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首页> 外文期刊>Journal of Cleaner Production >Abatement of cadmium (Cd) contamination in sediment using tea waste biochar through meso-microcosm study
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Abatement of cadmium (Cd) contamination in sediment using tea waste biochar through meso-microcosm study

机译:茶叶废弃物BioChar通过中学微观研究沉积物中镉(CD)污染的污染

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The effectiveness of biochar produced from used tea waste was investigated as a potential in-situ amendment for Cd immobilization using a study design based on sediment-water meso-microcosm with 14-days of incubation. The optimum condition for biochar production was evaluated as a function of size, pyrolysis temperature and time. The highest monolayer uptake capacity was found as 42.01 mg/g for selected tea biochar (TB). The TB was mixed with sediment at the ratios of 0%, 2.5%, 5%, and 10%. As compared to the control (0% TB dose), in TB treated sediments, mobile fraction of Cd in sediment was considerably reduced which ultimately decrease the amount of Cd uptake by biota. The efficiency of Cd immobilization increased with the amendment dosage. Overall, sediment treated with 10% TB led to a reduction of Cd by 67.7% in the exchangeable fraction. Additionally, uptake of Cd in mollusc tissue was successfully reduced by 83%, while in case of Eichhornia crassipes root and shoot 75% and 87%, correspondingly. The tea waste biochar had shown its potential to immobilize the Cd from contaminated sediment as an economically and feasible method of abatement. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用基于沉积物 - 水中微观微观的研究设计,研究了由二手茶废物生产的生物炭的有效性作为使用研究设计的CD固定化的潜在原位修改。作为尺寸,热解温度和时间的函数评估生物炭生产的最佳条件。最高的单层摄取能力被发现为42.01 mg / g用于选定的茶叶生物炭(TB)。将Tb与沉积物混合,比0%,2.5%,5%和10%的比率混合。与对照(0%TB剂量)相比,在TB处理的沉积物中,沉积物中CD的移动分数显着降低,这最终降低了Biota的CD摄取量。 CD固定化的效率随着修正剂量而增加。总的来说,用10%TB处理的沉积物导致可交换级分的CD减少67.7%。此外,在MOLLUSC组织中的CD摄取成功降低了83%,而在EICHHORNIA CRASSIPES根本和射击75%和87%的情况下,相应地减少了83%。茶叶废物BioChar已经表明其可能将CD从受污染的沉积物固定为经济上和可行的减排方法。 (c)2018年elestvier有限公司保留所有权利。

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