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'dimethyl': [1, 21, 26, 31], '硫化物(数据管理系统)': [2], '的紫外导致降级与紫外照耀在一个静态的白房间房间被执行。联合在': [3], 'situ': [4, 35], 'Fourier': [5], '变换红外线(英尺红外)': [6], '分光计,煤气的用色层法分离团分光计(GCMS': [7], ')': [8, 10, 12, 45, 47, 51], ',宽范围的粒子分光计(WPS': [9], '技术,过滤器采样和离子色析法(IC': [11], '分析被用来监视气体、潜在的微粒产品。在紫外照耀的': [13], '240': [14], 'min': [15], '期间,数据管理系统的降级效率达到了20.9%,并且部分氧化了包含硫的气体的产品例如硫二氧化物(': [16], 'SO2': [17], '),羰基硫化物(': [18], 'OCS': [19], '),': [20, 25], 'sulfoxide': [22], '(': [23, 28], 'DMSO': [24], 'sulfone': [27], 'DMSO2': [29], ')和': [30], '二硫化物(': [32], 'DMDS': [33], ')被识别由在': [34], '英尺红外和': [36], 'GCMS': [37], '分析分别地。与数据管理系统的氧化伴随,推迟的粒子直接被检测被': [38], 'WPS': [39], '技术形成。这些粒子主要在累积模式的尺寸范围被测量,并且增加了他们的计数在整个整个移动过程的中部的直径。过滤器样品的': [40], 'IC': [41], '分析表明': [42], 'methanesulfonic': [43], '酸(MSA': [44], ',硫磺的酸(H2SO4': [46], '和另外的未辩别出的化学药品说明了这些粒子的主要非倔强的作文。把形成的分析和可能的中介基于产品,数据管理系统的降级小径作为': [48], 'O': [49], '(1D': [50], '的联合被建议': [52], '-': [53], '并且哦开始氧化机制。推迟的粒子的嘴巧的形成机制也被分析。臭数据管理系统的紫外导致降级是,这被结束潜在地在空气的微粒污染物质的来源。': [54]}, 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