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Zuoxin Liu

Publications and source records attributed to Zuoxin Liu.

6 recordsLinked to original sources

[Plantation stocks and their affecting factors in western Liaoning Province].

Employing real-site investigation and data analysis methods, this paper analyzed the distribution of plantation stocks and its affecting factors in western Liaoning Province. The results showed that the average plantation stock of western Liaoning was 49.08 m3.hm(-2), which has been improved obviously since 1949. At the time of the third forest resource investigation, the plantation stock increased 20.19 m3.hm(-2), 5.16 times higher than that of the first forest resource investigation. But, the general plantation stock of western Liaoning was still at a rather lower level, with only a 63.5% increase of the whole province and 51.1% of the national average plantation stock at the same period. The difference of plantation stock among cities in western Liaoning was observable, that even reached 68.47 m3.hm(-2). In general, the proportion of young forest was too high, reached to 49 % of the total plantation, while the stock of mature forest was much lower, only 38% of the national average level. The plantation stock of national property was only 55.1% and 32.3% of the personal and collective property, respectively. Moreover, the plantation stock of timber forest was 36.4% lower than that of windbreak. Besides climatic factors, simple plantation structure, few forest tree species, and poor plantation management were the main causes of the low plantation stock.

Biomass↗

[Climatic productivity of plantations in western Liaoning area].

Calculations by six models of climatic productivity showed that the average climatic productivity of plantations in western Liaoning area was 8.8 t x hm(-2) x yr(-1), and had a decreasing trend from southeast to northwest, which was coincided with the distribution of rainfall. Three models were suitable to be used to calculate the climatic productivity of plantations in the area. The present plantation productivity was really lower than the potential climatic productivity, and the great potential was available in improving plantation productivity through the improvement of forest quality.

Biomass↗

[On water saving agriculture and water resource sustainable utilization in Northeastern China].

A strategy of systematic water saving agriculture was proposed based on the analysis of the water resource shortage regime and the agricultural water saving potential under the background of promoting the old industrial bases in Northeastern China. Different pattern areas of water saving agriculture were divided, and integrated water saving technique systems and water saving cultivation models were recommended, according to their agricultural production characteristics and development requirement in the future. The systematic strategy for sustainable utilization of water resource, the necessity of applying project for water saving and regulating rivers and watercourses synthetically, and the trends in water saving research in Northeastern China were discussed.

China↗

[Soil quality and its evaluation].

Preservation and improvement of soil quality is the basic task for agricultural sustainable development. For this reason, the concept and the evaluation method of soil quality should be clearly understood. In this paper, the concept of soil quality and its advanced researches were reviewed. Soil quality evaluation should be based on soil function, different types of soils should be evaluated by different criterions, and soil quality evaluation should be relational rather than absolute as well. Some methods of soil quality evaluation were introduced, and the selection of evaluation indicators was discussed.

Crops, Agricultural↗

[An overview on theoretic research of high efficient water use in agriculture].

High efficient water use in agriculture includes water-saving irrigation and dryland farming, its core being to increase use efficiency and benefit of natural precipitation and irrigation. Each of measurement methods of field evapotranspiration has its advantages and disadvantages. Modified Penman and Penman-Monteith formulae were recommended to calculate the reference crop evapotranspiration by FAO one after another. Jensen and Blank models had a wide use in crop water production function. Recent achievements of appropriate soil moisture and lower limit of soil drought indices provided an important basis of soil physics for agricultural water supply of low quota. The influencing sequence of water stress on different physiological processes correlated with yield formation was in order of cell stretch > stoma movement > transpiration > photosynthesis > matter transfer. Non-severe drought could facilitate matter transfer. Field irrigation research has turn to deficit irrigation, regulated deficit irrigation and controlled alternative irrigation from traditional full irrigation. In the future, such researches as interfaces, soil water dynamics, biological water-saving and water stress would be deeply conducted in high efficient water use theory in agriculture.

Agriculture↗

[Seeping irrigation effect in sunlight greenhouse].

The differences of soil and air environments, crop growth, development and diseases, and water use efficiency of seeping irrigation from furrow irrigation were studied. Results indicated that compared with furrow irrigation, seeping irrigation could increase soil waterstable granular by 81.4%, soil porosity by 29.0% and soil temperature by 1.1-1.7 degrees C respectively, decrease bulk density by 21.2% and relative air humidity by 13.4% respectively, and save irrigation water by 36.7%. In addition, seeping irrigation could also accelerate crop maturity and increase yield, reduce crop diseases and production cost. Therefore, seeping irrigation was an ideal irrigation technique in sunlight greenhouse at present.

Crops, Agricultural↗