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1.
PLoS One ; 19(4): e0301590, 2024.
Article in English | MEDLINE | ID: mdl-38598515

ABSTRACT

To promote the comprehensive utilization of corn stover and the development of field water-saving irrigation technology, a method of returning corn stover to the field was prosed; in this method, the crop stalks were crushed, mixed with soil in different proportions of adulteration, and then extruded to form hollow round tubes. To compare the influence of the winch blade with or without a diameter change on the composite pipe molding performance, two composite pipe molding devices were theoretically designed, simulated, and analyzed using discrete element simulation software, and a composite pipe molding bench test was performed. The simulation test revealed that the composite pipe molding rate of the winch blade without the reducer molding device was 3.45 kg/s, the output power of the winch shaft was 20.7 kW, the composite pipe molding rate of the winch blade with the reducer molding device was 1.20 kg/s, and the output power of the winch shaft was 18.75 kW. By calculating the weighted average of two indices, the composite pipe forming rate and the winch shaft output power, the comprehensive performance index of the composite pipe forming device without a reducer was greater than that of the device with a reducer. The composite pipe forming bench test revealed two kinds of molding devices with an extrusion molding with an outer diameter of 100 mm and an inner diameter of 30 mm. The composite pipe density test average was greater than 1.30 g/cm3 and met the requirements of composite pipe molding; the winch blade without a reducer molding device had an average composite pipe molding rate of 3.23 kg/s, and the winch blade with an average reducer molding rate of 2.07 kg/s. The forming rate of the composite pipe without a reducer was faster. Therefore, a winch blade without a reducer composite pipe molding device is more conducive to improving the composite pipe molding performance.


Subject(s)
Surgical Instruments , Zea mays , Technology , Soil , Water
2.
Heliyon ; 9(4): e14982, 2023 Apr.
Article in English | MEDLINE | ID: mdl-37064471

ABSTRACT

The high-quality development of the manufacturing industry is not only a requirement of industrial transformation and upgrading but also an internal task for the sustainable development of manufacturing enterprises. The high-quality development of the manufacturing industry is a process of multi-participation and dynamic evolution. To understand the evolution of the high-quality development of the manufacturing industry, an evolutionary game model composed of local governments, leading enterprises, and following enterprises is constructed. The evolution process and the influence of internal factors such as innovation capability, organization construction and industry resources on the evolution and stability strategy are analysed. MATLAB software is used to perform numerical simulations. The results show that (1) there are two possible evolutionary stability strategy (ESS) models in the game, namely, {active supervision, positive participation, positive participation} and {active supervision, negative participation, negative participation}; (2) when the initial probabilities of leading and following enterprises are all at low levels, increasing any one of the local government's initial probability, innovation capability, organization construction and industry resources can promote tripartite evolution towards {active supervision, positive participation, positive participation}; and (3) the convergence rate of leading enterprises and following enterprises evolving towards a positive participation strategy will increase slightly with an increase in local government's initial probability, innovation capability, organization construction, and industry resources when both are at middle initial probability levels. The final policy suggestions can be used to help all parties choose the optimal strategy and to achieve the high-quality development target of the manufacturing industry as soon as possible.

3.
Adv Sci (Weinh) ; 8(15): e2002751, 2021 08.
Article in English | MEDLINE | ID: mdl-34081408

ABSTRACT

Tetanus is a fatal but vaccine-preventable disease. The currently available tetanus vaccines are tetanus toxoid (TT)-based. Although these vaccines are generally effective, challenges in vaccine development and access remain. A randomized, double-blind, dose escalation, placebo- and positive-controlled, phase 1/2 trial (ChiCTR1800015865) is performed to evaluate the safety and immunogenicity of an alternative recombinant tetanus vaccine based on the Hc domain of tetanus neurotoxin (TeNT-Hc) in healthy adult volunteers. The primary outcome is the safety profile of the recombinant tetanus vaccine, and immunogenicity is the secondary outcome. 150 eligible participants were enrolled and randomly assigned to receive one of the three doses of recombinant tetanus vaccine (TeNT-Hc 10/20/30 µg), TT vaccine, or placebo. The recombinant tetanus vaccine shows a good safety profile. The frequency of any solicited and unsolicited adverse events after each vaccination does not differ across the vaccine and placebo recipients. No serious treatment-related adverse events occur. The recombinant tetanus vaccine shows strong immune responses (seroconversion rates, geometric mean titer, and antigen-specific CD4+/CD8+ T-cell responses), which are roughly comparable to those of the TT vaccine. In conclusion, the findings from this study support that recombinant tetanus vaccine is safe and immunogenic; thereby, it represents a novel vaccine candidate against tetanus.


Subject(s)
Immunogenicity, Vaccine/immunology , Tetanus Toxoid/immunology , Tetanus Toxoid/therapeutic use , Tetanus/prevention & control , Adult , China , Dose-Response Relationship, Drug , Double-Blind Method , Female , Humans , Male , Reference Values , Tetanus/immunology , Tetanus Toxoid/adverse effects , Vaccines, Synthetic
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