首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Surface characteristics and potential ecological risk evaluation of heavy metals in the bio-char produced by co-pyrolysis from municipal sewage sludge and hazelnut shell with zinc chloride
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Surface characteristics and potential ecological risk evaluation of heavy metals in the bio-char produced by co-pyrolysis from municipal sewage sludge and hazelnut shell with zinc chloride

机译:城市污水污泥和榛子壳与氯化锌的共热分解生物炭中重金属的表面特征及潜在生态风险评价

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Municipal sewage sludge (MSS) and hazelnut shell were used for co-pyrolysis by chemical activation with ZnCl2. The surface characteristics and potential ecological risk evaluation of heavy metals in the bio-char produced by co-pyrolysis were analyzed by surface analyzer and BCR sequential extraction. When raw materials with ZnCl2 (3 mol/L) were co-pyrolyzed at 500 degrees C for 90 min, specific surface area of the bio-char is 598.73 m(2)/g, and iodine absorption number is 607.85 mg/g. For microcosmic surface of the bio-char, the ratio of micropore area is stabilized from 0.74 to 0.80 of the total specific surface area, and hazelnut shell is effective to generate microporous construction. For the migration and transformation behavior of heavy metals, pyrolysis promoted mobile fraction (F1 and F2) to stable fraction (F3 and F4) with increasing pyrolysis temperature. The potential ecological risk of heavy metals transforms from considerable risk to low risk after pyrolysis at 500 degrees C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:市政污泥(MSS)和榛子壳用于通过用ZnCl2进行化学活化共热。通过表面分析仪和BCR连续提取分析了通过共热分解产生的生物炭中的重金属的表面特征和潜在生态风险评估。当用ZnCl2(3mol / L)的原料在500℃下持续90分钟时,生物炭的比表面积为598.73m(2)/ g,碘吸收数为607.85mg / g。对于生物焦炭的微观表面,微孔面积的比率从总比表面积的0.74稳定到0.80,并且榛子壳有效地产生微孔结构。对于重金属的迁移和转化行为,热解促进移动级分(F1和F2)以增加热解温度的稳定级分(F3和F4)。重金属的潜在生态风险在500摄氏度溶解后从相当大的风险转化为低风险。(c)2017年elsevier有限公司保留所有权利。

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