CN112877106A - 一种厨房燃料及其制备方法 - Google Patents
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Abstract
本发明公开一种厨房燃料及其制备方法,所述厨房燃料按照质量份数比由以下成分组成:石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷和综合添加剂按配比组成;综合添加剂由A组分、B组分和C组分按照质量比为(12~80):(23~145):(25~185)配制,A组分由十八酸乙酯、灰锰氧、氢氧化钠和乙醇按配比组成,B组分由植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺按配比组成,C组分由联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺按配比组成,所述厨房燃料的制备包括以下步骤:首先,按照质量配比配制综合添加剂,然后将综合添加剂加入到主料中进行反应,制得产品;本发明避免了传统燃料的危险隐患,使用更加安全卫生。
Description
技术领域
本发明涉及燃料技术领域,具体是涉及一种厨房燃料及其制备方法。
背景技术
现有的民用燃料主要依靠煤炭、液化石油气和煤气等。煤炭燃烧则会产生巨大的污染、使环境意义恶化其燃烧产生的副产物有很多中对人体或环境有害的毒物,如:一氧化氮、二氧化氮、一氧化碳、不饱和的烃类、氧化硫等,这些有害的毒物轻则使人中毒昏厥,重则使人丧命,对环境也是恶性循环性污染,如硫化物可以随食物链循环,最后呈几何级增长,最终导致环境恶化、各种生物受到危害。
而煤气虽然属于清洁能源、但煤气主要依靠管道输送线路进行送气,是按设计规划布置的,众多不在规划路线上的居民就不方便使用,而最后只能使用罐装的液化石油气。
而传统的液化石油气是一种经过压缩灌装的气体,气味浓而刺鼻,能影响环境的空气,在不设防情况下产生泄露还会致人死亡,燃点也比较高,因此危险因素也比较高,燃烧值高使用成本较高。
发明内容
为了解决上述技术问题,本发明提供一种厨房燃料及其制备方法,其成本低廉,原料来源广,卫生、安全、灌装方便、节能,作为民用燃料与液化气相比,从根本上克服了有烟尘、有残液、有臭味、有高压、易泄露、易中毒、易结碳、易爆炸等危险隐患。
为了实现上述技术目的,本发明所采用的技术方案是:一种厨房燃料,按照质量份数比由以下成分组成:
所述综合添加剂由A组分、B组分和C组分按照质量比为(12~80):(23~145):(25~185)组成,其中,
所述A组分按照质量份数比由以下成分组成:
所述B组分按照质量份数比由以下成分组成:
所述C组分按照质量份数比由以下成分组成:
一种制备厨房燃料的方法,包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。
本发明的有益效果:
1、本发明成本低廉,原料来源广,卫生、安全、灌装方便、节能,作为民用燃料与液化气相比,从根本上克服了有烟尘、有残液、有臭味、有高压、易泄露、易中毒、易结碳、易爆炸等危险隐患;
2、本发明中通过石脑油和溶剂油作为热值增加剂和闪点调整剂,能够使本发明的热值达到(10000—12000kcal/kg),明显高于传统煤气的4500kcal/kg,比煤气更耐用、安全省钱,本发明闪点达到75℃,明火长时间无法点燃,在炉具中燃烧时能够充分雾化,点火迅速,火焰稳定,燃烧完全,无残渣,不黑锅底,具体使用时安全可靠的优点。
附图说明
图1为本发明中实施例1的产品质量检验结果图;
图2为本发明中实施例3的产品质量检验结果图。
具体实施方式
一种厨房燃料,按照质量份数比由以下成分组成:
所述综合添加剂由A组分、B组分和C组分按照质量比为(12~80):(23~145):(25~185)组成,其中,
所述A组分按照质量份数比由以下成分组成:
所述B组分按照质量份数比由以下成分组成:
所述C组分按照质量份数比由以下成分组成:
一种制备厨房燃料的方法,包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。
本发明还可以作为焊割气燃料,作为焊割气燃料时将综合添加剂加入高压钢瓶中,然后再充入权利要求1质量质量份数的丙烷、丁烷,;静置反应0.5h即可。本发明作为焊割气燃料时,不爆鸣,不回火、不中毒、不挂渣,既适用于黑色金属的割、焊、变形矫正、表面热处理等,又适用于黑色金属的多种作业。从而避免了传统乙炔气成本高、耗量大、污染严重、易爆炸等弊端。
以下结合具体实施例进一步阐述本发明。
实施例1
一种厨房燃料,按照质量份数比由以下成分组成:
所述综合添加剂由A组分、B组分和C组分按照质量比为12:23:25组成,其中,
所述A组分按照质量份数比由以下成分组成:
所述B组分按照质量份数比由以下成分组成:
所述C组分按照质量份数比由以下成分组成:
一种制备厨房燃料的方法,包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。本实施例制备的产品检验结果请参阅附图1。
实施例2
一种厨房燃料,按照质量份数比由以下成分组成:
所述综合添加剂由A组分、B组分和C组分按照质量比为16:29:37组成,其中,
所述A组分按照质量份数比由以下成分组成:
所述B组分按照质量份数比由以下成分组成:
所述C组分按照质量份数比由以下成分组成:
一种制备厨房燃料的方法,包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。
实施例3
一种厨房燃料,按照质量份数比由以下成分组成:
所述综合添加剂由A组分、B组分和C组分按照质量比为5:9:10组成,其中,
所述A组分按照质量份数比由以下成分组成:
所述B组分按照质量份数比由以下成分组成:
所述C组分按照质量份数比由以下成分组成:
一种制备厨房燃料的方法,包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。本实施例检验结果请参阅附图2。
以上所述,仅为本发明较佳的具体实施方式,本发明的保护范围不限于此,任何熟悉本领域的技术人员在本发明披露的技术范围内,可显而易见地得到的技术方案的简单变化或等效替换均落入本发明的保护范围内。
Claims (2)
2.一种制备如权利要求1所述的厨房燃料的方法,其特征在于:包括以下步骤:
步骤1、制备综合添加剂
步骤101、按照权利要求1所述的质量份数比称取组成A组分的各组分,然后将称取的各组分按照十八酸乙酯、灰锰氧、氢氧化钠和乙醇的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得A组分备用;
步骤102、按照权利要求1所述的质量份数比称取组成B组分的各组分,然后将称取的各组分按照植酸、醋酸仲丁酯、戊酸丁酯、醋酸乙酯和双氰胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得B组分备用;
步骤103、按照权利要求1所述的质量份数比称取组成C组分的各组分,然后将称取的各组分按照联环已胺、次氯酸钙、四硼酸纳十水、苯乙醇、环已酮和多烯基丁二酰亚胺的顺序依次加入,每一种成分加入进行搅拌反应5min,加入完毕后,继续搅拌反应10min,制得C组分备用;
步骤104、按照权利要求1所述的质量份数比称取反应完成的A组分、B组分和C组分,并将A组分和B组分分别加入到C组分中,加入完成后继续搅拌反应15min,取出制得综合添加剂,备用;
步骤2、按照权利要求1所述的质量份数比分别称取石蜡、石脑油、溶剂油、煤焦油、丙烷、丁烷以及步骤1中制备的综合添加剂,将称取的石蜡、石脑油、溶剂油和煤焦油依次放入反应釜中,然后将称取的综合添加剂加入到反应釜中搅拌反应30mIn,反应完成后静置3h,制得产品。
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