• 微生物降解挥发易于

    Microbial degradation and volatilization of phenanthrene are easier than pyrene.

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  • 弃置迅速多种微生物降解

    It can be quickly decomposed by mang kinds of microbe after being deserted.

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  • 本文讨论了农药微生物降解研究进展

    This article discussed the research progress of microbe degradation of pesticides.

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  • 本课题对固定化微生物降解原油进行了研究。

    The crude oil degradation by microorganism immobilization technology was studied.

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  • 微生物降解生物质气化洗焦废水焦油研究

    Study on microbial degradation of tar-wash wastewater and tar in biomass gasification by microorganisms.

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  • 微生物降解磺酰脲类除草剂降解重要途径之一

    Microbial degradation is one of the most important degradation pathways of sulfonylurea herbicides.

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  • 土壤微生物降解为主,植物以物理消解为主。

    Acetamiprid was degraded rapidly by microorganism in soil and volatility on plant leaves.

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  • 综述近年国外微生物降解转化阿特拉研究进展

    Recent review of current progress of study on microorganisms degradation and transforming into atrazine was presented abroad.

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  • 指出限制微生物降解因素以及如何提高降解效率措施

    The limit factors of biodegradation and how to enhance its efficiency are pointed out.

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  • 论文首次微生物降解落叶松单宁儿茶素过程进行了研究。

    Microbial degradative process from larch tannin to catechin was studied for the first time.

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  • 基于以上问题本文研究微生物降解混合酚类过程机理

    Based on the above issues, this paper studied the process and mechanism of biodegradation of mixed phenols.

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  • 海洋粒子动力学下沉速度粒度分布通量微生物降解

    Marine particle dynamics: sinking velocities, size distributions, fluxes, and microbial degradation rates.

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  • 主要介绍了几种氯乙酰胺类除草剂微生物降解机制相关降解

    This review introduces the current knowledge about the microbial degradation mechanisms and enzymes of chloroacetanilide herbicides.

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  • 主要对酰胺类除草剂吸附微生物降解机理影响因素进行了总结。

    Adsorption and microbiological degradation mechanisms and influence factors of acetanilide herbicides are introduced.

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  • 微生物降解法最有发展前途,详述了该法目前机理应用研究状况。

    Microbial technology was believed to have the bright future. Its recent advances, relevant mechanisms and applications were described.

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  • 利用微生物降解方法处理废水一种经济有效且无二次污染的方法。

    It is economic and effective that using the method of microorganism biodegradation to treat with phenol wastewater. And it has not second pollution too.

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  • 本文近年来有关PE氧化反应微生物降解的研究进展进行了综述。

    The advances in oxidation and biodegradation of PE film are reviewed in this paper.

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  • 采用循环活性污泥法处理模拟丙烯腈废水,探讨丙烯腈微生物降解机理

    Simulated acrylonitrile wastewater was treated by cyclic activated sludge process and the mechanism of acrylonitrile biodegradation was discussed.

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  • 一般来说塑复合材料的含水率微生物降解易感性明显相关关系。

    Generally, there is a clear correlation between overall moisture content in WPC and its susceptibility to microbial degradation.

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  • 混凝吸附处理的生物质气化洗焦废水,微生物降解速度和降解均显著提高

    After coagulation and adsorption, the microbial degradation of biomass gasification wastewater COD is reasonably higher that that without pretreatment.

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  • 评述聚氨酯弹性体所经历的热降解水解、光降解微生物降解降解过程。

    The mechanism of oxidative degradation, hydrolysis, photodegradation and microbial degradation of polyurethane elastomers are reviewed.

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  • 土壤中菲是以微生物降解为主,其次是挥发化学降解生物降解方式。

    Phenanthrene and pyrene in soil are based on microbial degradation, followed by abiotic degradation such as volatilization, chemical degradation.

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  • 环境中的酰脲化合物主要通过化学水解微生物降解及少量的光化学分解而消失

    Sulfonylurea herbicide in the environment can be dissipated mainly through chemical hydrolysis and micro-degradation.

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  • 最初木塑复合建筑材料视为完全微生物降解的,因为木材纤维全部浸入了塑料

    Initially, WPC building materials were considered as being completely resistant to microbial degradation because wood? Bers are completely immersed into plastic.

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  • 微生物粒子人口原生动物更小微生物降解有机物细菌真菌混合社区

    The microbial population of the particles is a mixed community of bacteria and fungi that degrade organic compounds and protozoa that eat the smaller microorganisms.

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  • 磺胺二甲嘧啶土壤中的降解主要降解化学降解微生物降解很小的比例

    The sulfamethazine was mainly degradated by chemical and photo degradation, while its degradation done by microorganism in soil only accounted for few portion.

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  • 胞外活性海洋环境中非常重要作用微生物降解利用有机复合物关键

    Extracellular enzyme activity plays an important role in the Marine environments, it is the key step in degradation and utilization of organic polymers by microorganism.

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  • 目的研究固定化微生物降解环境内分泌干扰物邻二甲酸二丁酯(DBP生物特性

    Objective To study the biodegradation characteristics of immobilized microorganism on endocrine disruptor din-butyl Phthalate(DBP).

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  • 目的研究固定化微生物降解环境内分泌干扰物邻二甲酸二丁酯(DBP生物特性

    Objective To study the biodegradation characteristics of immobilized microorganism on endocrine disruptor din-butyl Phthalate(DBP).

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