源和氮源分别为甘油和谷氨酰氨。 相似文献
927.
利用酱油酿造废水生产微生物絮凝剂及其性能研究 总被引:16,自引:0,他引:16
土壤杆菌(Agrobacteriumsp.)LG5-1能够利用酱油酿造废水作为替代培养基生产微生物絮凝剂.在温度为30℃的条件下,研究了碳源、氮源、初始pH及培养时间等条件对絮凝剂的产量及絮凝剂活性的影响,得到了以酱油酿造废水为培养基生产微生物絮凝剂GIL-1的最佳条件:100mL酱油酿造废水中加入2mL乙醇(75%)作为补充碳源,不需添加氮源,调节pH值至8.0左右,培养时间约为48h.获得的絮凝剂GIL-1具有较高的絮凝率和较好的稳定性能,低温储存200d,絮凝率仍可达76.3%.图5参19 相似文献
928.
恩诺沙星是医药及水产养殖业广泛使用的喹诺酮类抗生素,是我国地表水中残留量较多的抗生素种类之一;然而有关该抗生素对水体中浮游植物毒理作用以及后者对其去除作用的研究还鲜见报道.本研究以绿藻门的胶网藻(Dictyosphaerium sp.)为对象,通过12 d室内培养实验,分析在不同浓度(0、 5、 25、 50和100 mg·L-1)恩诺沙星暴露的条件下,胶网藻的生长、光合作用活力和胞外多糖的响应变化及其对不同浓度恩诺沙星的去除效率.结果表明,各处理组中胶网藻的生物量和光合色素含量均随培养时间的增加而升高,但与对照组相比,恩诺沙星对胶网藻的生长和光合色素积累均产生显著抑制作用(P<0.01).通过拟合分析,计算出恩诺沙星对胶网藻96 h半数致死浓度(LC50)为(241.29±7.33) mg·L-1,表明胶网藻能够适应高浓度的恩诺沙星胁迫.同时发现,当恩诺沙星浓度<5 mg·L-1时,能够促进胶网藻的最大光合速率(Fv/Fm),但浓度>5... 相似文献
929.
大亚湾裸甲藻种群动态及其关键调控因子 总被引:2,自引:0,他引:2
2008年1—12月对大亚湾养殖海域裸甲藻种群动态和主要环境因子进行了周年调查。结果表明,大亚湾海域裸甲藻类群以直径约为16~22μm的小型裸甲藻(Gymnodinium sp.)为主,另外米氏凯伦藻(Karenia mikimotoi)、链状裸甲藻(Gymnodnium catenatum)和血红哈卡藻(Akashiwo sanguinea)也有少量出现。裸甲藻种群密度呈现出明显的季节性变化特征:5月出现裸甲藻密度高峰,全年最大密度达到903 cells.mL-1,秋冬季节密度最小。不同站位裸甲藻密度也具有明显的空间分布差异,养殖及近岸海域密度普遍高于外海对照区。相关性分析结果表明,裸甲藻密度的关键调控因子包括温度、化学需氧量(COD)、可溶性有机氮(DON)和尿素浓度。裸甲藻高密度、高频率出现的温度范围在24~26℃,DON和尿素的质量浓度范围分别为N 156.38~187μg·L-1和N 17.4~38.9μg·L-1。在温度适宜的条件下,尿素等有机氮含量的增加可能成为裸甲藻赤潮的触发因子。 相似文献
930.
PCR-DGGE技术解析针叶和阔叶凋落物混合分解对土壤微生物群落结构的影响 总被引:9,自引:0,他引:9
为深入理解凋落物类型和微生物群落之间的相互关系,通过小盆+凋落袋控制实验,运用PCR-DGGE技术解析了南方红壤丘陵区典型针叶树种马尾松和湿地松的凋落物分别与白栎、青冈两个阔叶树种凋落物混合分解对土壤微生物基因型多样性的影响.结果表明:1)针叶凋落物中加入阔叶后细菌群落结构未发生显著变化,将所有处理归为一类的相似度达72%,其差异仅表现在马尾松+白栎和湿地松+青冈处理土壤微生物群落16S rDNA的丰富度和多样性分别显著高于单一马尾松和湿地松;2)针叶凋落物中加入阔叶后真菌群落结构发生了显著变化,单一针叶处理与针阔混合处理间18S rDNA基因泳道带型的相似度只有28%,并且单一马尾松处理土壤18S rDNA的丰富度和多样性显著高于马尾松+白栎和马尾松+青冈,单一湿地松处理土壤18S rDNA的丰富度也显著高于湿地松+白栎和湿地松+青冈,多样性显著高于湿地松+白栎处理;3)土壤真菌18S rDNA的丰富度与凋落物初始C含量呈显著正相关,与凋落物初始N含量呈显著负相关.针叶凋落物中引入阔叶凋落物后,增加了凋落物中N的比重,C的比重则下降,显著影响了土壤真菌群落的结构. 相似文献