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织物调理产品和绒毛过滤器孔径对滚筒干燥引起的空气传播微纤维污染的影响。

The impact of fabric conditioning products and lint filter pore size on airborne microfiber pollution arising from tumble drying.

机构信息

Procter & Gamble, Newcastle Innovation Center, Newcastle upon Tyne, United Kingdom.

Department of Applied Sciences, Northumbria University, Newcastle upon Tyne, United Kingdom.

出版信息

PLoS One. 2022 Apr 6;17(4):e0265912. doi: 10.1371/journal.pone.0265912. eCollection 2022.

Abstract

Vented tumble dryers release moist warm air from the drying process to the external environment, usually through pipework linking the appliance to a vent in an exterior wall. Although such dryers contain a lint filter to remove fibers from this air stream, recent reports suggest that this process is incomplete, leading to microfibers being released in the ducted warm air and subsequently polluting the external environment. Microfiber release from wash loads comprising 10 100% cotton and 10 100% polyester T-shirts (total load mass ratio 48% cotton, 52% polyester) was measured at different stages of the washing and drying process to compare the quantities of fibers released 'down the drain', collected in the dryer lint filter, and released to air from the tumble dryer. Testing under both European and North American washing conditions found that the quantities of microfibers released to air during tumble drying were significant and comparable to levels released 'down the drain' during washing. Use of conventional rinse-added liquid fabric conditioner increased microfiber accumulation on the dryer lint filter, with reduced release from the dryer exhaust observed at the highest fabric conditioner dose tested (21.6% and 14.2% reduction under North American and European conditions, respectively). Conventional liquid fabric conditioner did not significantly impact microfiber release from the washing machine, in line with previous studies. A fabric conditioner specially designed for anti-wrinkle performance reduced microfiber release from the dryer exhaust at all levels tested (by 17.6-35.6%, depending on dose), apparently by increasing the efficiency of microfiber accumulation in the lint filter. Tumble dryer sheets were also found to cause a reduction in microfiber release from the dryer exhaust (by 14.1-34.9%, depending on the dose/product), likely driven by collection of liberated fibers on the sheet during the drying process. The use of both antiwrinkle liquid fabric conditioner and dryer sheet enabled a 44.9% reduction in microfiber emissions from the dryer exhaust. In all studies, the fiber mass collected on the lint filter or emitted from the dryer exhaust was richer in cotton fibers (range 83.4-96.3% on the lint filter, 93.0-99.8% from the dryer exhaust) than the wash load composition (48% cotton). Moreover, fibers collected by the lint filter contained a higher proportion of polyester than emissions from the dryer exhaust (range 3.7-16.6% on the lint filter, 0.2-7.0% from the dryer exhaust). There is significant variation in the porosity of lint filters among installed vented tumble dryers. Single-variable testing of the impact of lint filter design concluded that reducing screen pore size significantly reduces airborne microfiber release during tumble drying; a reduction in lint filter pore size from 0.2 mm2 to 0.04 mm2 reduced release by 34.8%. As some lint filters have pore sizes of around 1 mm2, there is enormous scope to reduce microfiber release from dryers though improved lint filter design. However, it is suggested that a step-change in appliance design away from vented dryers to only fully-sealed condenser dryers might be necessary to eliminate the contribution of tumble drying to airborne microfiber pollution.

摘要

通风滚筒式干衣机将干燥过程中潮湿温暖的空气排放到外部环境中,通常通过将设备连接到外墙通风口的管道来实现。尽管这种干衣机配备了一个绒毛过滤器,可以从空气流中去除纤维,但最近的报告表明,这个过程并不完全,导致微纤维在通风的暖空气中释放,并随后污染外部环境。测量了由 10 件 100%棉和 10 件 100%聚酯 T 恤(总负载质量比为 48%棉,52%聚酯)组成的洗涤物在洗涤和干燥过程的不同阶段释放到空气中的微纤维数量,以比较“随污水流失”、收集在干衣机绒毛过滤器中和从滚筒式干衣机中释放到空气中的纤维数量。在欧洲和北美洗涤条件下的测试发现,在滚筒式干燥过程中释放到空气中的微纤维数量非常显著,与洗涤过程中“随污水流失”的水平相当。使用常规的漂洗添加液体织物柔顺剂会增加绒毛过滤器上的微纤维堆积,在测试的最高织物柔顺剂量下观察到从干衣机排气口的释放减少(在北美和欧洲条件下分别减少 21.6%和 14.2%)。常规的液体织物柔顺剂并没有显著影响从洗衣机中释放微纤维,这与之前的研究一致。专门设计用于抗皱性能的织物柔顺剂在所有测试水平下都能减少从干衣机排气口释放的微纤维(降低 17.6-35.6%,具体取决于剂量),显然是通过增加绒毛过滤器中微纤维的收集效率。干衣机片也被发现能减少从干衣机排气口释放的微纤维(降低 14.1-34.9%,具体取决于剂量/产品),这可能是由于在干燥过程中,自由纤维被片材收集。使用抗皱液体织物柔顺剂和干衣机片可以使从干衣机排气口排放的微纤维减少 44.9%。在所有研究中,绒毛过滤器上收集的纤维质量或从干衣机排气口排放的纤维质量中,棉纤维的含量都比洗涤物的组成更丰富(绒毛过滤器上的范围为 83.4-96.3%,干衣机排气口中的范围为 93.0-99.8%)。此外,绒毛过滤器收集的纤维比干衣机排气口排放的纤维含有更高比例的聚酯(绒毛过滤器上的范围为 3.7-16.6%,干衣机排气口中的范围为 0.2-7.0%)。安装的通风滚筒式干衣机中,绒毛过滤器的孔隙率有很大差异。对绒毛过滤器设计影响的单变量测试得出结论,减小筛网孔尺寸可显著减少滚筒干燥过程中的空气传播微纤维释放;将绒毛过滤器的孔尺寸从 0.2 毫米 2 减小到 0.04 毫米 2 可减少 34.8%的释放。由于一些绒毛过滤器的孔尺寸约为 1 毫米 2,因此通过改进绒毛过滤器设计,可以大大减少从干衣机中释放微纤维。然而,建议对器具设计进行重大改变,从通风式干衣机改为仅全密封冷凝器干衣机,以消除滚筒干燥对空气中微纤维污染的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/675c/8985936/6ed87598499c/pone.0265912.g001.jpg

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