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不同菌糠生物炭对水体中Cu2+、Cd2+的吸附性能   总被引:1,自引:0,他引:1  
以菌糠废弃物为原料,采用限氧裂解法在500℃条件下制备香菇菌糠、猴头菇菌糠和平菇菌糠生物炭(LEBC、HEBC和POBC).利用SEM、XRD和FTIR等方法对吸附剂进行了表征;通过吸附动力学、等温吸附、生物炭酸化实验探究了3种菌糠生物炭去除水溶液中Cu~(2+)、Cd~(2+)的效果及机理.结果表明,在溶液初始pH 2—3时,3种菌糠生物炭对溶液中Cu~(2+)、Cd~(2+)的吸附量急剧增加.LEBC、HEBC、POBC对Cu~(2+)、Cd~(2+)的吸附符合准二级动力学模型,对Cu~(2+)的吸附速率分别为10.15×10~(-3)、7.08×10~(-3)、0.69×10~(-3) mg·g~(-1)·min~(-1),对Cd~(2+)的吸附速率分别为6.53×10~(-3)、5.19×10~(-3)、0.26×10~(-3) mg·g~(-1)·min~(-1).不同浓度下LEBC、HEBC、POBC对Cu~(2+)的吸附符合Langmuir模型,最大吸附量依次为56.74、11.98、77.32 mg·g~(-1);而Cd~(2+)的吸附符合Freundlich模型,最大吸附量依次为74.26、36.49、70.2 mg·g~(-1).LEBC在较短的时间内能达到较大的吸附量,可作为去除水体中Cu~(2+)、Cd~(2+)的优质吸附剂.XRD和FTIR等分析结果表明生物炭对Cu~(2+)、Cd~(2+)的吸附机制包括物理吸附、阳离子-π作用、官能团络合及沉淀.3种生物炭经酸化处理后,对Cu~(2+)、Cd~(2+)的吸附能力显著下降,表明生物炭中碳酸盐引起的Cu~(2+)、Cd~(2+)表面沉淀在吸附过程中起重要作用.  相似文献   
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苏州河底泥3种内分泌干扰物的空间分布及环境风险   总被引:2,自引:0,他引:2  
应用气相色谱质谱联用方法对苏州河及其支流底泥中3种环境内分泌干扰物壬基酚(NP)、辛基酚(4-t-OP)和双酚A(BPA)的含量进行检测和调查,结果表明,这3种物质在河流底泥中的浓度变幅分别为<1.0~5 800、<0.10~39和0.90~180μg.kg-1,空间分异显著.总体上看,底泥污染物浓度与河流周边人为活动密集程度有关:在苏州河上海市区段底泥的含量显著地高于上海远郊和江苏省内河段底泥含量;苏州河支流底泥中的含量显著高于苏州河干流底泥含量.苏州河及其支流底泥中这3种内分泌干扰物两两之间,存在显著正相关,说明其有相似的物源.以含量较高的壬基酚为例,进行底泥环境内分泌干扰物的风险评估,结果表明,除苏州河江苏省内吴家港桥段外,其它河段均存在潜在的生态毒害风险,需采取相应的防范措施.  相似文献   
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Lin  Meixia  Li  Fayun  Li  Xiaotong  Rong  Xiangmin  OH  Kokyo 《Environmental Chemistry Letters》2023,21(3):1837-1862
Environmental Chemistry Letters - Worldwide pollution of waters and soils is a rising health issue calling for advanced decontamination methods such as adsorption of contaminants on biochar because...  相似文献   
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The short term human exposure studies conducted on populations exposed to high concentrations of inorganic arsenic in soil have been inconsistent in demonstrating a relationship between environmental concentrations and exposure measures. In Australia there are many areas with very high arsenic concentrations in residential soil most typically associated with gold mining activities in rural areas. This study aimed to investigate the relationship between environmental arsenic and urinary inorganic arsenic concentrations in a population living in a gold mining area (soil arsenic concentrations between 9 and 9900 mg kg(-1)), and a control population with low arsenic levels in soil (between 1 and 80 mg kg(-1)). Risk factors for increased urinary arsenic concentrations were also explored. There was a weak but significant relationship between soil arsenic concentrations and inorganic urinary arsenic concentration with a Spearman correlation coefficient of 0.39. When participants with greater than 100 mg kg(-1) arsenic in residential soil were selected, the coefficient increased to 0.64. The geometric mean urinary inorganic arsenic concentration for the exposed group was 1.64 microg L(-1) (相似文献   
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