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121.
Environmental Science and Pollution Research - To analyze the impact of particle sizes on sources and related health risks for heavy metals, road dust samples in Beijing were collected and sifted...  相似文献   
122.
Jiang  Dongmei  Jiang  Kunhong  Li  Rui  Zhao  Liangbin  Liu  Zile  Xiong  Bangjie  Jin  Du  Hao  Xiaoxia  Zhu  Li  Kang  Bo  Bai  Lin 《Environmental science and pollution research international》2022,29(36):54378-54390

The disposal of organic waste by the biocomposting of black soldier fly larvae (BSFL) has drawn broad attention. However, the discrepancies in heavy metal immobilization between BSFL biocomposting with different inoculation densities and aerobic composting need to be further researched. In this study, BSFL with inoculation densities of 0.08%, 0.24% and 0.40% was added to swine manure to investigate its influence on heavy metal bioaccumulation and bioavailability. The physicochemical properties, BSFL growth performance and amino acid contents were measured. The results showed that the germination index, total prepupal yield and bioavailable fraction removal rate (%) of Cr and Pb at an inoculation density of 0.40% of BSFL were the highest among all of the BSFL biocomposting groups. Although the bioaccumulation factor and heavy metal (Cd, Cr, Cu and Zn) concentrations of the BSFL body from swine manure with inoculation densities of 0.24% and 0.40% of BSFL were similar, the BSFL inoculation density of 0.40% had the best absorption effect on these heavy metals in terms of total prepupal yield. Therefore, this study provides a basis for exploring the optimal inoculation density of BSFL biocomposting to reduce the harmful effects of heavy metals in swine manure.

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123.
通过向NH4+-N质量浓度为30 mg·L−1的合成废水中投加不同剂量磺胺嘧啶(SDZ)(0、1、3、5、7和10 mg·L–1),比较了SDZ浓度对一台60 L单级纯膜移动床生物膜反应器(pure MBBR)的氨氧化速率、amoA基因丰度和氨氧化细菌(AOB)种群结构的影响,揭示了磺胺嘧啶对纯膜MBBR系统中氨氧化作用的影响机制。结果表明:1~3 mg·L–1的SDZ显著提升了纯膜MBBR系统的氨氧化速率(P<0.05),出水${\rm{NH}}_4^{+} $-N质量浓度可降低至(0.19±0.10) mg·L–1;5~10 mg·L–1的SDZ仍能促进${\rm{NH}}_4^{+} $-N去除,但氨氧化速率变化相对平缓。相比于氨氧化古菌(AOA),AOB为纯膜MBBR氨氧化的主导者,AOB amoA基因丰度是AOA amoA基因丰度的12.2~168.5倍。1~10 mg·L–1的磺胺嘧啶暴露显著抑制了AOB amoA基因丰度(P<0.05),但能有效刺激AOA amoA基因丰度上调(P<0.05)。高通量测序结果表明,添加磺胺嘧啶改变了AOB的种群多样性及结构,且1~3 mg·L–1的SDZ能显著促进AOB种群多样化和亚硝化螺菌属(Nitrosospira)生长(P<0.05)。SDZ对氮源的补充、对AOB与AOA丰度占比的改变、对微生物耐药性的促进以及对AOB种群结构的干扰是其影响纯膜MBBR氨氧化过程的主要机制。  相似文献   
124.
Environmental Science and Pollution Research - In this study, corn stalk was modified by manganese (Mn) before (MBC1) and after (MBC2) pyrolysis at different temperatures (400~600&nbsp;°C)...  相似文献   
125.
Environmental Science and Pollution Research - There is a delayed (lag 1 to 2&nbsp;days) correlation between acute PM 2.5 (particulate matter &lt;?2.5&nbsp;μm in aerodynamic...  相似文献   
126.
Environmental Science and Pollution Research - China is the most populous country in the world, and the pollution caused by the excessive population should not be underestimated. In recent years,...  相似文献   
127.
农药残留速测技术研究进展   总被引:1,自引:0,他引:1  
本文综述了国内外农药快速检测技术的研究状况。在速测技术中 ,色 -质联用分析法已发展得比较成熟 ,所得结果比较可靠 ,但该法的测定时间仍较长 ;免疫分析法具有简单、快速、价廉、特异性高、需样品量少等优点 ;生物传感器法更方便、快捷。  相似文献   
128.
为提高等离子体氧化CH4的脱除效率,同时避免放电过程中副产物NOx的生成,在模拟天然气 (LNG) 发动机排气中,研究了介质阻挡放电 (DBD) 反应器电极结构参数对CH4脱除效率、CO2选择性及NOx生成的影响及其机理。结果表明:增大电极直径使得气隙中折合场强E/N提高,增加了·O和·OH自由基的生成,促进了CH4的氧化,提高了CO2选择性;内电极直径的增大使E/N在气隙中分布更加集中,抑制了N2(X, v)和N自由基的生成,减少了副反应的发生。与圆杆电极相比,螺纹电极的螺牙顶部附近具有过高的电场强度,从而促进N自由基的生成并抑制·O自由基的产生,故圆杆电极比螺纹电极具有更高的CH4脱除效率及更低的NOx生成。电极长度过长降低了折合场强以及电子平均能量,不利于氧化性活性粒子生成,导致CH4脱除效率和CO2选择性降低,同时增加了N2(X,v) ,也使得NOx增加。本研究可为提高低温等离子体协同催化剂促进甲烷还原NOx系统的脱除效率,降低DBD反应器能耗提高能源利用率提供参考。  相似文献   
129.
Environmental Science and Pollution Research - Sugarcane monoculture (SM) often leads to soil problems, like soil acidification, degradation, and soil-borne diseases, which ultimately pose a...  相似文献   
130.

Microbial communities are important for high composting efficiency and good quality composts. This study was conducted to compare the changes of physicochemical and bacterial characteristics in composting from different raw materials, including chicken manure (CM), duck manure (DM), sheep manure (SM), food waste (FW), and vegetable waste (VW). The role and interactions of core bacteria and their contribution to maturity in diverse composts were analyzed by advanced bioinformatics methods combined sequencing with co-occurrence network and structural equation modeling (SEM). Results indicated that there were obviously different bacterial composition and diversity in composting from diverse sources. FW had a low pH and different physiochemical characteristics compared to other composts but they all achieved similar maturity products. Redundancy analysis suggested total organic carbon, phosphorus, and temperature governed the composition of microbial species but key factors were different in diverse composts. Network analysis showed completely different interactions of core bacterial community from diverse composts but Thermobifida was the ubiquitous core bacteria in composting bacterial network. Sphaerobacter and Lactobacillus as core genus were presented in the starting mesophilic and thermophilic phases of composting from manure (CM, DM, SM) and municipal solid waste (FW, VW), respectively. SEM indicated core bacteria had the positive, direct, and the biggest (>?80%) effects on composting maturity. Therefore, this study presents theoretical basis to identify and enhance the core bacteria for improving full-scale composting efficiency facing more and more organic wastes.

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