• 多种多样微生物能够通过共代谢途径降解有机氯溶剂

    A variety of microorganisms are able to degrade chlorinated solvents through cometabolism.

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  • 最后探讨生物因子即协同作用共代谢作用生物降解影响

    Finally, the impact of biological factors -cooperation and co-metabolism on biodegradation is discussed.

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  • 微生物共代谢处理降解性有机物有效途径,具有技术经济优势。

    Cometabolism with microorganism is an effective method to deal with the refractory organics in terms of economy and technology.

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  • 此外,阐明代谢原理适宜高分子量多环芳烃共代谢底物物质

    The principle of the co metabolism and the optimal material used as co metabolic substrate were demonstrated in this paper.

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  • 研究葡萄糖作为代谢基质时酸性媒介t派拉丁兰rrn降解情况。

    The degradation states of Acid Complex Black t and Mordant Blue RRN were studied in this paper with glucose as cometabolism substrate.

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  • 水杨酸邻苯二甲酸,琥珀作为代谢底物提高降解,琥珀酸钠效果最好。

    Salicylic acid, phthalic acid, sodium succinate could serve as co metabolic substrate to enhance the degradation rate of pyrene, and sodium succinate has the best effect.

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  • 生物膜工艺去除饮用水痕量有机物有效方法,代谢是生物工艺中的重要方式。

    Trace-level organic compounds in drinking water can be removed effectively by biofilms. Co-metabolism plays an important role in biodegradation of trace-level organic compounds in drinking water.

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  • 分子量多环芳烃之间代谢关系菲促进了芘降解出现同样的结果。

    There was co metabolic relationship between pyrene and phenanthrene which was a kind of low molecular weight PAHs, phenanthrene accelerated the degradation of pyrene, while naphthalene didn't.

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  • 目前对于土壤中的菲等多环芳烃污染物处理主要微生物修复、植物修复以及共代谢方法

    At present, the treatment methods of PAHs in soils are microbial remediation, phytoremediation and co-metabolism mechanism.

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  • 水中的难降解有机污染物可能通过几种微生物的一系列代谢作用得到大部分甚至是彻底的降解。

    These (organic) pollutants in water could be biodegraded mostly, even fully through the co-metabolism action by some microorganisms.

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  • 分别蔗糖葡萄糖丁酸盐乙醇作为驯化好的污泥共代谢基质厌氧序批式反应器(asbr)对间二酚的降解进行研究。

    Resorcin biodegradation was studied by acclimated anaerobic sludge with sucrose, glucose, butyrate and ethanol as co-metabolism substrates in ASBR reactor.

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  • 所有表达差异基因中,随着时间进展表达持续上调的基因128条,其中成脂相关基因10条,代谢基因46条,炎症相关基因15条、凋亡相关基因10条,纤维化相关基因16条

    Of all the differently expressed genes, the number of up-regulated genes was 128, including 10 lipogenic genes, 46 metabolic genes, 15 inflammation genes, 10 apoptosis genes, and 16 fibrosis genes;

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  • 结果调查工业园区在职从业人员1978人,查出代谢综合征141人,患病率为7.11%;

    Results Of the 1978 employees, 141 suffered from metabolic syndrome, taking up 7.11%;

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  • 干旱胁迫下的调控网络中,转录因子AGL15ARR10下调降解相关代谢途径

    The overlap of salt and drought stress regulation network shows that degradation-related pathways were down-regulated by the AGL15, ARR10.

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  • 干旱胁迫下的调控网络中,转录因子AGL15ARR10下调降解相关代谢途径

    The overlap of salt and drought stress regulation network shows that degradation-related pathways were down-regulated by the AGL15, ARR10.

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