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51.
Worldwide energy demand has been growing steadily during the past five decades and most experts believe that this trend will continue to rise. The amount of emitted harmful emission gases increases in parallel with increasing energy consumption. This increase has forced many countries to take various precautions, and various restrictions on emitted emissions have been carried. In this study, effects of addition of oxygen containing nanoparticle additives to biodiesel on fuel properties and effects on diesel engine performance and exhaust emissions were investigated. Two different nanoparticle additives, namely MgO and SiO2, were added to biodiesel at the addition dosage of 25 and 50 ppm. Fuel properties, engine performance, and exhaust emission characteristics of obtained modified fuels were examined. As a result of this study, engine emission values NOx and CO were decreased and engine performance values slightly increased with the addition of nanoparticle additives. 相似文献
52.
PBDEs的来源特征、环境分布及污染控制 总被引:2,自引:0,他引:2
多溴联苯醚(Polybrominated diphenyl ethers,PBDEs)生产应用、环境分布与生态风险之间的关系将如何影响我国的未来,具体涉及到工业、环境、健康、人类繁衍等的社会问题.由于PBDEs阻燃效率高,热稳定性好,价格便宜,作为添加剂被广泛应用在电子、电器、化工、交通、建材、纺织、石油等领域的阻燃产品中.PBDEs进入环境后迁移扩散并富集于沉积物和生物体内,进入人体后引起肝脏毒性、内分泌干扰、神经毒性和生育能力下降等而危害人类的健康.基于此,从生产应用、品种生产量、分子的物理化学特性以及毒性等的文献数据分析了PBDEs的来源特征与环境危害,分析这些性质对环境分布与污染控制的基础支持关系;从沉积物、水体、大气、水生生物、人体5个方面考察了PBDEs的环境本底浓度变化、分配关系、迁移规律、时间效应,分析了生产、应用与扩散的多因素影响关系,发现全球性PBDEs污染物蔓延的现象,沉积物是主要的归趋场所,室内空气中的浓度远高于室外,水中浓度较低,水生生物和人体均能富集PBDEs,通过饮食、母乳和呼吸摄入,可实现代际传播,污染的分布呈现介质与区域的不同特征;污染控制需要考虑点源技术与面源修复的联合,结合PBDEs的物理性质、分子结构及其化学特性,统计分析了微生物法、光化学降解法和零价铁还原法的原理及其有效性,根据PBDEs在产品中存在与分布的特点,提出收集-分离-富集-超临界催化还原和氧化毁毒的工艺,针对实际环境(以电子垃圾塑料和流域水体及沉积物为对象)中的PBDEs进行回收或处理,结合材料如催化剂的应用,从动力学和热力学方面提高PBDEs无害化的效率.最后,从生产管理、环境监测、风险评价、技术集成等方面提出了未来的努力方向. 相似文献
53.
ZnBiYO4 was synthesized by a solid-state reaction method for the first time. The structural and photocatalytic properties of ZnBiYO4 were characterized by X-ray diffraction, scanning electron microscopy, X-ray photoelectron spectroscopy and UV-Vis diffuse reflectance. ZnBiYO4 crystallized with a tetragonal spinel structure with space group I41/A. The lattice parameters for ZnBiYO4 were a = b = 11.176479 Å and c= 10.014323 Å. The band gap of ZnBiYO4 was estimated to be 1.58 eV. The photocatalytic activity of ZnBiYO4 was assessed by photodegradation of methyl orange under visible light irradiation. The results showed that ZnBiYO4 had higher catalytic activity compared with N-doped TiO2 under the same experimental conditions using visible light irradiation. The photocatalytic degradation of methyl orange with ZnBiYO4 or N-doped TiO2 as catalyst followed first-order reaction kinetics, and the first-order rate constant was 0.01575 and 0.00416 min-1 for ZnBiYO4 and N-doped TiO2, respectively. After visible light irradiation for 220 min with ZnBiYO4 as catalyst, complete removal and mineralization of methyl orange were observed. The reduction of total organic carbon, formation of inorganic products, SO42- and NO3-, and evolution of CO2 revealed the continuous mineralization of methyl orange during the photocatalytic process. The intermediate products were identified using liquid chromatography- mass spectrometry. The ZnBiYO4/(visible light) photocatalysis system was found to be suitable for textile industry wastewater treatment and could be used to solve other environmental chemical pollution problems. 相似文献
54.
55.
Gas explosion is one of the main disasters in coal mining. Plenty of coal gangue are generally distributed in the disaster areas in gob. Experiments were carried out to explore the propagation law of the gas explosion distributed by coal gangue. The variation characteristics of the overpressure, pressure rise rate, and flame shape with void fractions were analyzed. The results showed that the effect of the coal gangue on the explosion intensity changed from suppression to acceleration with the increase of void fraction, the flame front upstream blockage area changed from laminar state to turbulent divergent state, and a reverse flame was formed. When the void fraction of the coal gangue was 0.50–0.65, the maximum overpressure downstream of the blocked area were positively correlated with the void fraction and the critical suppression range was between 0.50 and 0.55. When the void fraction was lower than 0.50, the flame was quenched in the coal gangue, neither the flame nor the pressure could pass through the blocked area. It is helpful to guide the improvement of coal recovery process to avoid the expansion of the explosion impact in coalmine gob. 相似文献
56.
Copper is the biocide of choice for present-day antifouling (AF) paints. It is also a major source of copper loading in to
the marine environment and, as such, might cause local copper levels to exceed water quality criteria. The present study is
multifaceted and looks into the overall impact of copper-based AF paints on copper concentrations along a 64-km stretch of
the Indian River Lagoon and at Port Canaveral, Florida. This preliminary study is one of the first to outline issues and present
background evidence on the current status of copper and copper-based AF usage in Florida and to address the need for management.
Previous measurements of copper levels in these waters show a history of copper contamination close to marinas, boatyards,
and at Port Canaveral that often exceed state and federal water quality standards. Further, we estimate that the total annual
copper input into the Indian River Lagoon is between 1.7 tons/year (sailboats) and 2.1 tons/year (powerboats) from boats in
14 marinas. We estimate the copper input into Port Canaveral to be about 1.4 tons/year from seven cruise ships. A brief survey
of marina operators and boat owners revealed attitudes and practices associated with AF paint usage that ranged from excellent
to inferior. Management recommendations are made for a proactive approach to improving AF paint selection and application,
assessing the environmental status of copper, and redefining existing management practices for sustainable AF paint usage
and environmental health. 相似文献
57.
采用包埋固定化技术制备了包埋硫铁生物填料(ESI Filler),基于升流式自养反硝化反应器开展动态实验研究,通过改变水力停留时间(HRT)、pH值、溶解氧(DO)等运行条件,探究ESI Filler反应器的脱氮效果及微生物群落结构组成。结果表明,当进水硝酸盐氮(NO3--N)浓度为30mg/L,HRT为10h时,NO3--N去除率不断上升至99.80%。当HRT缩短为2.5h时,NO3--N去除率降至61.35%。ESI Filler反应器对pH值和DO的改变具有较高的稳定性,NO3--N平去除率可维持在82.5%以上。但对低温的耐受性较差,当温度从35℃降低至15℃时,NO3--N平均去除率由90.12%降低至68.80%。运行164d后,球体未出现破裂散落的现象,表现出较长的使用寿命。通过扫描电镜发现,填料表面疏松多孔,附着大量杆状细菌,已成为微生物的良好载体。高通量测序结果表明,包埋颗粒中优势菌属为典型的自养反硝化功能菌Thiobacillus,丰度为80.79%。 相似文献
58.
目的 揭示叠氮增塑剂与硝化棉的相互作用机理,探索叠氮类增塑剂结构与性能间的关系,筛选能量性能和稳定性均较好的叠氮化合物。方法 建立硝化棉(NC)、1,3–二(叠氮乙酰氧基)–2–甲基–2–硝基丙烷(DAMNP)、1,3–双(叠氮乙酰氧基)–2–乙基–2–硝基丙烷(ENPEA)和1,8–二叠氮基–3,6–氧杂辛烷(AZTEGDN)纯物质模型以及NC/DAMNP、NC/ENPEA、NC/AZTEGDN共混物体系的微观分子模型,利用分子动力学模拟(MD)方法,对叠氮增塑剂/硝化棉的微观性质进行预测。分析共混体系的溶度参数、MSD值、结合能、径向分布函数、力学性能和玻璃化转变温度等性能。结果 DAMNP、ENPEA、AZTEGDN与NC之间的溶度参数差值较小。ENPEA与NC的结合能最大,DAMNP次之,AZTEGDN最小。3种增塑剂与NC的相互作用主要为vdW相互作用。加入增塑剂分子可以改善NC的运动能力,由于AZTEGDN的分子结构体积小,改善效果明显。径向分布函数分析结果进一步证明,NC与增塑剂分子间存在较强的氢键作用。结论 添加叠氮增塑剂可以改善NC的运动能力、力学性能,降低NC的玻璃化转变温度,起到了良好的增塑效果。 相似文献
59.
为明晰镉(Cd)在不同类型土壤中的稳定化特征和有效性差异,以四川省6种主要的农耕土壤酸性紫色土、中性紫色土、石灰性紫色土、灰潮土、典型黄壤和漂洗黄壤为研究对象,通过土壤培养试验,对外源Cd进入土壤后的稳定化时间、化学形态和有效Cd含量进行了对比分析,进一步结合盆栽试验下各土壤中小白菜生物量和Cd含量,探讨了外源Cd在6种土壤中的化学行为和污染效应.结果表明:(1)6种土壤的有效Cd含量在外源Cd添加后的15 d内迅速降低,后趋于平稳.稳定后,漂洗黄壤和酸性紫色土的有效Cd含量显著高于其他4种土壤,石灰性紫色土最低(1.01 mg·kg-1);(2)6种土壤中的Cd均以可交换态的占比最高(42.51%~56.07%),其次,漂洗黄壤和典型黄壤中的铁锰氧化物结合态Cd,石灰性紫色土中的碳酸盐结合态和灰潮土中的有机络合态Cd的占比相对较高;(3)低含量Cd处理下(0.5 mg·kg-1),6种土壤中小白菜的生长均无明显抑制,生物量与对照无显著差异,但可食部位Cd含量却有不同程度地富集,表现为典型黄壤和漂洗黄壤显著高于其他4种土壤;高含量Cd处理下(... 相似文献
60.
为研究硅肥影响土壤中生物有效态镉(Cd)和砷(As)的主要因素,选择不同性质的3种碱性硅肥[Na2SiO3、 CaSiO3与ASSF (pH 9~11)]和一种弱酸偏中性可溶硅肥(NSSF,pH 5~6)并通过添加不同用量硅肥(25~800 mg·kg-1,以Si计)开展室内土盆试验,淹水共育21 d后对土壤基本理化性质进行检测,同时利用薄膜扩散梯度(DGT)提取土壤生物有效态Cd和As.结果表明,不同性质硅肥施用对土壤基本理化性质的影响差异显著,具体来说:3种碱性硅肥均显著提升土壤pH值(P<0.05),其中Na2SiO3提升土壤pH能力最强;而NSSF的施用则显著降低土壤pH值但提升了土壤Eh值(P<0.05),每单位质量(mg) Si添加量的NSSF可使土壤pH下降0.001 7个单位;在Si添加量达到400 mg·kg-1后,3种碱性硅肥和NSSF土壤pH和Eh变化都趋于平缓. 4种不同性质硅肥提升土壤有效硅含量能... 相似文献