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1)  methanogenesis [,meθənəu'dʒenisis]
甲烷生成
2)  methane-generated quantity
甲烷生成量
3)  methane generating yield
甲烷生成率
4)  Methane producing bacteria
甲烷生成菌
5)  trihalomethane formation potential
三卤甲烷生成势
1.
The distribution,trihalomethane formation potential(THMFP),UV-Vis and FTIR spectra of organic fractions in the secondary effluent were examined.
考察了二级处理出水中有机组分的组成分布、三卤甲烷生成势、紫外光谱和红外光谱。
2.
The result shows that immobilized BAC process can remove 40%-50% of TOC, and can increase removal rate of ammonia nitrogen by 30%; the removal rate of trihalomethane formation potential (THMFP) is raised by 11%-39% as compared with conventiona.
结果表明,固定化生物炭工艺对TOC的去除率稳定在40% ~50%,可以提高氨氮去除率30%;对三卤甲烷生成势(THMFP)的去除率比普通活性炭工艺提高了11% ~39%;对臭氧氧化副产物(甲醛)具有长期的去除效果。
3.
The effects of catalytic ozonation with supported ferric hydroxide(FeOOH)and ozonation alone on trihalomethane formation potential(THMFP)were investigated in a continuous flow reactor.
采用连续流试验,研究了负载型羟基氧化铁(FeOOH)催化臭氧氧化和单独臭氧氧化控制三卤甲烷生成势(THMFP)的效果。
6)  chloroform formation potential
三氯甲烷生成能
1.
The changes of chloroform formation potential during chlorination caused by Ti/TiO_2 photoelectrocatalytic oxidation treatments were also investigated.
对多孔Ti/TiO2光电降解富里酸前后影响三氯甲烷生成潜能做了机理探讨,考察了耗氯量、三氯甲烷生成能和荧光光谱图的变化过程,试验结果表明,随着富里酸TOC质量浓度的增加,三氯甲烷生成量逐渐增大,经过2 h的光电催化降解,耗氯量和三氯甲烷生成能分别被减少了72%和81%。
补充资料:二苯甲烷及三苯甲烷


二苯甲烷及三苯甲烷


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