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首页> 外文期刊>Waste Disposal & Sustainable Energy >Utilization of leather fibrous wastes for the production of reconstituted fibric materials: heavy metal determination and removal
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Utilization of leather fibrous wastes for the production of reconstituted fibric materials: heavy metal determination and removal

机译:利用皮革纤维废物来生产重构纤维材料:重金属测定和去除

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摘要

Abstract Incomprehension concerning heavy metal containing finished solid leather wastes leads to environmental pollution. Conversion of these solid leather waste into energy and resource efficient products proves to be challenging. However, leather microfibres (LMF) were isolated from these heavy metal containing finished solid leather wastes. These heavy metal contain LMF further processed into metal reduction LMF. The metal reduction LMF were investigated for their heavy metal removal efficiency and toxicity analysis. The Cr (III) and Cr (VI) content of LMF was <1000?μg/mL and <800?μg/mL, respectively. Toxicity estimation was proved that the LMF had less than 1%. The study attempt to prepare reconstituted fibric materials (RFM) from metal reduction LMF and cellulose nanofibres (CNF). RFM were characterized for their physicochemical and mechanical properties. Hence, the study has proved a novel concept of RFM production which is recyclable, environmental friendly and cost effective.
机译:关于包含成品固体皮革废物的重金属的抽象不理解会导致环境污染。这些固体皮革废物转化为能源和资源效率的产品被证明是具有挑战性的。然而,从这些重金属中,含有成品固体皮革废物的重金属中分离出皮革微生物(LMF)。这些重金属包含LMF进一步加工成金属还原LMF。对金属还原LMF的重金属去除效率和毒性分析进行了研究。 LMF的Cr(III)和CR(VI)含量分别<1000?μg/ml和<800?μg/ml。毒性估计证明了LMF的含量不到1%。该研究试图从金属还原LMF和纤维素纳米纤维(CNF)中制备重建的纤维材料(RFM)。 RFM的特征是其物理化学和机械性能。因此,该研究证明了RFM生产的新颖概念,可回收,环保友好且具有成本效益。

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