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与可冲散性相关的非织造擦拭巾和卫生纸的物理特性、纤维成分和拉伸性能。

Physical characteristics, fiber compositions, and tensile properties of nonwoven wipes and toilet papers in relevance to what is flushable.

机构信息

Department of Environmental Engineering, School of Engineering, Sakarya University, Esentepe, 54187, Sakarya, Turkey.

Department of Environmental Engineering, School of Engineering, Sakarya University, Esentepe, 54187, Sakarya, Turkey.

出版信息

Sci Total Environ. 2019 Dec 20;697:134135. doi: 10.1016/j.scitotenv.2019.134135. Epub 2019 Aug 26.

Abstract

Numerous products, such as moist wipes, are marketed worldwide as "flushable." Recent studies indicate that wipes cause operational problems (e.g., pipe blockages) in sewer systems. This study investigates potential reasons for why wipes are problematic in sewer operations. Physical characteristics, fiber compositions, and tensile properties of non-flushable wipes, flushable wipes, and toilet papers (TPs) were assessed. Flushables, non-flushables, and TPs, respectively, had sheet masses of 1.5, 1.5, 0.5 g; surface areas of 250, 300, and 120 cm per sheet; thicknesses of 360, 370, and 160 μm; and volumes of 9.2, 11, 1.9 cm per sheet. While TPs were made of only plant-based fibers, wipes contained plant-based, and regenerated-cellulose (RC) fibers at various ratios, including up to 100% RC fibers. For tensile strength, the maximum force to break a specimen (F) averaged 3 N for dry TPs, and 0.26 N for wet TPs. In contrast, the average F values were 7 N for dry flushables and 5.9 N for their wet sheets. In wet states, TPs lost their strength by an average of 91%, but flushable wipes had variable changes: some wipes gained wet strength by 25%, some lost as much as 90%, and the average effect was a reduction by 29%. Thus, nonwoven wipes retain their strength and structure when wet, presumably because they contain RC fibers, which are known for their high wet strength. Accordingly, using synthetic fibers in flushable wipes seems to be the key reason for why the wipes cause operational problems in sewer systems.

摘要

有许多产品,如湿纸巾,在全球范围内都被宣传为“可冲散”。最近的研究表明,湿巾会导致污水系统出现运行问题(例如管道堵塞)。本研究探讨了湿巾在污水运行中出现问题的潜在原因。评估了不可冲散的湿巾、可冲散的湿巾和卫生纸(TP)的物理特性、纤维成分和拉伸性能。可冲散的、不可冲散的和 TP 的片材质量分别为 1.5、1.5 和 0.5g;单片面 积分别为 250、300 和 120cm;厚度分别为 360、370 和 160μm;单张体积分别为 9.2、11 和 1.9cm。虽然 TP 仅由植物纤维制成,但湿巾中含有植物纤维和再生纤维素(RC)纤维,比例各不相同,包括高达 100%的 RC 纤维。对于拉伸强度,将试样断裂所需的最大力(F)平均为干 TP 的 3N,湿 TP 的 0.26N。相比之下,干可冲散湿巾的平均 F 值为 7N,湿片的平均 F 值为 5.9N。在潮湿状态下,TP 的强度平均损失 91%,但可冲散的湿巾变化不同:有些湿巾的湿强度增加了 25%,有些则损失了高达 90%,平均效果是减少了 29%。因此,当湿巾变湿时,非织造布湿巾仍保持其强度和结构,这大概是因为它们含有 RC 纤维,而 RC 纤维以其高湿强度而闻名。因此,在可冲散的湿巾中使用合成纤维似乎是湿巾导致污水系统出现运行问题的关键原因。

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