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Humic acids from oxidized coals I. Elemental composition, titration curves, heavy metals in HA samples, nuclear magnetic resonance spectra of HAs and infrared spectroscopy

机译:氧化煤中的腐殖酸I.元素组成,滴定曲线,HA样品中的重金属,HA的核磁共振谱和红外光谱

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The formation of humic acids (HAs) from bituminous coal was verified by laboratory oxidation. In a relatively short time the oxidation by air at temperature above 150℃ led to the formation of HAs. These HAs were compared with those isolated from oxidized bituminous coal from the vicinity of red bed bodies, from weathered bituminous coal, oxihumolite and lignite. For this the organic and inorganic elemental composition of HAs, apparent dissociation constants, metal-binding capacities, nuclear magnetic resonance and infrared spectra were determined and evaluated. With increasing temperature of laboratory oxidation of bituminous coal the percentage of aromaticity of HAs increases. HAs prepared from coal oxidized at 150 ℃ are characterized by an aromaticity index 78% while for HAs prepared at 250 and 300℃ by 95% aromaticity. The same index for HAs isolated from naturally oxidized bituminous coals is of about 87% whereas it is of about 50% for oxihumolite and lignite. The apparent dissociation constants (K_(app)) are much higher in HAs isolated from oxihumolite and lignite (pK_(app) from 3.35 to 3.80) than those from oxidized bituminous coal samples (pK_(app) from 4.47 to 4.85). There is a good negative correlation between Pb-binding capacity and pK_(app) of all samples suggesting that metallic ions are bonded to acidic groups of HAs. Also contents of inorganic elements like Fe, Al, Si are much higher in HAs isolated from lignite and oxihumolite than those in HAs from oxidized bituminous coal. Thus, it seems that the temperatures below 150℃ and the long oxidation time are necessary conditions for the formation of HAs in oxidative altered bituminous coal deposited deeply under the earth surface.
机译:实验室氧化证实了烟煤中腐殖酸(HAs)的形成。在相对较短的时间内,温度高于150℃的空气氧化会导致HAs的形成。将这些HA与从红床体附近的氧化烟煤,风化烟煤,辉石粉和褐煤中分离出的HA进行了比较。为此,测定并评估了HA的有机和无机元素组成,表观解离常数,金属结合能力,核磁共振和红外光谱。随着烟煤的实验室氧化温度升高,HAs的芳香度百分比增加。在150℃氧化的煤制得的HA的芳香度指数为78%,而在250和300℃制得的HA的芳香度为95%。从天然氧化烟煤中分离出的HA的相同指标约为87%,而斜长石和褐煤的指标约为50%。从腐殖质和褐煤中分离出的HA中,表观解离常数(K_(app))远高于氧化烟煤样品中的HA(pK_(app)从4.47至4.85)。所有样品的Pb结合能力与pK_(app)之间都具有良好的负相关性,表明金属离子与HAs的酸性基团结合。此外,从褐煤和氧化软锰矿中分离出的HA中的无机元素(如Fe,Al,Si)比从氧化烟煤中得到的HA中的元素高得多。因此,似乎在150℃以下的温度和较长的氧化时间是在深部地下沉积的氧化变质烟煤中形成HA的必要条件。

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