Wei Zi-min, Wang Xing-lei, Pan Hong-wei, Zhao Yue, Xie Xin-yu, Zhao Yi, Zhang Lin-xue, Zhao Tao-zhi
Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Oct;35(10):2940-5.
The characteristics of fluorescence spectra of dissolved organic matter (DOM) derived from composting is one of the key ways to assess the compost maturity. However, the existing methods mainly focus on the qualitative description for the humification degree of compost. In this paper, projection pursuit classification (PPC) was conducted to quantitative assess the grades of compost maturity, based on the characteristics of fluorescence spectra of DOM. Eight organic wastes (chicken manure, swine manure, kitchen waste, lawn waste, fruits and vegetables waste, straw, green waste, and municipal solid waste) composting were conducted, the germination percentage (GI) and fluorescence spectra of DOM were measured during composting. Statistic analysis with all fluorescence parameters of DOM indicated that I436/I383 (a ratio between the fluorescence intensities at 436 and 383 nm in excitation spectra), FLR (an area ratio between fulvic-like region from 308 to 363 nm and total region in emission spectra), P(HA/Pro) (a regional integration ratio between humic acid-like region to protein-like region in excitation emission matrix (EEM) spectra), A4/A1 (an area ratio of the last quarter to the first quarter in emission spectra), r(A,C) (a ratio between the fluorescence intensities of peak A and peak C in EEM spectra) were correlated with each other (p < 0.01), suggesting that this fluorescence parameters could be considered as comprehensive evaluation index system of PPC. Subsequently, the four degrades of compost maturity included the best degree of maturity (I, GI > 80%), better degree of compost maturity (II, 60% < GI < 80%), maturity (III, 50% < GI < 60%), and immaturity (IV, GI < 50%) were divided according the GI value during composting. The corresponding fluorescence parameter values were calculated at each degrade of compost maturity. Then the projection values were calculated based on PPC considering the above fluorescence parameter values. The projection value was 2.01 - 2.22 for I grade, 1.21 - 2.0 for II grade, 0.57 - 1.2 for III grade, and 0.10 - 0.56 for IV grade. Model validation was then carried out with composts samples, the results indicated that the simulated values were agreed with the observed values, and the accuracy of PPC was 75% for four grades of maturity, and 100% for maturity and immaturity, suggesting that PPC could meet the need of the assessment of compost maturity.
堆肥过程中溶解性有机物(DOM)荧光光谱特征是评估堆肥成熟度的关键方法之一。然而,现有方法主要集中在对堆肥腐殖化程度的定性描述上。本文基于DOM荧光光谱特征,采用投影寻踪分类法(PPC)对堆肥成熟度等级进行定量评估。进行了8种有机废弃物(鸡粪、猪粪、厨余垃圾、草坪废弃物、果蔬垃圾、秸秆、绿化垃圾和城市生活垃圾)的堆肥试验,在堆肥过程中测定了发芽率(GI)和DOM的荧光光谱。对DOM的所有荧光参数进行统计分析表明,I436/I383(激发光谱中436和383nm处荧光强度之比)、FLR(发射光谱中308至363nm类富里酸区域与总区域的面积比)、P(HA/Pro)(激发发射矩阵(EEM)光谱中类腐殖酸区域与类蛋白质区域的区域积分比)、A4/A1(发射光谱中最后四分之一与第一四分之一的面积比)、r(A,C)(EEM光谱中A峰和C峰荧光强度之比)相互之间具有相关性(p<0.01),表明这些荧光参数可作为PPC的综合评价指标体系。随后,根据堆肥过程中的GI值,将堆肥成熟度分为四个等级,包括最佳成熟度(I级,GI>80%)、较好堆肥成熟度(II级,60%<GI<80%)、成熟度(III级,50%<GI<60%)和未成熟度(IV级,GI<50%)。计算每个堆肥成熟度等级对应的荧光参数值。然后考虑上述荧光参数值,基于PPC计算投影值。I级的投影值为2.01 - 2.22,II级为1.21 - 2.0,III级为0.57 - 1.2,IV级为0.10 - 0.56。然后用堆肥样品进行模型验证,结果表明模拟值与观测值相符,PPC对四个成熟度等级的准确率为75%,对成熟度和未成熟度的准确率为100%,表明PPC能够满足堆肥成熟度评估的需求。