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作 者:魏自民[1] 席北斗[1] 赵越[2] 王世平[3] 刘鸿亮[3] 何连生[1] 姜永海[1] 霍守亮[1]
机构地区:[1]中国环境科学研究院城市环境系统工程研究室,北京100012 [2]东北农业大学生命科学院,黑龙江哈尔滨150030 [3]中国农业大学食品科学与营养工程学院,北京100083
出 处:《光谱学与光谱分析》2007年第11期2275-2278,共4页Spectroscopy and Spectral Analysis
基 金:国家重点基础研究"973"发展计划项目(2005CB724203);黑龙江省教委项目(10551041);哈尔滨市青年科学研究基金(2005AFXXJ043);东北农业大学博士基金项目(2004)资助
摘 要:利用城市生活垃圾中降解部分,采用工厂化工艺进行堆肥,对堆肥过程中胡敏酸动态光谱特性进行了分析。结果表明,随着堆肥进行,胡敏酸在短波长的荧光强度明显降低,并且主体峰位置发生改变,逐渐靠近土壤胡敏酸的主峰位置。红外光谱解析显示,胡敏酸结构中多糖类脂类等小分子化合物随着堆肥时间的延长而减少,而芳族类化合则呈增加的趋势。紫外扫描光谱进一步证实,在堆肥过程中,胡敏酸分子共轭作用、缩合度增加,腐殖化程度明显。但与土壤胡敏酸的E4/E6值、光谱特性比较表明,堆肥后的胡敏酸具有相对简单的分子结构,活性较高。In the present study, the compost consisted of residual MSW with metal, plastic and glass removed. The composting process was assisted using industrial technology. During the composting, humic acid (HA) was extracted and purified. The spectroscopic characteristics of the HA were determined by using UV, FTIR, and fluorescence spectroscopy. During the composting process, the HA fluorescence spectra exhibited a sharp reduction in relative fluorescence intensity at the short wavelength region, and the primary peak shifted from 335 nm at the initial stage to 458 nm at the final stage of composting, thereby approaching the main peak at 460-480 nm for HA in soil. The FTIR spectra exhibited a reduction in polysaccharides and aliphatic components, and a relative increase in aromatic components; while the HA UV spectra revealed an increase in conjugation and the degree of humification. However, Compared with the E4/E6 value and the spectroscopic characteristics of HA in soil, the HA in the MSW compost has a relatively low molecular weight, a simpler structure and a relatively low degree of aromatic condensation, which also implies that the HA in compost is highly active.
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