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501.
Environmental Science and Pollution Research - A strain of silicon-activating bacteria was isolated from electrolytic manganese residue (EMR); identified as a species of Ochrobactrum by integrated...  相似文献   
502.
Environmental Science and Pollution Research - Food pollution can cause a variety of negative effects on human health, especially reproductive toxicity. Common food contaminants include biological...  相似文献   
503.
Environmental Science and Pollution Research - Biodiesel combustion particulate matter (PM) is different from diesel combustion PM in terms of microscopic morphology, which directly affects the...  相似文献   
504.
Environmental Science and Pollution Research - To investigate the relationship between health effect profile and co-exposure to heavy metal, 254 sanitation workers from Guangzhou, China, were...  相似文献   
505.
Zeng  Xiang  Xu  Xijin  Qin  Qilin  Ye  Kai  Wu  Weidong  Huo  Xia 《Environmental geochemistry and health》2019,41(1):309-321
Environmental Geochemistry and Health - The purpose of this study was to investigate the associations between levels of lead (Pb), cadmium (Cd), chromium (Cr), and manganese (Mn) in the PM2.5 and...  相似文献   
506.
In order to investigate the effect of feedstock ratios in biogas production, anaerobic co-digestions of rice straw with kitchen waste and pig manure were carried out. A series of single-stage batch mesophilic (37 ± 1 °C) anaerobic digestions were performed at a substrate concentration of 54 g/L based on volatile solids (VS). The results showed that the optimal ratio of kitchen waste, pig manure, and rice straw was 0.4:1.6:1, for which the C/N ratio was 21.7. The methane content was 45.9–70.0% and rate of VS reduction was 55.8%. The biogas yield of 674.4 L/kg VS was higher than that of the digestion of rice straw or pig manure alone by 71.67% and 10.41%, respectively. Inhibition of biogas production by volatile fatty acids (VFA) occurred when the addition of kitchen waste was greater than 26%. The VFA analysis showed that, in the reactors that successfully produced biogas, the dominant intermediate metabolites were propionate and acetate, while they were lactic acid, acetate, and propionate in the others.  相似文献   
507.
微表处在工程应用过程中受水与车辆荷载作用,容易产生推移或整片剥落。为此,在微表处中添加适量不同种类的水性环氧树脂(Water-borne Epoxy Resin,WER)形成环氧微表处,通过拉伸试验和自主设计的45°斜剪试验,研究WER对环氧微表处在浸水条件下层间抗剪性能的影响。试验结果表明:胶结料在掺入刚性较大的WER后,随浸水时间增加,胶结料塑性变形能力削弱,弹塑性阶段与塑性阶段减短,脆性增加,而掺加柔性的WER,塑性阶段持续时间较长;浸水状态下,环氧微表处与沥青路面的层间抗剪强度影响因素主次顺序为油石比WER掺量WER掺加方式,而切向变形率的影响因素主次顺序为WER掺量WER掺加方式油石比。在工程应用中,建议采用油石比7%、WER掺量8%~12%且将环氧树脂与固化剂预先调和后加入水中,然后与集料进行拌合。  相似文献   
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509.
钢铁炉渣具有环保节能的特性,可以减少对环境的损害,因而被认作是一种可回收再利用的材料,按照其特有的性质,可用于许多领域,例如水泥、混凝土骨料、地基改良材、道路、肥料和石棉等。本文简要介绍了日本钢铁炉渣回收再利用情况。  相似文献   
510.
Efficient and reliable removal of polyacrylamide (PAM), which are present in oil extraction waste water, is critically important to prevent toxic discharges to receiving waters. In the present study, two PAM degrading bacterial strains, namely HWBI and HWBIII, were isolated from the activated sludge and soil in an oil field. Two sequencing batch reactors (SBRs) were bioaugmented with either HWBI or HWBIII and the performance of each bacteria for enhancing PAM removal was compared. The effects of bioaugmentation on the performance of the SBRs with different exogenous strains after a single inoculation were investigated under long term operation. Results showed that for the SBR augmented with HWBI, 70% of PAM was removed at the end of the first operation cycle, and the removal remained at approximately 70% in the following eight cycles after a single inoculation. For the SBR augmented with HWBIII, only 45% of the PAM was removed in the first cycle after the inoculation, and PAM removal decreased to 30% after eight cycles. Terminal restriction fragment length polymorphism (T-RFLP), a molecular screening technique, was applied to track the supplemented bacterial strains and to evaluate the effects of bioaugmentation on the microbial communities and to investigate the optimal bioaugmentation strategy.  相似文献   
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