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Amino acids as precursors of trihalomethane and haloacetic acid formation during chlorination.

机译:氨基酸在氯化过程中作为三卤甲烷和卤乙酸形成的前体。

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Twenty amino acids were chlorinated and examined for the formation of trihalomethane (THM) and haloacetic acid (HAA). The amino acids exhibited a high Cl(2) demand (3.4-10 mg Cl(2) mg(-1) C) but low THM formation (<4.19 microg mg(-1) C) except for tryptophan and tyrosine (45.8 - 147 microg mg(-1) C). Large variation in HAA yield occurred among the amino acids (from not detectable to 106 microg mg(-1) C). One group of amino acids, possessing chain structures, exhibited a slow increase in HAA formation (<6.2 micromol mol(-1) amino acid or <11.3 microg mg(-1) C) as the chlorine demand increased (3.4-8.9 mol Cl(2) mol(-1) amino acids). The other group of amino acids, containing ring structures (including tryptophan, tyrosine, histidine, phenylalanine, and proline) and two amino acids with chain structures (aspartic acid and asparagine), showed a fast increase in HAA formation (16-96 micromol mol(-1) amino acid or 27-106 microg mg(-1) C) with the increase in chlorine demand (5.2-15.9 mol Cl(2) mol(-1) amino acid). The ratios of TCAA to DCAA (mol/mol), derived from the amino acids, ranged between 0.01 and 1.10.
机译:氯化了二十个氨基酸,并检查了三卤甲烷(THM)和卤代乙酸(HAA)的形成。氨基酸表现出较高的Cl(2)需求(3.4-10 mg Cl(2)mg(-1)C),但除色氨酸和酪氨酸(45.8-)外,THM形成较低(<4.19 microg mg(-1)C)。 147微克mg(-1)C)。氨基酸之间发生了很大的HAA产量差异(从不可检测到106微克mg(-1)C)。一组具有链结构的氨基酸随着氯需求的增加(3.4-8.9 mol Cl)表现出HAA形成缓慢增加(<6.2 micromol mol(-1)氨基酸或<11.3 microg mg(-1)C)。 (2)mol(-1)氨基酸)。另一组包含环结构的氨基酸(包括色氨酸,酪氨酸,组氨酸,苯丙氨酸和脯氨酸)和两个具有链结构的氨基酸(天冬氨酸和天冬酰胺)显示HAA形成迅速增加(16-96微摩尔摩尔) (-1)氨基酸或27-106微克mg(-1)C)随着氯需求量的增加(5.2-15.9 mol Cl(2)mol(-1)氨基酸)。衍生自氨基酸的TCAA与DCAA的比例(mol / mol)为0.01-1.10。

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