Publications by authors named "Li Yuzhong"

With the ongoing development of renewable energy sources, information technologies and physical energy systems are further integrated, which leads to challenges in ensuring the secure and stable operation of renewable energy power systems in the face of potential cyber threats. The strengths of blockchain in cybersecurity make it a promising solution to these challenges. However, existing blockchains are not well-suited for control tasks due to their low real-time performance.

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Background: Most patients in specialty drug treatment programs that are not federally licensed Opioid Treatment Programs (OTPs) programs do not receive medications for opioid use disorder (MOUD).

Methods: We linked results from a survey of non-OTP treatment program directors in New Jersey (n = 81) to statewide administrative records of admissions for opioid use to those programs between July 2021-June 2022. Using multi-level regression, we examined the association of three types of factors with planned MOUD use: program survey responses, client-level factors, and program-level client characteristic mix.

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Unlabelled: Beneficial interactions between plants and rhizosphere fungi can enhance plant adaptability during drought stress. However, harnessing these interactions will require an in-depth understanding of the response of fungal community assembly to drought. Herein, by using different varieties of wheat plants, we analyzed the drought-induced changes in fungal community assembly in rhizosphere and bulk soil.

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Recycling solid waste for preparing sulfoaluminate cementitious materials (SACM) represents a promising approach for low-carbon development. There are drastic physical-chemical reactions during SACM calcination. However, there is a lack of research on the flue gas pollutants emissions from this process.

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Introduction: Medications for opioid use disorder (MOUD), including buprenorphine, reduce overdose risk and improve outcomes for individuals with opioid use disorder (OUD). However, historically, most non-opioid treatment program (non-OTP) specialty substance use treatment programs have not offered buprenorphine. Understanding barriers to offering buprenorphine in specialty substance use treatment settings is critical for expanding access to buprenorphine.

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There is an urgent need to globally remediate oil sludge-contaminated soil (OSS). Smoldering combustion is a new low-energy approach for the treatment of organic waste. Therefore, the feasibility of smoldering combustion for the treatment of OSS was investigated in this study using a series of laboratory-scale experiments.

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The soilless peat-based substrate partially solves the global soil problem in greenhouse vegetable production. However, it still produces serious NO emissions due to the application of nutrient solutions. The pyrolysis biochar is regarded as an effective measure to reduce soil NO emissions.

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Large amount of garden waste is consecutively produced in China every year. The composting with urea and microbial inoculum makes it possible to dispose garden waste in large quantities. However, composting accompanies with serious nitrogen loss and environmental problems.

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Condensable particulate matter (CPM) is characterized by complex composition, non-negligible emission concentration, and fine or ultrafine in size after conversion to particles, which is difficult to remove. Current methods to control CPM are not fully developed and mainly focus on synergistic removal of CPM in existing air pollution control devices, such as CPM reduction through scrubbing processes in wet flue gas desulfurization (WFGD) systems. In this work, an experimental system including a simulated WFGD scrubber, also referred to as the primary scrubber (PS), and a secondary scrubber (SS) was built to explore measures to improve the CPM reduction performance during scrubbing.

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Background: Both low-carbohydrate (LC) and calorie-restricted (CR) diets have been shown to have metabolic benefits. However, the two regimens have yet to be thoroughly compared. We conducted a 12-week randomized trial to compare the effects of these diets separately and in combination on both weight loss and metabolic risk factors in overweight/obese individuals.

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Up to now, there has not yet been guidance or consensus from Chinese experts in the field of personalized prevention and treatment of type 2 diabetes. In view of the above, the endocrinology diabetes Professional Committee of Chinese Non-government Medical Institutions Association, the integrated endocrinology diabetes Professional Committee of the integrated medicine branch of Chinese Medical Doctor Association, and the diabetes education and microvascular complications group of the diabetes branch of the Chinese Medical Association organized relevant experts to discuss and reach the "Chinese expert consensus on strengthening personalized prevention and treatment of type 2 diabetes" for reference in clinical practice.

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The performance of iron-rich calcium sulfoaluminate (IR-CSA) cement is greatly affected by mineral composition and mineral activity in the clinker. This study aims to identify the effect of CaO sources, either CaCO or CaSO, on the phase formation and mineral composition of the IR-CSA clinker. Targeted samples were prepared with different proportions of CaCO and CaSO as CaO sources at 1300 °C for 45 min.

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To clarify the differences in growth and yield responses to drought stress among genotypes contrasting in environmental background, dryland and irrigated genotypes, as well as the underlying biochemical mechanism would provide valuable information for developing superior dryland cultivars. Pot experiments for the whole life cycle in fifteen genotypes and comparative metabolomics analysis for seedlings between two drought tolerant (DT) dryland genotypes and two drought sensitive (DS) irrigated ones were carried out. The DT dryland genotypes suffered heavy biomass loss during severer drought but showed minor yield loss ultimately, while the DS irrigated ones showed minor biomass loss but greater yield loss.

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Condensable particulate matter (CPM), as an air pollutant that has received wide attention in recent years, has a high emission concentration compared to filterable particulate matter (FPM), yet there is not a well-developed removal method. Air pollution control devices (APCDs) with a condensation process have a certain effect on CPM removal, which inspired us to study the condensation behavior of CPM. During the condensation process, the condensed CPM may exist in two final forms: one was collected by the cold surface that caused the condensation; the other was converted to fine particles and suspended in the space of the flue.

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Soilless culture systems (SCS) play an increasing role in greenhouse vegetable production. In the SCS, soilless substrates serve as the major substitute for soil, supplying nutrients to plants but releasing greenhouse gases into the atmosphere. Remarkably, there is a serious problem of NO emission due to excessive input of N fertilizer.

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Background: The goal was to establish a system for assessing molecular age (MA) based on common biomarkers of aging, disease, and end-of-life processes for assessing the development of chronic diseases at the molecular level.

Methods: Routine clinical laboratory indexes, including biochemical lab tests and complete blood count, were used as common biomarkers in end-of-life patients, who underwent treatment at the intensive care unit (ICU) of a hospital and died within one month. Biomarkers that were significantly different both between the patients and the controls and between the young and elderly groups could be used for the establishment of a MA index at the molecular level.

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Article Synopsis
  • The study investigates how different fertilizers impact plant-available nitrogen (PAN) levels in the soil for Chinese cabbage cultivation in Shunyi.
  • Four treatments were compared: no fertilizer, no fertilizer with CCP, urea, and a combination of potassium nitrate with chicken manure.
  • Results showed that urea and chicken manure significantly increased crop yield and PAN, especially in the upper soil layers, while suggesting that all fertilizers could lead to nitrate leaching in deeper soil layers.
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Using bacteriophages (phages) as environmental sanitizers has been recognized as a potential alternative method to remove bacterial contamination in vitro; however, very few studies are available on the application of phages for infection control in hospitals. Here, we performed a 3-year prospective intervention study using aerosolized phage cocktails as biocontrol agents against carbapenem-resistant Acinetobacter baumannii (CRAB) infection in the hospital. When a CRAB-infected patient was identified in an intensive care unit (ICU), their surrounding environment was chosen for phage aerosol decontamination.

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Denitrification, as both origins and sinks of NO, occurs extensively, and is of critical importance for regulating NO emissions in acidified soils. However, whether soil acidification stimulates NO emissions, and if so for what reason contributes to stimulate the emissions is uncertain and how the NO fractions from fungal (f) and bacterial (f) denitrification change with soil pH is unclear. Thus, a pH gradient (6.

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Although the plant-growth promotion by algae have been studied comprehensively, their impacts on indigenous soil microbiome remain largely unexplored. Herein we conducted a greenhouse experiment to investigate the changes in soil properties and corresponding microbial communities (bacterial, fungal and protists) after 2-year application of algae and their dynamic variation within 60 days immediately after algae addition. In comparison with Control treatment, the impact of algae on soil properties and microbial communities was huge, especially the content of nitrate was decreased however soluble organic nitrogen (SON) was increased.

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In this study, the capacity to tune root morphogenesis by a plant growth-promoting rhizobacterium, L4, was investigated from various aspects including microbial physiology, root development, and root endophytic microbial community. Strain L4 was isolated from the root-associated soil of 7-year plantation of . Aiming at revealing the promotion mechanism of on root growth and development, this study first evaluated the growth promotion characters of .

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Background: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which has caused a global pandemic beginning in 2020, can be detected by reverse-transcription polymerase chain reaction (RT-PCR). However, owing to the urgent need for a large number of detection kits, the time spent researching and developing these kits has been shortened during the pandemic, and the kits that are being used commercially have not undergone full and independent evaluation. To ensure the accuracy of SARS-CoV-2 test results, performance verification of commercial Real-Time quantitative PCR (RT-qPCR) kits is required.

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Vegetable production systems with excessive nitrogen fertilizer result in severe NO emission. It is pivotal to identify the source of NO for reducing NO emission, but estimating microbial pathways of NO production is very difficult due to the existence of NO reduction. A promising tool can address this problem by using δO and δN of NO to construct a dual isotopocule plot.

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To increase crops yields, applying large amounts of fertilizers has become increasingly common in agricultural regions, resulting in NO-N groundwater pollution. Agricultural non-point pollution is the main source of groundwater NO-N pollution. To ensure drinking water safety and quality, it is crucial to clarify the sources of NO-N pollution in agricultural regions.

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