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1)  sulfur-based autotrophic denitrification
硫自养反硝化
1.
Nitrate removal and kinetic model of saline water by sulfur-based autotrophic denitrification
硫自养反硝化对含盐水体脱氮及其动力学模型
2.
The experimental results showed that nitrate was effectively removed through the sulfur-based autotrophic denitrification process in the reactor.
结果表明,该反应器通过硫自养反硝化作用能有效去除水体中硝酸盐氮。
2)  sulfur-limestone autotrophic denitrification
硫-石灰石自养反硝化
3)  autotrophic simultaneous denitrification and desulfurification bacteria
自养反硝化脱硫菌
4)  autotrophic denitrification
自养反硝化
1.
Nitrate nitrogen removal from ground water by autotrophic denitrification in a packed bed reactor;
固定床自养反硝化去除地下水中的硝酸盐氮
2.
The mechanisms and effects of ACF electrode were introduced in the aspects of treatment of refractory organics in water,synchronous enhanced autotrophic denitrification and other advanced treatment.
活性炭纤维(ACF)由于其自身特性而成为良好的电极材料,介绍了ACF电极在处理水体中难降解有机物、同步强化自养反硝化及其他深度处理方面的机理和效果,同时说明了ACF电极自身改进技术的原理和应用,如掺加具有电化学催化能力的金属物质Sn及Pd等。
3.
Results After having been acclimated in two stages, mixotrophic and autotrophic denitrification stages, the denitrifying bac.
目的 制备活性炭纤维 (AFC)涂层电极 ,研究电解产氢的自养反硝化法去除地下水中的硝酸盐氮。
5)  autohydrogentrophic denitrification
氢自养型反硝化
1.
Biofilm-electrode process based on autohydrogentrophic denitrification and its advantages were elaborated,with the electrode material,disposal of the process,factors influencing the treatment effect and some other aspects of the said technology emphatically analyzed.
阐述了以氢自养型反硝化为基础的电极-生物膜法及其在脱氮处理中的优势;着重从电极材料、工艺布置和影响处理效果的因素等方面对该技术进行了分析;对如何利用惰性阳极电解产氧来促进生物硝化,以开发出更加高效、环保的脱氮工艺提出了新思路:即电解产氧为主,曝气为辅,控制适当的水力停留时间,并主要通过电流调节控制氧水平,实现亚硝酸盐积累;同时利用电解产氢为电子供体进行反硝化,使限氧的硝酸盐型脱氮在BER中得以实现。
6)  autotrophic denitrifying
自养反亚硝化
1.
A new process for biological treatment of nitric wastewater——nitrous nitrifying/ autotrophic denitrifying process;
一种新型生物脱氮工艺——亚硝化/自养反亚硝化工艺
2.
The best advantage of the biological nitrous nitrifying/ Autotrophic denitrifying in this dissertation is that no silicon source is needed in the process of biological nitrogen removal, this can save energy and reactor volume、simplify treatment process、reduce occupied aerea, especially the low C/N wastewater.
本论文所研究的生物亚硝化/自养反亚硝化脱氮工艺最大的优点正是在于“生物脱氮过程中不需碳源的加入”,这能节省能耗、反应器容积等,这些能极大地拓展生物脱氮工艺的应用范围、强化生物脱氮工艺的处理效果、简化处理流程、减少处理占地等,特别是对于低C/N比的废水而言,亚硝化/自养反亚硝化工艺的优势更为明显。
补充资料:石灰石,石灰石
CAS:1317-65-3
中文名称:石灰石;电石灰岩;石灰石粉;霰石,文石;方解石,碳酸钙晶体;碳酸钙,白垩;白云石,白云岩,石灰岩;石灰石,石灰石;大理石,大理岩,云石,玻璃球;波特兰石;白垩,磨细白垩粉,白垩粉
英文名称:Limestone;Agstone;agricultural limestone;aragonite;atomite;bell mine pulverized limestone;calcite;calcium carbonate;carbonic acid, calcium salt;chalk;dolomite;domolite;franklin;lithograpic stone;marble;natural calcium carbonate;portland stone;sohnhofen stone;whiting;limestone,powder;flux lime
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