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首页> 外文期刊>Ecotoxicology and Environmental Safety >The impact of varying abiotic humification conditions and the resultant structural characteristics on the copper complexation ability of synthetic humic-like acids in aquatic environments
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The impact of varying abiotic humification conditions and the resultant structural characteristics on the copper complexation ability of synthetic humic-like acids in aquatic environments

机译:不同的非生物腐殖化条件及其结构特征对水生环境中类腐殖酸的铜络合能力的影响

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摘要

Humic acid (HA) has a high complexation ability with metal ions due to its functional groups. In this study, 11 synthetic humic-like acids (SHLAs) were prepared under varying abiotic humification conditions: precursor species (glycine-catechol and glycine-catechol-glucose), precursor concentrations (from 0.25 M:0.25 M to 1 M:1 M), pH (6-8), temperature (25-45 degrees C) and mass of MnO2 catalyst (1.3-2.5% w/v). The effect of the varying humification conditions on the complexation ability of the SHLA for Cu2+ were investigated together with the relationships between Cu complexation ability and the structure of the SHLAs (elemental composition, type and content of functional groups, AL/AR, E-4/E-6). Conditional stability constants (log K) of the SHLAs ranged from 6.00 to 6.42 and complexation capacities ranged from 1.76 mmol/g to 2.61 mmol/g. SHLAs synthesized at lower temperature (25 degrees C), pH 8, low precursor concentrations (glycine:catechol = 0.25 M:0.25 M) and a larger proportion of catalyst (2.5% w/v) had a larger copper complexation ability. Log K values of SHLAs had significant positive correlations with carboxylic carbon (r = 0.671, p 0.05), carboxylic group content (r = 0.890, p 0.01) and O/C ratio (r = 0.618, p 0.05), and significant negative correlations with aliphatic carbon (r = 0.616, p 0.05), total C (r = 0.685, p 0.05) and total H contents (r = 0.654, p 0.05). Complexation capacities had a significant positive correlation with total N (r = 0.826, p 0.01) and a significant negative correlation with C/N ratio (r = 0.823, p 0.01).
机译:腐植酸(HA)由于其官能团而具有与金属离子的高络合能力。在这项研究中,在不同的非生物腐殖化条件下制备了11种合成腐殖酸(SHLA):前体物种(甘氨酸-邻苯二酚和甘氨酸-邻苯二酚-葡萄糖),前体浓度(从0.25 M:0.25 M到1 M:1 M ),pH(6-8),温度(25-45摄氏度)和MnO2催化剂质量(1.3-2.5%w / v)。研究了不同腐殖化条件对SHLA对Cu2 +络合能力的影响,以及Cu络合能力与SHLA结构(元素组成,官能团类型和含量,AL / AR,E-4)之间的关系。 / E-6)。 SHLA的条件稳定性常数(log K)在6.00至6.42之间,络合能力在1.76 mmol / g至2.61 mmol / g之间。在较低温度(25摄氏度),pH 8,低前体浓度(甘氨酸:儿茶酚= 0.25 M:0.25 M)和较大比例的催化剂(2.5%w / v)下合成的SHLA具有较大的铜络合能力。 SHLA的Log K值与羧基碳(r = 0.671,p <0.05),羧基含量(r = 0.890,p <0.01)和O / C比(r = 0.618,p <0.05)有显着正相关,并且与脂肪族碳(r = 0.616,p <0.05),总C(r = 0.685,p <0.05)和总H含量(r = 0.654,p <0.05)呈显着负相关。络合能力与总氮呈显着正相关(r = 0.826,p <0.01),与C / N比呈显着负相关(r = 0.823,p <0.01)。

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