Publications by authors named "Boyu Jing"

Odor emission during livestock manure treatment poses a threat to the environment and human health. However, the odor emission profiles and related factors of commonly employed poultry manure treatments have rarely been studied. Here, we explored the odor emission profiles of 3 common poultry manure treatments in China, namely, ectopic fermentation beds (EFB), annular composting troughs (ACT) and air-drying rooms (ADR).

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The process of harmless treatment of livestock manure produces a large amount of odor, which poses a potential threat to human and livestock health. A vertical fermentation tank system is commonly used for the environmentally sound treatment of chicken manure in China, but the composition and concentration of the odor produced and the factors affecting odor emissions remain unclear. In this study, we investigated the types and concentrations of odors produced in the mixing room (MR), vertical fermenter (VF), and aging room (AR) of the system, and analyzed the effects of bacterial communities and metabolic genes on odor production.

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Facing serious air pollution problems, the Chinese government has taken numerous measures to prevent and control air pollution. Understanding the sources of pollutants is crucial to the prevention of air pollution. Using numerical simulation method, this study analysed the contributions of the total local emissions and local emissions from different sectors (such as industrial, traffic, resident, agricultural, and power plant emissions) to PM concentration, backward trajectory, and potential source regions in Tangshan, a typical heavy industrial city in north China.

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Odor pollution has a high complaint rate with strong public concern, and industrial production is an important source of this type of pollution in China. To understand odor pollution in industrial parks and to protect the safety of work environments, samples were collected from 14 industrial odor sources and then were analyzed for odorous volatile organic compounds (VOCs) and odor concentration. Based on the field data, the main compounds causing odor were assessed and identified.

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Three soluble hyperbranched polyazomethines containing oligosiloxane end group were successfully synthesized. were used as modifiers of ethyl cellulose (EC) and polysulfone (PS) membranes. Blend membranes, /EC and /PS were prepared by blending the THF solution of with ethanol solution of EC and dichloromethane solution of PS, respectively.

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The vehicle emissions were estimated by the Urban High Temporal-Spatial Resolution Vehicle Emission Inventory Model and Decision Support System (hereinafter referred to as the HTSVE system) with the real-time data including traffic flow, average speed and fleet compositions obtained from Radio Frequency Identification (RFID) and emission factors based on COPERT. The study focused on the characteristics of vehicle emissions by means of non-parametric test and cluster analysis with ArcGIS in artery roads and collector roads in Nanjing, 2014. The result showed that the proportion of passenger cars reached up to 80%, and China 3 and China 4 accounted for over 90% while China 3 contributed most.

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The novel self-microemulsifying (SME) tablets were developed to enhance the oral bioavailability of a poor water-soluble drug felodipine (FDP). Firstly, FDP was dissolved in the optimized liquid self-microemusifying drug delivery systems (SMEDDS) containing Miglyol® 812, Cremophor® RH 40, Tween 80 and Transcutol® P, and the mixture was solidified with porous silicon dioxide and crospovidone as adsorbents. Then after combining the solidified powders with other excipients, the solid SME tablets were prepared by wet granulation-compression method.

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Mg(+2) and Cu(+2) have different binding capacities to quinolone drugs and have different binding modes with calf thymus DNA. Using the method of absorption and fluorescence spectroscopy, the influence of Mg(+2) and Cu(+2) on the binding between calf thymus DNA and each of four quinolone drugs has been studied. The results show that both Mg(+2) and Cu(+2) can bind with the four drugs.

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