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761.
Huaidong He Nora F. Y. Tam Aijun Yao Rongliang Qiu Wai Chin Li Zhihong Ye 《Environmental science and pollution research international》2016,23(23):23551-23560
Paddy soils and rice (Oryza sativa L.) contaminated by mixed heavy metals have given rise to great concern. Field experiments were conducted over two cultivation seasons to study the effects of steel slag (SS), fly ash (FA), limestone (LS), bioorganic fertilizer (BF), and the combination of SS and BF (SSBF) on rice grain yield, Cd, Pb, and Zn and nutrient accumulation in brown rice, bioavailability of Cd, Pb, and Zn in soil as well as soil properties (pH and catalase), at two acidic paddy fields contaminated with mixed heavy metals (Cd, Pb, and Zn). Compared to the controls, SS, LS, and SSBF at both low and high additions significantly elevated soil pH over both cultivation seasons. The high treatments of SS and SSBF markedly increased grain yields, the accumulation of P and Ca in brown rice and soil catalase activities in the first cultivation season. The most striking result was from SS application (4.0 t ha?1) that consistently and significantly reduced the soil bioavailability of Cd, Pb, and Zn by 38.5–91.2 % and the concentrations of Cd and Pb in brown rice by 20.9–50.9 % in the two soils over both cultivation seasons. LS addition (4.0 t ha?1) also markedly reduced the bioavailable Cd, Pb, and Zn in soil and the Cd concentrations in brown rice. BF remobilized soil Cd and Pb leading to more accumulation of these metals in brown rice. The results showed that steel slag was most effective in the remediation of acidic paddy soils contaminated with mixed heavy metals. 相似文献
762.
采用溶胶-凝胶法制备了掺杂La3+的TiO2(La3+-TiO2),并负载于泡沫镍上,制得泡沫镍负载La3+-TiO2催化剂。采用XRD、DSC、荧光发射光谱以及SEM方法进行了表征分析。研究了泡沫镍负载La3+-TiO2催化剂在可见光下对苯的降解效果,并对苯的光催化降解动力学特性进行了分析。实验结果表明:在最佳焙烧温度和焙烧时间分别为400 ℃和1 h的条件下,La3+-TiO2的晶相主要为锐钛矿型;负载后,La3+-TiO2颗粒填充于泡沫镍的空洞中,比表面积增加,光催化活性得以提高;在不同初始苯质量浓度和催化剂使用次数条件下,苯的降解率不同,最高可达92.9 %;光催化降解过程遵循拟一级动力学规律。 相似文献
763.
Spatial variations of concentrations of copper and its speciation in the soil-rice system in Wenling of southeastern China 总被引:2,自引:0,他引:2
Keli Zhao Weijun Fu Xingmei Liu Dongliang Huang Chaosheng Zhang Zhengqian Ye Jianming Xu 《Environmental science and pollution research international》2014,21(11):7165-7176
Copper (Cu) is one of the essential elements for plant growth, while excessive Cu in soils has potential environmental risks. There is little information on spatial variation of Cu in practical paddy fields. This is now important for appropriate agricultural management. The spatial patterns of Cu, its fractions in soils, and its concentrations in rice were investigated in a typical rice production region—Wenling of southeastern China. A total of 96 pairs of rice grain and soil samples (0–15 cm) were collected. The total concentration of Cu and its fractions were very variable, with large skewness, kurtosis, and coefficient of variation (CV) values. Compared to the guideline value (50 mg kg?1), Cu pollution in paddy fields was observed in the study area. All the measured Cu concentrations in rice were lower than 10 mg kg?1, suggesting that they remained at a safe level. Spatial analyses including Moran’s I index and geostatistics results indicated that high-high spatial patterns for both Cu in soils and rice were found in the northwest part, which was mainly related to industrial and E-waste dismantling activities. The low-low spatial patterns of Cu in the soil-rice system were located in the south part of study area. The cross-correlogram results indicated that Cu concentration in rice was significantly spatially correlated with total Cu in soils, its fractions, and soil organic matter (SOM), but significantly negatively correlated with pH and electrical conductivity (EC). Most of the selected variables had a clear spatial correlation range with Cu in rice. The ranges of significant spatial correlation (p?<?0.05) could be obtained and further used for dividing agricultural management zones. 相似文献
764.
765.
酶法降解偶氮染料刚果红是一个复杂的过程,受温度、pH、酶量、刚果红浓度和双氧水浓度显著影响。为研究各因素及因素间交互作用对刚果红降解影响,提高刚果红的降解率,分别使用单因素法和响应面分析法对刚果红降解条件进行了优化。单因素实验结果显示灰盖鬼伞过氧化物酶降解刚果红的最适条件为:pH5.0、32℃、酶量4.98u、双氧水0.1mmol/L、刚果红20mg/L,此时刚果红最高降解率为34.84%。然后选双氧水浓度、刚果红浓度和灰盖鬼伞过氧化物酶量作为3个因素,通过中心组合设计实验,用响应面法对刚果红降解进行优化分析,最后得到一个拟合度良好的二次多项方程模型(R2=0.9900)。方差分析结果显示,刚果红浓度和酶量是影响最显著的因素,双氧水与酶以及染料与酶之间的交互作用极显著。响应面分析优化后的反应体系为:双氧水浓度0.15mmol/L,刚果红浓度为27.21mg/L,酶为2.07U,在此条件下,刚果红降解率达58.13%。 相似文献
766.
水资源问题是我国面临的重要资源与环境问题。流域水资源配置的有效性缺失也使水资源问题进一步恶化,而水资源配置过程中大量不确定信息也使高效决策问题更加困难。基于区间直觉模糊群决策的水资源配置方案优化方法,分析了水资源系统作为复杂系统的特殊性和区间直觉模糊理论在群决策中应用的优势,利用区间模糊数来表达专家判断信息,提高了流域水资源配置方案的合理性。通过多个水资源领域专家的群体决策,从流域水资源可持续利用评价视角出发,针对流域的社会、经济、资源、环境等多个因素进行判断,利用IIWAA算子进行群体意见集成,最后根据流域指标与理想点逼近点的距离对流域水资源配置方案排序。通过赣抚平原灌区内的用水区域在不同方案情景下的水资源可持续利用实例分析表明,该方法能够比较准确地评估出流域水资源配置方案的可持续性,为流域的水资源配置方案制定提供有效合理的决策支持 相似文献
767.
热解温度对污泥生物炭的表面特性及重金属安全性的影响 总被引:4,自引:0,他引:4
以一套中试干燥热解一体化处理设备,采用热解工艺,在300~600℃范围内对污水处理厂产生的剩余污泥进行了批处理,得到了系列污泥生物炭产品,并对其表面电荷、FT-IR图谱等进行了测试,对污泥及生物炭的重金属总量和DTPA可提取态进行了比较分析。研究表明,热解温度会影响生物炭表面电荷分布,而且在400℃时表面电荷分布最均匀。经热解反应后,污泥中的重金属总量虽然得到了一定程度的富集,但Pb,Zn,Cu,Fe和Mn 5种重金属的DTPA-可提取态的含量大幅度降低,因此,污泥生物炭中的重金属被惰性化,降低了环境风险。 相似文献
768.
根据微生物之间协同关系的微生态理论筛选、组合获得一种由6株功能菌组成的除臭复合菌剂,该复合菌剂对粪便原位除臭效果良好,对综合恶臭的平均去除率为54.97%,最大去除率为72.95%。通过16 S r DNA、18S r DNA和26S r DNA D1/D2区序列同源性分析,菌剂中的6种微生物为罗伦隐球酵母菌(Cryptococcus laurentii)、Bacillus safensis、枯草芽孢杆菌(Bacillus subtilis)、卷枝毛霉(Mucor circinelloides)、发酵乳杆菌(Lactobacillus fermentum)和沼泽红假单胞菌(Rhodopseudomonas palustris),鉴定结果表明,复合菌剂中有酵母菌、芽孢杆菌、霉菌、乳酸菌及光合菌,这些功能菌属于当前生物除臭复合菌剂中的主流菌群。 相似文献
769.
770.