Assessment Environmental and Social Impacts for the Rice Straw Utilization Technical Models to Promote Circular Economy for Rice Production in Chau Thanh District - An Giang Province

Nguyễn Thị, Kim Chi, Nguyễn Văn, Nhàn, Van Ha
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Abstract

The study objective is to provide an initial scientific basis for calculating CO2 equivalent (CO2e) emission reduction from the three technical models such as rice-straw composting, rice-straw fermented for cattle feed, and straw mushroom production, which are rice-straw utilization alternatives instead of open burning them in Chau Thanh district. The study calculation is based on the surveyed practical database, the theoretical emission factors (EF), and the implementation of EasyPol-Ex software version 5 (Ex-Act) to estimate the amount of CO2e emissions when switching. The results show that in 2022, Chau Thanh could avoid 330,236 tons of CO2 emissions by burning 171,637 tons of rice straw. The estimated amount of CO2 emitted from harvesting and rolling rice straw by machine was 4.375 g CO2e per kilogram of rice straw. The EF for transportation of rice straw to model implementation places was 740 gCO2e/kg. The additional EFs for mushroom, composting, and animal feed production models were 222g, 172g and 60g CO2e/kg, respectively. Results indicate that although the EF of rice straw collection and transportation was still high, the total CO2e from three models (including transportation) was still lower than the EF from straw burning. In addition, farmers who own the paddy field earned an extra 500,000 VND/ha per crop, and farmers earned an extra about 1.7 to 2.3 million VND per crop, depending on the model applied. The successful implementation of technical models promoted the concept of circular economy applied to rice production industries.
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安江省 Chau Thanh 县促进水稻生产循环经济的稻草利用技术模式对环境和社会影响的评估
本研究的目的是提供一个初步的科学依据,以计算洲清地区稻草堆肥、稻草发酵用作牛饲料和稻草蘑菇生产等三种技术模式的二氧化碳当量(CO2e)减排量,这三种技术模式是稻草利用的替代方法,而不是露天焚烧。研究计算基于调查的实际数据库、理论排放因子(EF),并采用 EasyPol-Ex 软件第 5 版(Ex-Act)估算转换时的 CO2e 排放量。结果显示,2022 年,Chau Thanh 可通过燃烧 171,637 吨稻草避免排放 330,236 吨二氧化碳。机器收割和碾压稻草的二氧化碳排放量估计为每公斤稻草 4.375 克 CO2e。将稻草运输到模型实施地点的环境因子为 740 gCO2e/kg。蘑菇、堆肥和动物饲料生产模式的额外环境系数分别为 222g、172g 和 60g CO2e/kg。结果表明,虽然稻草收集和运输的环境因子仍然较高,但三种模式(包括运输)的总 CO2e 仍低于秸秆焚烧的环境因子。此外,拥有稻田的农民每公顷每季可多收入 50 万越南盾,农民每季可多收入约 170 万至 230 万越南盾,具体取决于所采用的模式。技术模式的成功实施促进了循环经济概念在水稻生产行业的应用。
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