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Evolution of biodegradation of deinking by-products used as alternative cover material

机译:用作替代覆盖材料的脱墨副产物生物降解的演变

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Deinking by-products (DBP) have been used as alternative cover material for landfills and mine tailings. Since DBP is biodegradable because of its high cellulose and hemicellulose content, a laboratory experimental program was performed to monitor the evolution of biodegradation and changes in the physico-chemical and geotechnical properties of DBP samples submitted to accelerated biodegradation for 1460 days at 38 ℃. The evolution of gas and leachate production was monitored in terms of both quality and quantity, which allowed for the calculation of mass loss with time. Under the conditions of the tests (no load applied), 19.6% of the mass was lost as gas, whereas 6.1% was leached out. The results show that biodegradation did not significantly alter the compaction behavior of DBP. The void ratio and water content increased significantly, while the volume of the samples slightly decreased. This seem to indicate that the porous structure of the samples was no longer the same after 1460 d of accelerated biodegradation. A slight increase in the relative density indicates that the organic/inorganic matter ratio increased. The results of permeability tests performed with samples at various stages of biodegradation and at various confining stresses show that the saturated hydraulic conductivity of recompacted biodegraded DBP decreased from 7 × 10~(-7) cm/s to approximately 2 × 10~(-7) cm/s, as biodegradation advanced.
机译:脱墨副产品(DBP)已用作垃圾掩埋场和矿山尾矿的替代覆盖材料。由于DBP具有较高的纤维素和半纤维素含量,因此可生物降解,因此进行了实验室实验程序,以监测生物降解的进展以及DBP样品在38℃下加速生物降解1460天的理化和岩土性质的变化。从质量和数量两方面监测气体和渗滤液生产的演变,从而可以计算随时间的质量损失。在测试条件下(未施加负载),有19.6%的质量损失为气体,而有6.1%的质量则被滤出。结果表明,生物降解不会显着改变DBP的压实行为。空隙率和水含量显着增加,而样品的体积略有减少。这似乎表明样品的多孔结构在加速生物降解1460 d后不再相同。相对密度的轻微增加表明有机/无机物比率增加。在不同生物降解阶段和不同围压下对样品进行的渗透性测试结果表明,重新压实的生物降解DBP的饱和水力传导率从7×10〜(-7)cm / s降至约2×10〜(-7 )cm / s,随着生物降解的发展。

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